+ All Categories
Home > Documents > REFERENCE - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/4784/17/17... · 2015. 12. 4. ·...

REFERENCE - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/4784/17/17... · 2015. 12. 4. ·...

Date post: 31-Aug-2020
Category:
Upload: others
View: 0 times
Download: 0 times
Share this document with a friend
41
REFERENCE
Transcript
Page 1: REFERENCE - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/4784/17/17... · 2015. 12. 4. · J. Mol. Biol. 215(3):403-10. Amann R., W. Ludwig, and K. Schleifer (1995). Phylogenetic

REFERENCE

Page 2: REFERENCE - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/4784/17/17... · 2015. 12. 4. · J. Mol. Biol. 215(3):403-10. Amann R., W. Ludwig, and K. Schleifer (1995). Phylogenetic

Abraham M. and G.M. Kurup (1996). Bioconversion of tapioca (Manihot esculenta) waste

and water hyacinth (Eichhornia crassipes) influence of various Physico-chemical factors.

J. Ferment. Bioeng. 82: 259-263.

Adams L. and R. Boopathy (2005). Isolation and characterization of enteric bacteria from

the hindgut of Formosan termite. Biores Technol. 96: 1592–1598.

Alterthum F. and L.O. Ingram (1989). Efficient ethanol production from glucose, lactose,

and xylose by recombinant Escherichia coli. Appl. Environ. Microbiol. 55:1943– 1948.

Altschul S.F., W. Gish , W. Miller , E.W. Myers and D.J. Lipman (1990). Basic local

alignment search tool. J. Mol. Biol. 215(3):403-10.

Amann R., W. Ludwig, and K. Schleifer (1995). Phylogenetic identification and in situ

detection of individual microbial cells without cultivation. Microbiol. Rev. 59:143–

169.

Anand A. P. and K. Sripathi(2004). Digestion of cellulose and Xylan by symbiotic bacteria

in the intestine of Indian flying fox for Pteropus giganteus. Comp. Biochem.

Physiol. 139: 65-69.

Anand A.A.P., S. J. Vennison, S. G.Sankar, D. I. G. Prabhu, P.T.Vasan, T. Raghuraman, C.

J.Geoffrey and S. E.Vendan (2010). Isolation and characterization of bacteria from

the gut of Bombyx mori that degrade cellulose, xylan, pectin and starch and their impact

on digestion. J. Insect Sci.10:1-20.

Apun K., B.C. Jong and M.A. Sa (2000). Screening and isolation of a cellulolytic and

amylolytic Bacillus from sago pith waste. J. Gen. Appl. Microbiol. 46: 263–267.

Aruga H. (1994). Principles of Sericulture. pp. 97-99. Oxford.

Page 3: REFERENCE - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/4784/17/17... · 2015. 12. 4. · J. Mol. Biol. 215(3):403-10. Amann R., W. Ludwig, and K. Schleifer (1995). Phylogenetic

Ashelford K. E., N. A. Chuzhanova, J. C. Fry, A. J. Jones, and A. J. Weightman (2005). At

least 1 in 20 16S rRNA sequence records currently held in public repositories is

estimated to contain substantial anomalies. Appl. Environ. Microbiol. 71:7724- 7736.

Azzam A.M. (1987). Saccharification of bagasse cellulose pretreated with ZnCl2 and HCl.

Biomass Bioenerg. 12:71-77.

Bagdasarianm M., R. Lurz, Ruckertb, F.C.H. Franklin, M. Bagdasariamn., J. Frey and K.N

Timmis (1981). Specific purpose cloning vectors. 11. Broad host-range, high copy-

number RSF1010- derived vectors and a host-vector system for gene cloning in

Pseudomonas. Gene. 16: 237-247.

Bailey M.J., and J. Tahtiharju (2003). Efficient cellulase production by Trichoderma reesei

in continuous cultivation on lactose medium with a computer-controlled feeding

strategy. Appl. Microbiol. Biotechnol.62(2-3): 156-162.

Bakalidou A, P. Kampfer, M. Berchtold, T.Kuhnigk, M.Wenzel and H. Konig (2002).

Cellulosimicrobium variabile sp. a cellulolytic bacterium from the hindgut of the

termite Mastotermes Marwiniensis. Inter J. Syst. Evol. Microbiol. 52: 1185–1192.

Baratti J.C., and J.D. Bu’lock (1986). Zymomonas mobilis: A Bacterium for Ethanol

Production. Biotech. Adv. 4(1):95-115.

Barros M.E., and J.A. Thomson (1987). Cloning and expression in Escherichia coli of a

cellulase gene from Ruminococcus flavefaciens. J. Bacteriol. 169(4): 1760- 1762.

Barrow K.D., J.G. Collins, R.S. Norton, P.L. Rogers and G.M. Smith (1984) 31P nuclear

magnetic resonance studies of the fermentation of glucose to ethanol by Zymomonas

mobilis. J. Biol. Chem. 259: 5711–5716.

Page 4: REFERENCE - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/4784/17/17... · 2015. 12. 4. · J. Mol. Biol. 215(3):403-10. Amann R., W. Ludwig, and K. Schleifer (1995). Phylogenetic

Beguin P., and J. P. Aubert (1994). The biological degradation of cellulose. FEMS

Microbiol. Rev. 13:25–58.

Beguin P., J.Millet and J.P. and Aubert (1987). The cloned ccl (cellulose degradation) genes

of Clostridium thermocellum and their products. Microbial. Sci. 4:277-280.

Bender J, Y.Vatcharapijarn and T.W. Jeffries (1985). Characteristics and adaptability of some

new isolates of Clostridium thermocellum. Appl. Environ. Microbiol. 49:475–477.

Berg C. (1988). Towards a world ethanol market? Ratzeburg, Germany: F.O. Licht

Commodity Analysis. Experiences with PlasticTtube Biodigesters in Colombia.

Bhat M.K. and S. Bhat (1997).Cellulose degrading enzymes and their potential industrial

application. Biotechnol. Adv. 15: 583-620.

Blackall L.L., A.C. Hayward and L.I. Sly (1985) Cellulolytic and extremophilic Gram-

negative bacteria: revival of the genus Cellvibrio. J Appl Bacteriol. 59: 81-97.

Blackwell J. and F. J. Kolpak (1976). Cellulose microfibrils as disordered assays of

elementary fibrils. J. Appl. Poly. Sci.28:751-761.

Blanc D. S., H. H. Siegrist, R. Sahli and P. Francioli (1993). Ribotyping of Pseudomonas

aeruginosa: discriminatory power and usefulness as a tool for epidemiological

studies. J. Clin. Microbiol. 31:71–77.

Boraston A.B., D.N. Bolam, H.J. Gilbert and G.J. Davies (2004). Carbohydrate-binding

modules: fine-tuning polysaccharide recognition. J. Biol. Chem. 382: 769-81.

Bothast R. J. and B.C. Saha (1997). Ethanol production from agricultural biomass

substrates. Adv. Appl. Microbiol., 44:261-286.

Boyer M.H., B. Cami, J.P. Chambost, M. Magnan and J. Cattaneo (1987). Characterization

of a new endoglucanase from Erwinia chrysanthemi. Eur. J. Biochem. 162:311-316.

Page 5: REFERENCE - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/4784/17/17... · 2015. 12. 4. · J. Mol. Biol. 215(3):403-10. Amann R., W. Ludwig, and K. Schleifer (1995). Phylogenetic

Bradford M.M. (1976). Rapid and sensitive method for the quantitation of microgram

quantities of protein utilizing the principle of protein-dye binding, Anal. Biochem.

72: 248–254.

Brauman A. (2000). Effect of gut transit and mound deposit on soil organic matter

transformations in the soil feeding termite. A review Eur. J. Soil Biol. 36:117−125.

Brauman A., J. Dore, P.Eggleton, D. Bignell, J.A. Breznak and M.D. Kane (2001). Molecular

phylogenetic profiling of prokaryotic communities in guts of termites with different

feeding habits. FEMS Microbiol. Ecol. 35, 27–36.

Brestic-Goachet N., P. Gunasekaran, B. Cami and J. C. Baratti(1989). Transfer and

expression of an Erwinia chrysanthemum .Biotechnol Lett. 15:979-984.

Brestic-Goachet N., P. Gunasekaran , B. Cami and J. Baratti (1990). Transfer and expression of

a Bacillus licheniformis alpha amylase gene in Zymomonas mobilis. Arch. Microbiol.

153: 219-225.

Breznak J. A. (1982). Intestinal microbiota of termites and other xylophagous insects. A. Rec.

36:323-343.

Breznak J.A., and A.Brune (1994). Role of microorganisms in the digestion of lignocellulose

by termites. Ann.Rev. of Entomol. 39: 453-487.

Brown R.M., I.M. Saxena, K. Kudlicka(1996). Cellulose biosynthesis in higher plants. Trend.

Plant Sci. 1: 149-156.

Brummell D.A., C.R. Bird, W. Schuch and A.B. Bennett (1997). An endo-1,4-beta-glucanase

expressed at high levels in rapidly expanding tissues. Plant Mol. Biol. 33(1): 87-95.

Brune A. (1998) .Termite guts: the world’s smallest bioreactors. Trends Biotechnol. 16:16–

21.

Page 6: REFERENCE - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/4784/17/17... · 2015. 12. 4. · J. Mol. Biol. 215(3):403-10. Amann R., W. Ludwig, and K. Schleifer (1995). Phylogenetic

Brune A. (2007). Woodworker’s digest. Nature. 450, 487–488.

Byun K., B. Kaperj, and L. Ingram (1986). Construction of a new vector for the expression of

foreign genes in Zymomonas mobilis. J. Indust. Microbiol. 1: 9- 15.

Caputi Jr A., M. Ueda and T. Brown (1968). Spectrophotometric Determination of Ethanol

in Wine. Am. J. Enol. Vitic. 19 (3): 160-165.

Cara C., E. Ruiz, J.M. Oliva, F. Saez and E. Castro (2007). Conversion of olive tree

biomass into fermentable sugars by dilute acid pretreatment and enzymatic

saccharification. Bioresource Technol. 99: 1869-1876.

Carrard G., A. Koivula, H. Soderlund and P. Beguin(2000). Cellulose-binding domains

promote hydrolysis of different sites on crystalline cellulose. Proc. Nat. Acad. Sci.

97:10342-10347.

Chadha B.S., and H.S. Garcha (1992). Mixed cultivation of Trichoderma reesei and

Aspergillus ochraceus for improved cellulase production. Acta Microbiol Hung .

39(1): 61-67.

Chakraborty N., G. M. Sarkar and S. C. Lahiriu (2000). Cellulose degrading capabilities of

cellulolytic bacteria isolated from the intestinal fluids of the silver cricket.

Environmentalist. 20: 9-11.

Chang V.S. and M.T. Holtzapple (2000). Fundamental factors affecting biomass enzymatic

reactivity. Appl. Biochem. Biotechnol. 84/86: 5–37.

Chen Y.G., S. Jiang, H.Y. Yuan, Q. Zhou, G.W. Gu (2007). Hydrolysis and acidification of

waste activated sludge at different pHs. Water Res. 41: 683-689.

Cherry J.R., and A.L. Fidantsef (2003). Directed evolution of industrial enzymes. Curr. Opin.

Biotechnol .14:438–43.

Page 7: REFERENCE - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/4784/17/17... · 2015. 12. 4. · J. Mol. Biol. 215(3):403-10. Amann R., W. Ludwig, and K. Schleifer (1995). Phylogenetic

Claasen P.A.M., J.B.Van Lier, A.M. Lopez-Contreras, E.W.J Van Niel, L. Sijtsma, A.J.M

Stams, S.S. De Vries and R.A. Weusthuis (1999). Utilisation of biomass for the supply

of energy carriers. J. Microbiol. Biotechnol. 52:741–755.

Coughlan M.P. (1985). Cellulases: Production properties and applications. Biochem. Soc. Trans.

13: 405-406.

Coward-Kelly G., C. Aiello-Mazzari, S. Kim, C. Granda and M. Holtzapple (2003).

Suggested improvements to the standard filter paper assay used to measure cellulase

activity. Biotechnol Bioeng. 82(6):745-749.

Crosby B., B. Collier, D.Y. Thomas, R.M.Teather and J.D. Erfle (1984). Cloning and expression

in Escherichia coli of cellulase genes from Bacteroides succinogenes. pp. 573-576. In

Proc. 5th Can. Bioenergy R and D Semin. Hasnain, S. (ed.), Elsevier Applied Science

Publishers, Ltd., Barking, England.

Cruden D. L. and A.J. Markovetz (1979). Carboxymethylcellulose decomposition by

intestinal bacteria of cockroaches. Appl. Environ. Microbiol. 38:36-37.

Curreli N., M.B. Fadda, A.Rescigno, A.C Rinaldi, G. Soddu, F. Sollai, S.Vaccargiu, E. Sanjust

and A. Rinaldi (1997). Mild alkaline/oxidative pretreatment of wheat straw. Process

Biochem. 32: 665-670.

Datar R.P., S.M. Rustin , C.G. Bruno. H. L. Raymond and L.S. Randy (2004). Fermentation

of biomass-generated producer gas to ethanol. Biotechnol.Bioeng. 86(5): 587-594.

Davison A. and M. Blaxter (2005). Ancient origin of glycosyl hydrolase family 9 cellulase

genes. Molecularbiol. Evol. 22:1273 – 84.

Dawes E. A. (1986) Microbial Energetics, Blackie & Son Limited, Bishopbriggs, Glasgow,

UK. pp. 145-165.

Page 8: REFERENCE - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/4784/17/17... · 2015. 12. 4. · J. Mol. Biol. 215(3):403-10. Amann R., W. Ludwig, and K. Schleifer (1995). Phylogenetic

Dawes E. A. and S. M. Foster (1956). The formation of ethanol in Escherichia coli.

Biochim. biophys. Acta, 22: 253.

Delalibera I., J. Handelsman, and K. F. Raffa (2005). Contrasts in cellulolytic activities of

gut microorganisms between the wood borer, Saperda vestita (Coleoptera :

Cerambycidae), and the bark beetles, Ips pini and Dendroctonus frontalis (Coleoptera :

Curculionidae). Environ. Entomol. 34: 541-547.

Demain A. L. and M. Newcomb (2005). Cellulase, clostridia, and ethanol. Microbiol. Mol.

Biol. Rev. 69(1): 124-154.

Demirbas A. (2005). Bioethanol from cellulosic materials: A renewable systems based on

biomass gasification. Energy Sources.27: 941-948.

Dhouib A., M. Ellouz, F. Aloui, and S. Sayadi (2006) Effect of bioaugmentation of

activated sludge with white-rot fungi on olive mill wastewater detoxification. Lett.

Appl. Microbiol. 42: 405-411.

Dien B.S, M.A. Cotta and T.W. Jeffries (2003). Bacteria engineered for fuel ethanol

production: current status. Appl. Microbiol. Biotechnol. 63: 258–266.

Dillon R.J. and V.M. Dillon (2004). The gut bacteria of insects: nonpathogenic interactions.

Annl. Rev. Entomol. 49:71-92.

DiMarco A.A. and A.H. Romano (1985). D-Glucose transport system of Zymomonas

mobilis. Appl. Environ. Microbiol. 49: 151–157.

Din N., H.G. Damude, N.R. Gilkes, R.C. Miller, J. Warren and D.G.Kilburn (1994). C1-Cx

revisited: intramolecular synergism in a cellulase. Proc. Nat. Acad. Sci. 91:11383–

11387.

Page 9: REFERENCE - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/4784/17/17... · 2015. 12. 4. · J. Mol. Biol. 215(3):403-10. Amann R., W. Ludwig, and K. Schleifer (1995). Phylogenetic

Din N., N. R. Gilkes, B. Tekant, R.C. Miller, R.A.J. Warren and D.G. Kilburn (1991). Non-

hydrolytic disruption of cellulose fibres by the bindingdomain of a bacterial

cellulase. BioTechnol. 9:1096–1099.

Domingo J.W.S., M. G. Kaufman, M. J. Klug and J. M. Tiedje (1998). Characterization of

the cricket hindgut microbiota with ßuorescently labeled rRNA-targeted

oligonucleotide probes. Appl. Environ. Microbiol. 64: 752-755.

Dong X. and M. Cai (2001). Manual of System Determinative Common Bacteriology.

Science Press, Beijing, pp. 370-398.

Eckhardt T.( 1978). A rapid method for the identification of plasmid deoxyribonucleic acid

in bacteria. Plasmid. 1:584-588.

Egert M., B. Wagner, T. Lemke, A. Brune and M. W.Friedrich (2003). Microbial community

structure in midgut and hindgut of the humus-feeding larva of Pachnoda ephippiata

(Coleoptera: Scarabaeidae). Appl. Environ. Microbiol. 69: 6659-6668.

Egert M., U.Stingl, L.D. Bruun, B. Pommerenke, A. Brune and M.W. Friedrich (2005).

Structure and topology of microbial communities in the major gut compartments of

Melolontha melolontha larvae (Coleoptera: Scarabaeidae). Appl. Environ.Microbiol.

71: 4556–4566.

Esteghlalian A.R., V. Srivastava, N.R. Gilkes, D.G. Kilburn, R.A. Warren and J. Saddle (2001).

Do cellulose binding domains increase substrate accessibility. Appl. Biochem.

Biotechnol. 91-93: 575-592.

Esterbauer H., W. Steiner, I. Labudova, A.Hermann and M.Hayn (1991). Production of

Trichoderma cellulase in laboratory and pilot scale. Biores. Technol. 36:51–65.

Page 10: REFERENCE - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/4784/17/17... · 2015. 12. 4. · J. Mol. Biol. 215(3):403-10. Amann R., W. Ludwig, and K. Schleifer (1995). Phylogenetic

Fall S., J. Hamelin, F.Ndiaye, K.Assigbetse, M.Aragno, J.L.Chotte and A. Brauman (2007).

Differences between Bacterial Communities in the Gut of a Soil-Feeding Termite

(Cubitermes niokoloensis) and Its Mounds. Appl. Environ. Microbiol. 73: 5199– 5208.

Fan L. T., Y.H. Lee and D. H. Beardmore (1980a). Major chemical and physical features

of cellulosic materials as substrates for enzymatic hydrolysis. Adv. Biochem. Engin.

Biotechnol. 14: 101-117.

Fan L.T., Y. Lee and D.H. Beardmore (1980b). Mechanism of the enzymatic hydrolysis of

cellulose: Effects of major structural features of cellulose on enzymatic hydrolysis.

Biotechnol. Bioeng. 22: 177-199.

FAO, Production Year Book (2001). Food and Agriculture Organization of the United

Nations, Rome, Italy, 55.

Faure E., C. Bagnara, A.Belaich and J.P.Belaich, (1988). Cloning and expression of two

cellulase genes of Clostridium cellulolyticum in Escherichia coli. Gene. 65:51- 58.

Fenemore P.G. and A. Prakash (1992). Applied Entomology. Wiley.pp. 186-190.

Fengel D. and G. Wegener(1984). Wood: Chemistry, Ultrastructure, Reactions. DeGruyter,

Berlin Pettersen, R.C., The chemical composition of wood (chapter 2). In: Rowell.

Fennington G., D. Lupo and F. Stutzenberger (1982). Enhanced Cellulase Production in

Mutants of Thermomonospora curvata. Biotechnol. Bioeng. 24: 2487-2497.

Foong F., T. Hamomoto, O. Shoseyov and R.H. Doi (1991) Nucleotide sequence and

characteristics of endoglucanase gene engB from Clostridium cellulovorans. J Gen

Microbiol. 137:1729–1736.

Freier D., C.P.Mothershed and J. Wiegel (1988).Characterization of Clostridium thermocellum

JW 20. Appl Environ Microbiol. 54(1): 204–211.

Page 11: REFERENCE - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/4784/17/17... · 2015. 12. 4. · J. Mol. Biol. 215(3):403-10. Amann R., W. Ludwig, and K. Schleifer (1995). Phylogenetic

Fujii M., Azuma, F. Tanaka and T. Koshijima (1982). Studies on Hemicelluloses in

Tension Wood I. Chemical Co:mposition of Tension, Opposite and Side Woods of

Japanese Beech (Fagus crenata Blu:me) Wood Res. 68: 8-10.

Fujita Y, J. Ito, M. Ueda, H. Fukuda and A. Kondo (2004). Synergistic saccharification, and

direct fermentation to ethanol of amorphous cellulose by use of an engineered yeast

strain codisplaying three types of cellulolytic enzyme. Appl. Environ. Microbiol. 70:

1207–1212.

Gardner K.H. and J. Blackwell (1974). The structure of native cellulose. Biopoly. 13:1975-

2001.

Gaspar M., G. Kalman and K.Reczey (2007). Corn fiber as a raw material for hemicellulose

and ethanol production. Process Biochem. 42: 1135-1139.

Ghangas G.S.and D.B. Wilson (1987). Expression of a Thermomonosporn furca cellulase

gene in Streptomyces lividans and Bacillus subtilis. Appl. Environ. Microbial.

53:1470-1475.

Ghangas G.S. and D.B. Wilson (1988). Cloning of the Thermomonospora firca endoglucanase

E2 gene in Streptomyces lividans: affinity purification and functional domains of the

cloned gene product. Appl. Environ. Microbiol. 54:2521-2526.

Ghose T.K. (1987).Measurement of Cellulase Activities. Pure and Appl. Chem. 59: 257- 268.

Ghosh S., M.P. Henry, A. Sajjad, M.C. Mensinger and J.L. Arora (2000). Pilot-scale

gasification of municipal solid wastes by high-rate and two-phase anaerobic

digestion (TPAD). Water Sci. Technol. 41: 101-110.

Gibbs M. and D. Demossr (1954) Anaerobic dissimilation of C14-labelled glucose and

fructose by Pseudomonas lindneri. J. Biol. Chem. 207: 689.

Page 12: REFERENCE - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/4784/17/17... · 2015. 12. 4. · J. Mol. Biol. 215(3):403-10. Amann R., W. Ludwig, and K. Schleifer (1995). Phylogenetic

Gilbert H.J., G.Jenkins, D.A. Sullivan, and J. Hall (1987). Evidence for multiple

carboxymethylcellulase genes in Pseudomonar jluorescens subsp. cellulosa. Mol. Gen.

Genet. 210:551-556.

Gilkes N.R., M. Claeyssens, R. Aebersold, B. Henrissat, A. Meinke, H.D. Morrison ,

D.G.Kilburn, R.A.Warren and R.C.Miller(1991). Jr Structural and functional

relationships in two families of beta-1,4-glycanases. Eur J Biochem.202(2):367– 377.

Glick B. R., B. J. Butler, C. I. Mayfield, and J. J. Pasternak (1989). Effect of

transformation of Azotobacter vinelandii with the low copy number plasmid

pRK290. Curr. Microbiol. 19:143-146.

Goldstein I. S. (1981). Organics Chemicals from Biomass. CRC Press, Inc., Boca Raton, Rorida,

USA.

Griffiths P.R. (1975). Chemical Infrared Fourier Transform Spectroscopy. Plenum, New York.

Grunwald S., M. Pilhofer and W. Holl (2010). Microbial associations in gut systems of

wood- and bark-inhabiting longhorned beetles [Coleoptera: Cerambycidae]. Syst Appl

Microbiol.33(1):25-34.

Guedon E., M.Desvaux and H. Petitdemange (2002). Improvement of cellulolytic properties of

Clostridium cellulolyticum by metabolic enginering. Appl. Environ. Eng. 68: 53-58.

Gunasekaran P.and K.Chandraraj (1999). Ethanol fermentation technology – Zymomonas

mobilis. Curr. Sci. 77(1): 56-68.

Gunasekaran P., T. Karunakaran, H. Nellaiah, N. R. Kamini and A.G. Mukundan (1990).

Current status and prospective of an ethanol producer, Zymomonas mobilis. Ind.

J.Microbiol .30: 107-133.

Page 13: REFERENCE - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/4784/17/17... · 2015. 12. 4. · J. Mol. Biol. 215(3):403-10. Amann R., W. Ludwig, and K. Schleifer (1995). Phylogenetic

Gunasekera D. and Kemp R.G. (1999) Cloning, sequencing, expression, and purification of

the C isozyme of mouse phosphofructokinase. Protein Expr Purif . 16: 448-53.

Hamamoto T., O. Shoseyov, F. Foong and R.H. Doi (1990). A Clostridium

cellulovorans gene, engD, codes for both endo-β-1,4-glucanase and

cellobiosidase activities FEMS Microbiol. Lett. 72: 285–288.

Han Y. W. and V. R. Srinivasan (1968). Isolation and Characterization of a Cellulose-

utilizing Bacterium. Appl Environ Microbiol.16(8): 1140-1145.

Harazono K., N. Yamashita, N. Shinzato, H. Watanabe, T. Fukatsu and R. Kurane (2003).

Isolation and characterization of aromatics-degrading microorganisms from the gut

of the lower Coptotermes formosanus. J. Biosci. Biotechnol. Biochem. 67: 889-892.

Henley R.G., R.Y.K. Yang and P.F. Greenfield (1980). Enzymatic saccharification of

cellulose in membrane reactors. Enzyme Microb. Tech. 2: 206-208.

Heo N.H., S.C. Park, J.S. Lee and H. Kang (2003). Solubilization of waste activated sludge

by alkaline pretreatment and biochemical methane potential (BMP) tests for anaerobic

co-digestion of municipal organic waste. Water Sci. Technol. 48: 211-219.

Heo S., J. Kwak, H.W. Oh, D.S. Park, K.S. Bae, D.H. Shin and H.Y. Park (2006).

Characterization of an extracellular xylanase in Paenibacillus sp. HY-8 isolated from

an herbivorous longicorn beetle. J. Microbiol. Biotechnol. 16: 1753-1759.

Hethener P., A.Braumann and J.L. Garcia (1992). Clostridium termitidis sp. nov., a

cellulolytic bacterium from the gut of the wood-feeding termite, Nasutitermes lujae.

Sys. Appl. Microbiol. 15. 52–58.

Hill J. (2007). Environmental costs and benefits of transportation biofuel production from

food- and lignocellulose-based energy crops. A review. Agro. Sustain. Develop. 27(1):

Page 14: REFERENCE - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/4784/17/17... · 2015. 12. 4. · J. Mol. Biol. 215(3):403-10. Amann R., W. Ludwig, and K. Schleifer (1995). Phylogenetic

1-12.

Himmel M. E. and S. Y. Ding (2007). Biomass recalcitrance: Engineering plants and

enzymes for biofuels production. Science. 315(5813): 804-807.

Hirofumi W., A. Takase, G. Tokuda, A. Yamada and Nathan (1996). Symbiotic “Archaezoa”

of the Primitive Termite Mastotermes darwiniensis still play a role in Cellulase

Production. Eukaryot Cell. 9:1571–1576.

Ho N., Z. Chen and A. Brainard (1998). Genetically engineered Sacccharomyces yeast

capable of effective cofermentation of glucose and xylose. Appl Environ Microbiol.

64: 1852–1859.

Holtzapple M.T., H.S. Caram, A.E. Humphrey (1984). The HCH-1 model of enzymatic

cellulose hydrolysis. Biotechnol Bioeng.;26:775–780.

Honda H., H. Naito, M. Taya,S. Lijima, and T. Kobayashi (1987). Cloning and expression

in Escherichia coli of a Thermoanaerobacter cellulolyticus gene coding for heat- stable

and glucanase. Appl. Microbial. Biotechnol. 25: 480-483.

Hu Y.J. and D.B. Wilson (1988). Cloning of Thermomonosporu frrsca genes coding for beta l-

4 endoglucanases El, E2 and ES. Gene. 71:331-337.

Huang X.P. and C. Monk (2004). Purification and characterization of cellulase (CMCase)

from a newly isolated thermophilic aerobic bacterium Caldibacillus cellulovorans.

World J. Microbiol. Biotechnol. 20:85–92.

Hungate R.E. (1946). Studies on cellulose fermentation. II. An anaerobic cellulose

decomposing Actinomycete, Micromonospora propionici sp. J Bacteriol. 51:51-56.

Hungater E. (1957). Micro-organisms in the rumen of cattle fed a constant ration. Can. J.

Microbiol. 3:289.

Page 15: REFERENCE - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/4784/17/17... · 2015. 12. 4. · J. Mol. Biol. 215(3):403-10. Amann R., W. Ludwig, and K. Schleifer (1995). Phylogenetic

Ibrahim A.S.S. and A. I. El-diwany (2007). Isolation and Identification of New Cellulases

Producing Thermophilic Bacteria from an Egyptian Hot Spring and Some

Properties of the Crude Enzyme. Aust. J. Basic Appl. Sci. 1(4):473-478.

Ingram L., H. Aldrich and A. Borges (1999). Enteric bacterial catalysts for fuel ethanol

production. Biotechnol Prog. 15:855–866.

Ingram L.O., F. Alterthum, T. Conway and K. Ohta (1991). Ethanol production by

Escherichia coli strains co-expressing Zymomonas pdc and adh genes. U. S. Patent

No. 5, 000, 000.

Ingram L. O. (1986). Microbial tolerance to alcohols: role of the cell membrane. Trends

Biotechnol. 4:40-44.

Ingram L. O. and J. B. Doran (1995). Conversion of cellulosic materials to ethanol. FEMS

Microbiol. Rev. 16:235-241.

Itakura S., H.Tanaka and A.Enoki (1997). Distribution of cellulases, glucose and related

substances in the body of Coptotermes formosanus. Mater Organism en. 31:17–29.

Jeffers J. (2000). Preparation of ethanol by fermentation. Ouachita Baptist Univ. 1-16.

Jim S., and H. Chen (2006) Superfine grinding of steam-exploded rice straw and its

enzymatic hydrolysis. Biochem. Eng. J. 30: 225-230.

Jung K.H., Y.C. Chun, J.C.Lee, J.H.Kim and K.H. Yoon (1996). Cloning and expression of

a Bacillus sp. cellulase gene. Biotechnol. Lett. 18: 1077-1082.

Kalaitzis.P, S.B.Hong, T. Solomos and M.L. Tucker (1999). Molecular characterization of

a tomato endo-beta-1,4-glucanase gene expressed in mature pistils, abscission zones

and fruit. Plant Cell Physiology. l40(8): 905-8.

Page 16: REFERENCE - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/4784/17/17... · 2015. 12. 4. · J. Mol. Biol. 215(3):403-10. Amann R., W. Ludwig, and K. Schleifer (1995). Phylogenetic

Kalpana S., A.A.M. Hatha and L. P. Swamy (1994). Ziarenkowce Gram-dodatnie (Biologia,

rozpoznawanie i roznicowanie). Panstwowy Zaklad Higieny, Warszawa. Int. Symp.

Insect- Plant Relation. 46: 329–336.

Kassim E.A., and A.S. El-Shahed (1986). Enzymatic and chemical hydrolysis of certain

cellulosic materials. Agr. Wastes. 17: 229-233.

Kawai S., H. Okoshi, K. Ozaki, S. Shikata, K. Ara and S. Ito (1988). Neutrophilic Bacillus

strain, KSM–522, that produces an alkaline carboxymethyl cellulase. Agric. Biol. Chem.,

52: 1425–31.

Kennedy C. J., A. Sturcova, M. C. Jarvis and T. J. Wess (2007). Hydration effects on

spacing of primary-wall cellulose microfibrils: a small angle X-ray scattering study

14(5): 401-408.

Khiyami M. and E.Alyamani (2008). Aerobic and facultative anaerobic bacteria from gut of red

palm weevil (Rhynchophorus ferrugineus) Afr. J. Biotechnol.7(10): 1432-1437.

Kirk O., T.V. Borchert and C.C. Fuglsang (2002). Industrial enzyme applications. Curr.

Opin.Biotechnol.13:345–51.

Kivaisi A.K. and S. Eliapenda (1994). Pretreatment of bagasse and coconut fibres for

enhanced anaerobic degradation by rumen microorganisms. Renew. Energy. 5: 791-

795.

Kjallstr J., O. Ramna and G. Petersson (1998). Gas chromatographic and mass spectrometric

analysis of 36 lignin- related methoxyphenols from uncontrolled combustion of wood.

J. Chromatogr. 824:205–210.

Klemm D., B.Philipp, T.Heinze, U. Heinze and W. Wagenknecht (1998). Comprehensive

cellulose chemistry: I. Fundementals and analytical methods. Wiley-VCH.

Page 17: REFERENCE - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/4784/17/17... · 2015. 12. 4. · J. Mol. Biol. 215(3):403-10. Amann R., W. Ludwig, and K. Schleifer (1995). Phylogenetic

Klemm D., B. Heublein, H. Fink and A. Bohn (2005). Cellulose: fascinating biopolymer and

sustainable raw material. ChemInform. 36: 3358-3393.

Kodama R., and Y. Narasuji (1971). Bacteria isolated from silkworm larvae. IX. Behavior

of antibiotics added to an artificial diet. J. Sericult. Sci. Jpn. 40:8-12.

Koide Y., A. Nakamura, T. Uozumi, and T. Beppu (1986). Molecular cloning of a

cellulase gene from Bacillus subtilti and its expression in Escherichia coli. Agric.

Biol.Chem. 50:233-237.

Konig H.(2006). Bacillus species in the intestine of termites and other soil invertebrates. J.

Appl. Microbiol. 101:620–627.

Krasilnikov N.A., and S.I. Satdykov (1970). Bacteria of termite intestine. Microbiol. 39: 562-

564.

Krishna S. H. and G. V. Chowdary (2000). Optimization of Simultaneous Saccharification

and Fermentation for the Production of Ethanol from Lignocellulosic Biomass

Journal of Agri.Food. Chem. 48 (5): 1971-1976.

Kucuk M. M. and A. Demirbas (1997). Biomass conversion processes. Energy Convers. Mgmt.

38:151-165.

Kulshreshta A.K. and N. E. Dweltz (1973). Paracrystalline lattice disorder in cellulose I.

Reappraisal of application of 2-phase hypothesis to analysis of powder X-ray

diffractograms of native and hydrolysed cellulosic materials. J. Polymer Sci. 11: 487-

497.

Kurakake M., N. Ide and T. Komaki (2007). Biological pretreatment with two bacterial strains

for enzymatic hydrolysis of office paper. Curr Microbiol. 54: 424-428.

Page 18: REFERENCE - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/4784/17/17... · 2015. 12. 4. · J. Mol. Biol. 215(3):403-10. Amann R., W. Ludwig, and K. Schleifer (1995). Phylogenetic

Kwak, J., K. Lee, D.H. Shin, J.S. Maeng, D.S. Park, H.W. Oh, K.S. Bae and H.Y. Park. (2007)

Biochemical and genetic characterization of an extracellular metalloprotease produced

from Serratia proteamaculans. J. Microbiol. Biotechnol. 17: 761-768.

Laemmli U.K. (1970). Cleavage of structural proteins during the assembly of the head of

bacteriophage T4. Nature. 227 (5259): 680–685.

Lamed R., E. Setter and E.A. Bayer (1983).Characterisation of a cellulose binding cellulase

containing complex in Clostridium thermocellum. J. Bacteriol. 156:828-836.

Lang X., D.G Macdonald and G.A Hill (2001). Recycle bioreactor for bioethanol production

from wheat starch I, Cold enzyme hydrolysis. Ener Sour. 23:427-436.

Lawford G.H, J.D.Rousseau, A.Mohagheghi and J.D. McMillan (1999). Fermentation

performance characteristics of a prehydrolyzateadapted xylose-fermenting recombinant

Zymomonas in batch andcontinuous cultures. Appl. Biochem. Biotechnol.77–79:

191–204.

Laymon R. A. , Adney, W. S. , Mohagheghi, A. , Himmel, M. E. and Thomas S. R. (1996).

Cloning and expression of full length Trichoderma reesei cellobiohydrolase I cDNAs

in Escherichia coli. Appl. Biochem. Biotechnol. 57/58:389-397.

Leadbetter J. (2007). Termite gut bacteria produce a wealth of wood degrading enzymes.

Nature. 450: 7169.

Leadbetter J. R., T.M. Schmidt, J.R. Graber and J.A. Breznak (1999). Acetogenesis from H2 plus

CO2 by spirochetes from termite guts. Science.

283(5402): 686-689.

Lederberg J. (1992). Cellulase. In Encyclopaedia of Microbiology (Vol. I; A-C) Academic

Press.

Page 19: REFERENCE - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/4784/17/17... · 2015. 12. 4. · J. Mol. Biol. 215(3):403-10. Amann R., W. Ludwig, and K. Schleifer (1995). Phylogenetic

Lee B.H. and T.H.Blackburn (1975). Cellulase production by a thermophilic Clostridium

species. Appl. Microbiol. 3:346–353.

Lee D.S., B.R. Lee, and M.Y. Pack (1988). Fates and expression of Bacillus subtilis endo-

R-1,4-glucanase gene and Alcaligenes faecalis B-glucosidase gene introduced in

Escherichia coli and Bacillus cells. Biotech. Lett. 10:843-848.

Lee J. (1997). Biological conversion of lignocellulosic biomass to ethanol. J. Biotechnol.

56: 1–24.

Lee G.E., C.H. Kim, H.J. Kwon, J. Kwak, D.H. Shin, D.S. Park, K.S. Bae and H.Y. Park (2004).

Biochemical characterization of an extracellular protease in Serratia proteomaculans

isolated from a spider. Kor. J. Microbiol. 40: 269-274.

Lehtio J., J. Sugiyama, M. Gustavsson, L. Fransson, M. Linder and T.T. Teeri (2003). The

binding specificity and affinity determinants of family 1 and family 3 cellulose

binding modules. Proc. Nation. Acad. Sci. 100:484-48.

Lejeune A., C. Colson, and D. E. Eveleigh (1986). Cloning of an endoglucanase gene from

Pseudomonas fluorescens var. cellulosa into Escherichia coli and Pseudomonas

jluorescens. J. Ind. Microbial. 1:79-86.

Lejeunea A., D.E. Eveleighd and C. Colson (1988). Expression of an endoglucanase gene

of Pseudomonas jluorescens var. cellulosa in Zymomonas mobilis. FEMS Microbiology

Letters. 49: 363-366.

Lemke T., U. Stingl, M. Egert, M.W. Friedrich and A. Brune (2003). Physicochemical

conditions and microbial activities in the highly alkaline gut of the humus-feeding

larva of P. ephippiata (Coleoptera: Scarabaeidae). Appl. Environ. Microbiol.

69:6650-6658.

Page 20: REFERENCE - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/4784/17/17... · 2015. 12. 4. · J. Mol. Biol. 215(3):403-10. Amann R., W. Ludwig, and K. Schleifer (1995). Phylogenetic

Lewis S, M. (1996). Fermentation alcohol. In T. Godfrey and S. West (eds.). Industrial

Enzymology, 2nd Ed., New York: Stockton Press, pp. 12-48.

Li L., J.Frohlich, P. Pfeiffer and H. Konig (2003). Termite gut symbiotic archaezoa are

becoming living metabolic fossils. Eukaryot. Cell. 2:1091–1098.

Lilburn T.G., K.S. Kim, N.E.Ostrom, K.R .Byzek, J.R. Leadbetter and J.A .Breznak (2001).

Nitrogen fixation by symbiotic and free-living spirochetes. Science. 292:2495–

2498.

Lim S.K., T. W. Son, D.W. Lee, B.K. Park and K.M. Cho (2001). Novel regenerated

cellulose fibers from rice straw. J. Appl. Poly. Sci. 82: 1705–1708.

Liu C. and C.E. Wyman (2003). The effect of flow rate of compressed hot water on xylan,

lignin and total mass removal from corn stover. Ind. Eng. Chem. Res. 42: 5409– 5416.

Ljungdahl L. G. and K. E. Eriksson (1985). Ecology of Microbial Cellulose Degradation.

Adv.Microbial. Ecol . New York, Plenum Press. 8: 237-299.

Lynd L.R., P. J. Weimer, W. H.V. Zyl and I. S. Pretorious (2002). Microbial cellulose

Utilization: Fundamentals and Biotechnology. Microbiol. Mol. Biol .Rev. 66:506-507.

Lynd L. R. and P. J. Weimer (2002). Microbial cellulose utilization: Fundamentals and

biotechnology. Microbiol. Mol. Biol. Rev. 66(3): 506-577.

Mackenzie L. M., A. T.Muigai, E. O. Osir, W.Lwande, M.Keller, G.Toledo and H. I.Boga

(2007). Bacterial diversity in the intestinal tract of the fungus cultivating termite

Macrotermes michaelseni (Sjöstedt). Afr.J. Biotechnol. 6 (6):658-667.

Macy J.M., J. R. Farrand and L. Montgomery (1982). Cellulolytic and Non- cellulolytic

Bacteria in Rat Gastrointestinal Tracts. Appl. Environ. Microbiol. 44(6):1428-1434.

Page 21: REFERENCE - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/4784/17/17... · 2015. 12. 4. · J. Mol. Biol. 215(3):403-10. Amann R., W. Ludwig, and K. Schleifer (1995). Phylogenetic

Madden R. H., M. J. Bryder and N. J. Poole (1982). Isolation and characterization of an

anaerobic, cellulolytic bacterium, Clostridium papyrosolvens sp. nov. Int. J. System.

Bact. 32:87-91.

Madigan M.T., J.M.Martinko and J. Parker (2002). Brock Biology of Microorganisms.

Prentice Hall, Upper Saddle River, NJ, pp. 477–485.

Mais U., A.R.Esteghlalian, J.N. Saddler, S.D. Mansfield (2002). Enhancing the enzymatic

hydrolysis of cellulosic materials using simultaneous ball milling. Appl. Biochem.

Biotechnol. 98: 815-832.

Majumdar P., and S. Chanda (2001). Chemical profile of some lignocellulosic crop

residues. Indian J. Agric. Biochem. 14(1 and 2), 29–33.

Mandels M. (1985). Applications of cellulases. Biochem. Soc. Trans. 13: 414-415.

Mandels M., R. Andreotti and C. Roche (1976). Measurement of saccharyfying cellulose.

Biotechnol. Bioeng. Symp. 6: 21-33.

Mandels M. (1982). In Annual Reports on Fermentation Processes 5: 35-78 (ed. G. T. Tsao;

Academic Press, New York).

Mansfield S.D, C Mooney and J.N. Saddler (1999) Substrate and enzyme characteristics that

limit cellulose hydrolysis. Biotechnol. Prog. 15: 804-816.

Martín C., M.Galbe, F. Wahlbom,B. Hahn-Hagerdal and L.J. Jonsson (2002). Ethanol

production from enzymatic hydrolysates of sugar cane bagasse using recombinant

xylose-utilising Saccharomyces cerevisiae. Enzyme. Microb Technol. 31:

274-282.

Page 22: REFERENCE - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/4784/17/17... · 2015. 12. 4. · J. Mol. Biol. 215(3):403-10. Amann R., W. Ludwig, and K. Schleifer (1995). Phylogenetic

Martin M.M. (1991). The evolution of cellulose digestion in insects.Philosophical

Transactions of the Royal Society B: Biological Sciences. Soc. Lond. B. 333: 281-

288.

Martin M.M. (1983). Cellulose digestion in insects. Comp. Biochem. Physiol. 75: 313– 324.

Master E.R. , U.J. Rudsander, W. Zhou, H. Henriksson, C. Divne, S. Denman, D.B.Wilson,

and T.T. Teeri (2004). Recombinant expression and enzymatic characterization of

PttCel9A, a KOR homologue from Populus tremula x tremuloides. Biochem. 43(31):

10080-9.

McMillan, J.D. (1994). in Enzymatic Conversion of Biomass for Fuels Production,

Himmel, M.E., Baker, J.O., and Overend, R.P., ed., American Chemical Society, NY,

pp. 411-437.

Mendels M. and J. Weber. (1969). The product of cellulose in cellulase and their application.

Adv. Chem. Ser. 95: 39-443.

Michael M., C. Martin, G. Jones and E. A. Bernays (1991). Philosophical Transactions:

Biological Sciences. The Evolutionary Interaction of Animals and Plants. 333:281-

288.

Migita N. (1968) Composition of Wood. In: Migita, N.,Yonezawa, Y. and Kondo T. (eds.)

Wood Chemistry I. Kyoritsu Syuppan Co., Ltd., Tokyo.

Miller G.L. (1959). Use of Dinitrosalicylic Acid Reagent for Determination of Reducing Sugar.

Anal. Chem. 31:426-428.

Millet J., D. Petre, P. Beguin, P. Raynaud, and J.P. Aubert (1985). Cloning of ten distinct

DNA fragments of Clostridium thermocellum coding for cellulases. FEMS

Microbial. Lett. 29:145-149.

Page 23: REFERENCE - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/4784/17/17... · 2015. 12. 4. · J. Mol. Biol. 215(3):403-10. Amann R., W. Ludwig, and K. Schleifer (1995). Phylogenetic

Misawa N., T. Okamoto and K. Nakamura (1988). Nucleotide sequence of the 2.7 kb

plasmid of Zymomonas mobilis ATCC10988 J. Biotechnol. 7: 167–178.

Misra J. A. and V. Ranganathan (1954). Digestion of cellulose by the mound building termite

Termes (Cyclotermes) obesus (Rambur). Proc. Indian Acad. Sci. 39: 100– 113.

Mohagheghi A., N. Dowe and D. Schell(2004). Performance of a newly developed

integrant of Zymomonas mobilis for ethanol production on corn stover hydrolysate.

Biotechnol Lett. 26:321–325.

Mok W. and M.J Antal (1992). Hot water only solvolysis of whole biomass hemicellulose

by hot compressed liquid water. Ind. Eng. Chem. Res. 31, 1157–1161.

Moncreff R.W. (1975) in Man-Made Fibres, Newnes- Butterworths, pp. 162–223.

Mooney C.A., S.D. Mansfield, R.P. Beatson and J.N. Saddler (1999). The effect of fiber

characteristics on hydrolysis and cellulase accessibility to softwood substrates.

Enzyme Microb. Tech. 25: 644-650.

Moore W.E. and D.B. Johnson (1967). Procedures for the Chemical Analysis of Wood and

Wood Products. Madison, WI: U.S. Forest Products Laboratory, U.S. Department of

Agriculture.

Morag E, E.A. Bayer and R.L .Lamed (1992). Affinity digestion for the near-total

recovery of purified cellulosome from C. thermocellum. Enz. Micro. Technol.

14:289–92.

Mori Y. (1990). Characterization of a symbiotic coculture of Clostridium

thermohydrosulfuriculm YM3 and Clostridium thermocellum YM4. Appl. Environ.

Microbiol. 56:37–42.

Page 24: REFERENCE - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/4784/17/17... · 2015. 12. 4. · J. Mol. Biol. 215(3):403-10. Amann R., W. Ludwig, and K. Schleifer (1995). Phylogenetic

Morrison M., P.B. Pope, S.E. Denman and C.S. McSweeney (2009). Plant biomass

degradation by gut microbiomes: more of the same or something new? Curr.

Opin.Biotechnol, 20, 358–363.

Mosier N., C.Wyman, B. Dale, R. Elander, Y.Y.Lee, M. Holtzapple and M. Ladisch (2005).

Features of promising technologies for pretreatment of lignocellulosic biomass.

Biores. Technol. 96: 673-686.

Muhammad S., H.A. Suberu, N.A. Amusa and M.D. Agaji (2001). The Effect of Soil

Amendment with Sawdust and Rice Husks on the growth and incidence of seedling

blight Of Tamarrindus indica Linn caused by by Macrophomina phaseolina and

Rhizoctonia solani. Moor J. Agric. Res. 2: 40-46.

Muller C.D., and M. A.Novak (2007). Application of mechanical shear in an internal- recycle

for the enhancement of mesophilic anaerobic digestion. Water Environ. Res. 79: 297-

304.

Murray W.D., L.C. Sowden and J.R. Colvin (1984). Bacteroides cellulosolvens sp. nov., a

cellulolytic species from sewage sludge. Inter. J. Sys.Bacteriol. 34: 185-187.

Nakamura A., T.Uozumi and T. Beppu (1987). Nucleotide sequence of a cellulase gene of

B. subtilis. Eur. J. Biochem. 164:317-320.

Nakamura, K., N. Misawa and K. Kitamura (1986). Cellulase genes of Cellulomonas udu

CB4. II. Cloning and expression of a CM-cellulose hydrolyzing enzyme

(endoglucanase) gene in Escherichia coli. J. Biotech. 3:247-253.

Nation, J. L. 2007. Insect Physiology

Neu H. C. and L.Heppel (1965). and Biochemistry. Second Edition. ix pp. 544 CRC Press, Boca

Raton.

Page 25: REFERENCE - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/4784/17/17... · 2015. 12. 4. · J. Mol. Biol. 215(3):403-10. Amann R., W. Ludwig, and K. Schleifer (1995). Phylogenetic

Neu H.C. and L A. Heppel (1965).The release of enzymes from Escherichia shock and during

the formation of sphemplasts. I. Biol. Chem. 240:3685-92.

Nieduszynsk I. And E. Atkins (1970). Preliminary investigation of algal cellulose.

Biochimica et Biophysica Acta. 222:109-118.

Nobuhiro S., T.Kudo, and K. Horikoshi (1984). Molecular Cloning and Expression of

Cellulase Genes of Alkalophilic Bacillus sp. Strain N-4 in Escherichia coli. J.

Bacteriol, 158 (2): 503-506.

Nolte A., and F. Mayer (1989) Localization and immunological characterization of the

cellulolytic enzyme system in Clostridium thermocellum. FEMS Microbiol Lett. 61:65-

72.

Ohkuma H. (2003). Termite symbiotic systems: Efficient bio-recycling of lignocelluloses.

Appl. Microbiol. Biotechnol. 61:1–9.

Ohmiya, K., K. Nagashima, T.Kajino, E.Goto, A. Tsukada and S. Shimand (1988).

Cloning of the cellulase gene from Ruminococcus albus and its expression in

Escherichia coli. Appl. Environ. Microbial. 54:1511-1515.

Okamoto T, S. Yamano, H. Ikeaga and K. Nakamura (1994). Cloning of the Acetobacter

xylinum cellulase gene and its expression in Escherichia coli and Zymomonas

mobilis. Appl. Microbiol. Biotechnol. 42: 563–568.

Oliver K.M., J.A. Russell, N.A. Moran and M.S. Hunter (2003). Facultative bacterial

symbionts in aphids confer resistance to parasitic wasps. Proc. Natl Acad. Sci.

USA.;100:1803–1807.

Page 26: REFERENCE - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/4784/17/17... · 2015. 12. 4. · J. Mol. Biol. 215(3):403-10. Amann R., W. Ludwig, and K. Schleifer (1995). Phylogenetic

Onsori H., M.R. Zamani, M. Motallebi and A. Zarghami (2005). Identification of over

producer strain of endo-β-1, 4-glucanase in Aspergillus Species: Characterization

of crude carboxymethyl cellulase. Afr. J. Biotechnol. 4:26-30.

Oyeleke S. B. and T. A. Okusanmi (2008). Isolation and characterization of cellulose

hydrolysing microorganism from the rumen of ruminants. Afr.J. Biotechnol. 7

(10):1503–1504.

Pan X.,N. Gilkes, J. Kadla, K. Pye, S. Saka,D.Gregg, K. Ehara, D.Xie, D Lam and J.

Saddler (2006). Bioconversion of hybrid poplar to ethanol and co-products using an

organosolv fractionation process: optimization of process yields. Biotechnol.

Bioeng. 94, 851-861.

Pandey A. (1992). Recent process developments in solid state fermentation. Process.

Biochem. 27 (2):109-117.

Pandey A., C.R. Soccol, P. Nigam and V.T. Soccol (2000). Biotechnological potential of

agro-industrial residues. I: sugarcane bagasse. Bioresour Technol. 74:69–80.

Paradis F.W., R.A.J.Warren, D.G. Kilburn and R.C. Miller (1987). The expression of

Cellulomonasfimi cellulase genes in Brevibacterium lactofetmentum. Gene. 61:199-

206.

Park D.S., H.W. Oh, H. Kim, S.Y. Heo, N. Kim, K.Y. Seol and H.Y. Park (2007).

Screening of bacteria producing lipase from insect gut: isolation and

characterization of a strain, Burkholderia sp. HY-10 producing lipase. Kor. J. Appl.

Entomol. 46, 131-139.

Patel J. B. (2001). 16S rRNA gene sequencing for bacterial pathogen identification in the clinical

laboratory. Mol. Diagn. 6. 313–321.

Page 27: REFERENCE - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/4784/17/17... · 2015. 12. 4. · J. Mol. Biol. 215(3):403-10. Amann R., W. Ludwig, and K. Schleifer (1995). Phylogenetic

Payen A. (1838). Memoir on the composition of the tissue of plants and of woody material,

Comptes rendus. 7: 1052-1056.

Pelczar J.M., L.E.A. Chan and N.R. Krieg (1995). Microbiology, Concept and Application.

Int. Edn., McGraw-Hill Inc., New Jersey, pp: 847.

Penttila M, P. Lehtovaara, H. Nevalainen, R. Bhikhabhai and J. Knowles(1986). Homology

between cellulase genes of Trichoderma reesei: complete nucleotide sequence of the

endoglucanase I gene. Gene. 45(3): 253-263.

Perez-Martinez, G., L. Gonzilez-Candelas, J. Polaina and A. Flors (1988). Expression of an

endoglucanase gene from Clostridium cellulolyticum in Escherichia coli. J. Ind.

Microbiol. 3:365-371.

Pettersen R.C., (1984). The chemical composition of wood (chapter 2). In: Rowell, R.M. (Ed.),

The chemistry of solid wood, Advances in Chemistry Series,207: American Chemical

Society, Washington, DC, p. 984.

Philippidis G. P. and T. K. Smith (1995). Limiting factors in the simultaneous

saccharification and fermentation process for conversion of cellulosic biomass to fuel

ethanol. Appl. Biochem. Biotechnol. 51/52:117-124.

Puls J. and J. Schuseil (1993), Chemistry of hemicellulose: relationship between hemicellulose

structure and enzyme required for hydrolysis. In: Coughlan MP, Hazlewood GP (eds)

Hemicellulose and hemicellulases. Portland, London, 1–27.

Pushalkal H. and K. K. Rao (1998). Ethanol fermentation by a cellulolytic fungus Aspergillus

terreus. World J. Microbiol. Biotechnol. 14: 289-291.

Rajoka M.I., A.Bashir and K.A. Malik (1997)Mutagenesis of Cellulomonas biazotea for

enhanced production of xylanases. Biores. Tech. 62: 99-108.

Page 28: REFERENCE - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/4784/17/17... · 2015. 12. 4. · J. Mol. Biol. 215(3):403-10. Amann R., W. Ludwig, and K. Schleifer (1995). Phylogenetic

Ramesh G.K., A. Thangamalar, M. Muthuswami and S. Subrama (2009). Characterisation

of gram negative bacterial isolates from guts of few multivoltine silkworm breeds.

Karn. J. Agri.Sci. 22 (3):517-518.

Ramin M., A.R. Alimon, N. Abdullah, J.M. Panandam and K. Sijam (2008). Isolation and

identification of three species of bacteria from the termite Coptotermes curvignathus

(Holmgren) present in the vicinity of University Putra Malaysia. Res. J. Microbiol.

3: 288–292.

Ramos L.P. (2003). The chemistry involved in the steam treatment of lignocellulosic

materials. Quim. Nova. 26 (6): 863–871.

Reddy N. and Y. Yang (2004). Structure of novel cellulosic fibers from cornhusks.

Polymer Preprints (American Chemical Society, Division of Polymer Chemistry),

45 (2): 411.

Reinikainen T, L., Ruohonen, T. Nevanen, L. Laaksonen, P. Kraulis, T.A. Jones, J.K.C.

Knowles and T.T. Teeri (1992). Investigation of the function of mutated cellulose-

binding domains of Trichoderma reesei cellobiohydrolase I. Proteins Structure

Function and Genetics. 14:475-482.

Reinikainen T., O. Teleman and T.T. Teeri (1995). Effects of pH and high ionic strength on

the adsorption and activity of native and mutated cellobiohydrolase I from

Trichoderma reesei. Proteins Structure Function and Genetics. 22:392-403.

Revol J. F. and D. A. I. Goring (1983). Directionality of the fiber c-axis of cellulose

crystallites in microfibrils of Valonia ventricosa. Polymer 24: 1547-1550.

Revol J. F., A. Dietrich and D.I.A.Goring (1987). Effect of mercerization on the crystallite

size and crystallinity index in cellulose from different sources. Can. J. Chem. 65:

Page 29: REFERENCE - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/4784/17/17... · 2015. 12. 4. · J. Mol. Biol. 215(3):403-10. Amann R., W. Ludwig, and K. Schleifer (1995). Phylogenetic

1724 .

Roberto I.C., S.I. Mussatto and R.C.L.B. Rodrigues (2003). Dilute-acid hydrolysis for

optimization of xylose recovery from rice straw in a semi-pilot reactor. Ind. Crops

Prod.7: 171-176.

Rogers P. L, K. J. Lee, M. L. Skotnicki and D. E. Tribe (1982). Ethanol production by

Zymomonas mobilis. Adv. Biochem. Eng. Biotechnol.23, 37–84.

Romano A. H. and T. Conway (1996). Evolution of carbohydrate metabolic pathways. Res.

Microbiol. 147:448-455.

Rothman H., R. Greenshields and F.R. Calle (1983). The alcohol economy: fuel ethanol and the

Brazilian experience. London: Francis Printer.

Rui G., M. Ding, S.L. Zhang, G.J. Xu and F.J.Zhao (2007). Molecular cloning and

characterization of two novel cellulase genes from the mollusc Ampullaria

crossean. J. Comp. Physiol. 178:209–215.

Ryu S.K., and J.M. Lee (1983). Bioconversion of waste cellulose by using an attrition

bioreactor. Biotechnol. Bioeng. 25: 53-65.

Sacchi C. T., D. Alber, P. Dull, E. A. Mothershed, A. M. Whitney, G. A. Barnett, T.

Popovic and L. W. Mayer (2005). High level of sequence diversity in the 16S rRNA

genes of Haemophilus influenzae isolates is useful for molecular subtyping. J. Clin.

Microbiol. 43:3734-3742

Sambrook J. and D. W. Russel (2003). Molecular cloning: a laboratory manual, 3rd ed. Cold

Spring Harbor Laboratory, Cold Spring Harbor, N.Y.

Page 30: REFERENCE - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/4784/17/17... · 2015. 12. 4. · J. Mol. Biol. 215(3):403-10. Amann R., W. Ludwig, and K. Schleifer (1995). Phylogenetic

Sami A.J. and A.R.Shakoori (2008). Biochemical characterization of endo-1, 4-β-D-

glucanase activity of a green insect pest Aulacophora foveicollis (Lucas). Life

Science Journal. 5:30-36.

Sanchez O. J., and C. A. Cardona (2008). Trends in biotechnological production of fuel ethanol

from different feedstocks. Biores. Technol. 99(13): 5270-5295.

Saul D.J., L.C. Williams, R.A. Grayling, L.W. Chamley, D.R. Love and P.L. Bergquist (1990).

celB, a gene coding for a bifunctional cellulase from the extreme thermophile

Caldocellum saccharolyticum. Appl Environ Microbiol. 56(10):3117–3124.

Schafer A., R. Konrad, T. Kuhnigk, P. Kampfer, H. Hertel and H. Konig (1996). Hemicellulose

degrading bacteria and yeasts from the termite gut. J. of Appl. Bact. 80: 471-478.

Schwarz W.H., S S.chimming, K.P. Rucknagel, S. Burgschwaiger, G. Kreil and W.L.

Staudenbauer (1988). Nucleotide sequence of the celC gene encoding endoglucanase

C of Clostridium thermocellum. Gene. 63:23-30.

Scopes R. K. and K. Griffiths-Smith (1986). Fermentation capabilities of. Zymomonas

mobilis glycolytic enzymes. Biotechnol. Lett. 8: 653-656.

Sekar V. (1987). A rapid screening procedure for identification of recombinant bacterial clones.

Biotechniques 5:11-13.

Sekiguchi Y., Y. Kamagata and H. Harada (2001). Recent advances in methane fermentation

technology. Curr. Opin. Biotechnol. 12(3):277-82.

Shareck F., F. Mondou, R. Morosoli and D. Kluepfel (1987). Cloning of DNA sequences

involved in overproduction of endoglucanase activity in Streptomyces lividians.

Biotech. Lett. 9:169-174.

Shevchenko S.M, R.P. Beatson and J.N. Saddler (1999). The nature of lignin from steam

Page 31: REFERENCE - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/4784/17/17... · 2015. 12. 4. · J. Mol. Biol. 215(3):403-10. Amann R., W. Ludwig, and K. Schleifer (1995). Phylogenetic

explosion/enzymatic hydrolysis of softwood. Appl. Biochem. Biotechnol. 77-79:867–

876.

Shimaji K., S. Sudou and H. Harada (1976). Mokuzai no Soshiki, Morikita Publishing

Company Inc.,

Shoemaker S.P. (1984). Cellulase system of Trichoderma reesei: Trichoderma strain

improvement and expression of Trichoderma cellulases in yeast. Biotech. 2: 593-

600.

Shoemaker S., V. Schweickart, M. Ladner, D. Gelfand, S. Kwok, K. Myambo and M. Innis.

(1983). Molecular cloning of exocellobiohydrolase I derived from Trichoderma reesei

strain L27. Biotechnol. 1:691-696.

Sidiras D.K. and E.G. Koukios (1989). Acid saccharification of ball-milled straw.

Biomass . 19: 289-306.

Silverstein R.A., Y. Chen, R.R. Sharma-Shivappa, M.D. Boyette and J.A. Osborne (2007).

Comparison of chemical pretreatment methods for improving saccharification of

cotton stalks. Bioresource Technol. 98: 3000-3011.

Simon R., U. Priefer and A. Puhler (1983). A broad host range mobilization system for in

vivo genetic engineering: transposon mutagenesis in gram negative bacteria.

Biotechnol. 1:784-791.

Singer E. (2007). Why Termite Guts Could Bring Better Biofuels. Technol. Review.

Sinitsyn A.P., A.V Gusakov, I.Y. Davydkin, V.Y. Davydkin and O.V. A. Protas (1993).

Hyperefficient process for enzymatic cellulose hydrolysis in the intensive mass

transfer reactor. Biotechnol. Lett., 15: 283-288.

Page 32: REFERENCE - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/4784/17/17... · 2015. 12. 4. · J. Mol. Biol. 215(3):403-10. Amann R., W. Ludwig, and K. Schleifer (1995). Phylogenetic

Sissons C.H., K.R. Sharrock, R. M. Daniel, and H.W. Morgan (1987) Isolation of Cellulolytic

Anaerobic Extreme Thermophiles from New Zealand Thermal Sites. Appl. Environ.

Microbiol. 53:832-838.

Sivers V.M., G. Zacchi, L. Olsson and B. Hahn-Hägerdal(1994). Cost analysis of ethanol from

willow using recombinant Escherichia coli. Biotechnol. Prog. 10:555–560.

Skotnicki M. L., D. E. Tribe and P. L. Rogers (1980). R-plasmid transfer in Zymomonas

mobilis. Appl. Environ. Microbiol. 40:7-12.

Skotnicki M.L., R.G. Warr, A.E. Goodman, K.J. Lee and P.L. Rogers (1982). High-

productivity alcohol fermentations using Zymomonas mobilis. Biochem. Soc. Symp.

19: 53–86.

Slaytor M. (1992) Cellulose digestion in termites and cockroaches: what role do symbionts

play. Comp. Biochem. Physiol. B: 775-784.

Smith C. J. and M. P. Bryant (1979). Introduction to metabolic activities of intestinal

bacteria. Am. J. Clin. Nutr. 32:149-157.

Sneath P.H.A.,N.S. Mair, M.E. Sharpe and J.G. Holt (1986). In Bergey 's Manual of

Systematic Bacteriol. 2:1104-1207.

Snoep J.L., N. Arfman, L.P Yomano, H.V. Westerhoff, T. Conway and L.O. Ingram (1996).

Control of glycolytic flux in Zymomonas mobilis by glucose 6-phosphate dehydrogenase

activity. Biotechnol. Bioeng. 51: 190–197.

Sosnowski P., A. Wieczorek and A.Ledakowicz (2003). Anaerobic co-digestion of sewage

sludge and organic fraction of municipal solid wastes. Adv Environ Res. 7(3): 609-

616.

Page 33: REFERENCE - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/4784/17/17... · 2015. 12. 4. · J. Mol. Biol. 215(3):403-10. Amann R., W. Ludwig, and K. Schleifer (1995). Phylogenetic

Soutschek-Bauer E., and W.L. Staudenbauer (1987). Synthesis and secretion of a heat-s table

carboxymethylcellulase from CZostridium thermocellum in Bacillus subtilis and

Bacillus stearothennophilus. Mol. Gen. Genet. 208:537-541.

Srilatha H.R., K.Anand, K.S. Babu and K. Madhukara (1995). Fungal pretreatment of orange

processing wastes by solid-state fermentation for improved production of methane.

Process Biochem. 30: 327-331.

Srivastava K.K., P.K. Verma and R. Srivastava (1999). A recombinant cellulolytic

Escherichia coli: Cloning of the cellulase gene and characterization of a bifunctional

cellulase. Biotechnology Letters. 21: 293–297.

Stahlberg J., G. Johansson and G. Pettersson (1993). Trichoderma reesei has no true

exocellulase: All intact and truncated cellulases produce new reducing end groups

on cellulose. Biochimica et Biophysica Acta. 1157:107-113.

Stewart C.S., G. Fonty and P.H. Gouet (1988). The establishment of rumen microbial

communities. Anim. Feed Sci. Technol.21: 69-97.

Strohhacker J., A.A.D.Graaf, S.M. Schoberth, R.M. Wittig and H. Sahm (1993). 31P nuclear

magnetic resonance studies of ethanol inhibition in Zymomonas mobilis. Arch.

Microbiol. 159: 484–490.

Stutzenberger F.J., A.J. Kaufmanand R.D. Lossin, (1970). Cellulolytic activity in municipal

solid waste composting. Can. J.Microbiol. 16: 553–560.

Su P., S.F. Delaney and P.L. Rogers (1989). Cloning and expression of a β-glucosidase gene

from Xanthomonas albilineans in Escherichia coli and Zymomonas mobilis. J. Biotech. 9:

139–152.

Page 34: REFERENCE - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/4784/17/17... · 2015. 12. 4. · J. Mol. Biol. 215(3):403-10. Amann R., W. Ludwig, and K. Schleifer (1995). Phylogenetic

Su P., C. Q. Liu, R. J. Lucas, S. F. Delaney, and N. W. Dunn (1993). Simultaneous

expression of genes encoding endoglucanase and -glucosidase in Zymomonas

mobilis. Biotechnol. Lett. 15:979-984.

Sudharani K. ,M.V. Swamy and G.Seenayya (1996). High ethanol production by new isolates

of Clostridium thermocellum. Biotechnol Lett. 18:957–62.

Sun X.F, R.C. Sun, P. Fowler and M.S. Baird (2004). Isolation and characterization of

cellulose obtained by a two-stage treatment with organosolv and cyanamide

activated hydrogen peroxide from wheat straw. Carbohydr Polym. 55:379–391.

Sun X.F., F. Xu, X.F. Sun, B. Xiao and R.C. Sun (2005). Physicochemical and thermal

characterization of cellulose from barley straw. Polym Degrad Stab. 88:521–531.

Sun Y., and Cheng (2002). Hydrolysis of lignocellulosic materials for ethanol production: a

review. J. Biores. Technol. 83: 1–11.

Sun Y. and J.J. Cheng (2005). Dilute acid pretreatment of rye straw and bermudagrass for

ethanol production. Bioresource Technol. 96: 1599-606.

Swings J. and J. DeLey (1977). The biology of Zymomonas. Bacteriol. Rev. 41:1- 46.

Taherzadeh M.J. and K. Karimi (2007). Acid-based hydrolysis processes for ethanol from

lignocellulosic materials: A review. BioResources. 2: 472-499.

Taherzadeh, M, J (1999) Ethanol from Lignocellulose: Physiological Effects of Inhibitors

and Fermentation Strategies. Thesis for the Degree of Doctor of Philosophy,

Department of Chemical Reaction Engineering, Chalmers University of Technology,

Goteborg, Sweden.

Taherzadeh M.J. and K. Karimi (2007). Acid-based hydrolysis processes for ethanol from

lignocellulosic materials: A review. BioResources. 2: 472-499.

Page 35: REFERENCE - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/4784/17/17... · 2015. 12. 4. · J. Mol. Biol. 215(3):403-10. Amann R., W. Ludwig, and K. Schleifer (1995). Phylogenetic

Tailliez P., H. Girard, J. Millet and P. Beguin (1989). Enhanced cellulose fermentation by

an asporogenous and ethanol-tolerant mutant of Clostridium thermocellum. Appl

Environ E Microbiol. 55:207–211.

Tampier .M, D.Smith, E.Bibeau and P.A. Beauchemin (2004). Identifying environmentally

preferable uses for biomass resources. Stage 1 report: identification of feedstock-

to-product threads. Prepared for Natural Resources Canada, Commission for

Environmental Co-operation, and National Research Council of Canada.

Envirochem Services Inc., Vancouver, B.C.

Tanaka S. and K. Kamiyama (2002). Thermochemical pretreatment in the anaerobic

digestion of waste activated sludge. Water Sci. Technol. 46: 173-179.

Taniguchi M., H. Suzuki, D. Watanabe, K. Sakai, K. Hoshino, and T. Tanaka (2005).

Evaluation of pretreatment with Pleurotus ostreatus for enzymatic hydrolysis of rice

straw. J. Biosci. Bioeng. 100: 637-43.

Tashiro K and M. Kobayashi (1991). Theoretical evaluation of three-dimensional elastic

constants of native and regenerated celluloses: role of hydrogen bonds. Polymer

32:1516–1526.

Teather R. M. and P. J. Wood (1982). Use of Congo red-polysaccharide interactions in

enumeration and characterization of cellulolytic bacteria from the bovine rumen. Appl.

Environ. Microbiol. 43:777–780.

Thayer D. W. J. (1978). Carboxymethylcellulase Produced by Facultative Bacteria from the

Hind-gut of the Termite Reticulitermes Hesperus. Gen. Microbiol. 106: 13-18.

Page 36: REFERENCE - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/4784/17/17... · 2015. 12. 4. · J. Mol. Biol. 215(3):403-10. Amann R., W. Ludwig, and K. Schleifer (1995). Phylogenetic

Thygesen A, A. B. Thomsen, A. Schmidt, H. Jorgensen, B. Kahring and L. Olsson (2003).

Production of cellulose and hemicellulosedegrading enzymes by filamentous fungi

cultivated on wet oxidised wheat straw. Enzy. Microb. Technol. 32:606–615.

Tomme P., V. Tilbeurgh, G. Pettersson, V. J. Gamme, J. Vandekerckhove, J. Knowles, T.

Teeri and M. Claeyssens (1988). Studies of the cellulolytic system of Trichoderma

reesei QM9414. Analysis of domain function in two cellobiohydrolases by limited

proteolysis. Euro. J. Biochem. 170:575-581.

Updegraff D.M. (1969). Semi micro determination of cellulose biological materials. Analyt.

Biochem. 32:420-424.

Urbanowicz B.R., A.B. Bennett, E. D. Campillo, C. Catala, T. Hayashi, B. Henrissat, H. Höfte,

S.J. McQueen-Mason, S.E. Patterson, O. Shoseyov, T.T. Teeri and J.K. Rose (2007).

Structural organization and a standardized nomenclature for plant endo-1,4-beta-

glucanases (cellulases) of glycosyl hydrolase family 9. Plan. Phys. 144(4): 1693-6.

Vaccarino C., R.B. Lo Curto, M.M. Tripodo, E. Bellocco, G. Laganfi and R. Patan (1987)

Effect of SO2, NaOH and Na2CO3 pretreatments on the degradability and cellulase

digestibility of grape marc. Biol. Waste. 20: 79-88.

Van Zyl, W. H. and L. R. Lynd (2007). Consolidated bioprocessing for bioethanol

production using Saccharomyces cerevisiae. Biofuels. 108: 205-235.

Varma A., B.K Kolli,j. Paul,S. Saxena and H. Konig (1994).Lignocellulose degradation by

microorganisms from termite hills and termite guts: a survey on the present state of

art. FEMS Microbiolo Revi. 15:9-28.

Page 37: REFERENCE - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/4784/17/17... · 2015. 12. 4. · J. Mol. Biol. 215(3):403-10. Amann R., W. Ludwig, and K. Schleifer (1995). Phylogenetic

Vasan P. T., P. S. Piriya , D. I. G. Prabhu and S. J.Vennison (2011). Cellulosic ethanol

production by Zymomonas mobilis harboring an endoglucanase gene from

Enterobacter cloacae. Bioresour. Technol. 102:2585-2589.

Vasanthakumar A., I. Delalibera, J.R, J.O Handelsman, K.D. Klepzig, Patrick D. Schloss,

and Kenneth F. Raffa (2006). Characterization of Gut-Associated Bacteria in Larvae

and Adults of the Southern Pine Beetle, Dendroctonus frontalis Zimmermann.

Environ. Entomol. 35(6): 1710-1717.

Vennison S.J. (2009). Laboratory manual for genetic engineering. PHI Learning Pvt.Ltd.

pp.50-54.

Vieira M.C., Th. Heinze, R.A.Cruz and A.M. Mendoza-Martinez (2002). Cellulose

derivatives from cellulosic material isolated from Agave lechuguilla and fourcroydes .

Cellulose. 9(2): 203-212.

Villena G.K. and M. Gutierrez-Correa (2006). Production of cellulase by Aspergillus niger

biofilms developed on polyester cloth. Lett. Appl. Microbiol. 43(3): 262-268.

Von Sivers M., G. Zacchi, L. Olsson and B. Hahn-Hägerdal (1994). Cost analysis of ethanol

production from willow using recombinant Escherichia coli. Biotechnol Prog. 10:

555-560.

Walpot J.I. (1986). Enzymatic hydrolysis of waste paper. Conserv. Recycling. 9: 127-136.

Walter S. and H. Schrempf (1996). The synthesis of the Streptomyces reticuli cellulase

(avicelase) is regulated by both activation and repression mechanisms. Mol. Gen.

Genet. 251:186-195.

Wang, F., Y. Wang and M. Ji (2005). Mechanisms and kinetics models for ultrasonic waste

activated sludge disintegration. J. Hazard. Mater. 123: 145-150.

Page 38: REFERENCE - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/4784/17/17... · 2015. 12. 4. · J. Mol. Biol. 215(3):403-10. Amann R., W. Ludwig, and K. Schleifer (1995). Phylogenetic

Watanabe H. and G. Tokuda (2001). Animal cellulases. Cell. Mol. Life Sci. 58: 1167- 1178.

Weisser P., R. Kramer, H. Sahm and G.A. Sprenger (1995). Functional expression of the

glucose transporter of Zymomonas mobilis leads to restoration of glucose and

fructose uptake in Escherichia coli mutants and provides evidence for its facilitator

action. J. Bacteriol. 177: 3351–3354.

Wenzel M., I. Schonig, M. Berchtold, P.Kampfer and H.Konig (2002). Aerobic and

facultatively anaerobic cellulolytic bacteria from the gut of the termite Zootermopsis

angusticollis. J. Appl. Microbiol. 92: 32-40.

Wheeler K., J.H.Anshekar and Y. Sakuma(1991). Ethyl alcohol. In Chemical Economics

Handbook, USA.

Wood P. J. (1980). Specificity in the interaction of direct dyes with polysaccharides.

Carbohydr. Res. 85:271-287.

Wood T.M. (1985). Properties of cellulolytic enzyme system. Biochem. Soc. Trans.13:407-

410.

Wright J.D., C.E. Wyman and K. Grohmann (1987). Simultaneous Saccharification and

Fermentation of lignocellulose: Process Evaluation. Appl. Biochem. Biotechnol. 18:

75-90.

Wyman C. (1996). Handbook on bioethanol: production and utilization. Washington, DC:

Taylor and Francis.

Wynne E.C. and J.M. Pemberton (1986). Cloning of a cellulase cluster from Cellvibrio mixtus

which codes for cellulase, chitinase, amylase and pectinase. Appl. Environ. Microbial.

52:1362-1367.

Page 39: REFERENCE - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/4784/17/17... · 2015. 12. 4. · J. Mol. Biol. 215(3):403-10. Amann R., W. Ludwig, and K. Schleifer (1995). Phylogenetic

Xiao W.P. and W.W. Clarkson (1997). Acid solubilization of lignin and bioconversion of

treated newsprint to methane. Biodegradation. 8: 61-66.

Xu Z., Q. Wang, Z. Jiang, X.X. Yang, and Y. Ji (2007). Enzymatic hydrolysis of pretreated

soybean straw. Biomass Bioenerg. 31: 162-167.

Xue G.P., K.S. Gobius and C.G. Orpin(1992). A novel polysaccharide hydrolase cDNA (celD)

from Neocallimastix patriciarum encoding three multi-functional catalytic domains with

high endoglucanase, cellobiohydrolase and xylanase activities. J Gen

Microbiol.138:2397–2403.

Yanase H, M. Masuda, T. Tamaki and K. Tonomura (1990). Expression of the Escherichia

coli a-galactosidase and lactose permease genes in Zymomonas mobilis and its

raffinose fermentation. J. Ferment. Bioeng. 70: 1–6.

Yanase H. K. Nozaki and K. Okamoto (2005). Ethanol production from cellulosic

materials by genetically engineered Zymomonas mobilis Biotechnol Lett. 27: 259-263.

Yang B. and C.E. Wyman (2004). Effect of xylan and lignin removal by batch and

flowthrough pretreatment on the enzymatic digestibility of corn stover cellulose.

Biotechnol. Bioeng. 86: 88-95.

Yoo J.S., Y.J Jung, Y.S Chung, Y.C Lee and Y.L. Choi (2004). Molecular Cloning and

Characterization of CMCase gene (celC) from Salmonella typhimurium UR. J.of

Microbiol. 42:205-210.

Yoo J.S., H.S. Kim, J.W. Moon, S.Y. Chung, and Y.L. Choi (1998). Anaysis and cloning of

cAMP receptor protein (CRP) gene in Serratia marcescens. Kor. J. Life. Science. 8: 263-

271.

Page 40: REFERENCE - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/4784/17/17... · 2015. 12. 4. · J. Mol. Biol. 215(3):403-10. Amann R., W. Ludwig, and K. Schleifer (1995). Phylogenetic

Yoon H., M. Y. Pack, Brestic-Goachet, P.Gunasekaran, B.Cami and J.Baratti (1990).

Construction of a shuttle vector between Escherichia coli and Zymomonas anaerobia.

Microbiol. 153:219-225.

Yoon K.H., H.N. Yun, and K.H. Jung (1998). Molecular cloning of a Bacillus sp. KK-1

xylanase gene and characterization of the gene product. Biochem. Mol. Biol. Int.

45:337- 47.

Yoon K. H., S. H. Park and M. Y. Pack (1988). Transfer of Bacillus subtilis endo-and 1,4-

glucanase gene into Zymomonas anaerobia. Biotechnology Letters 10:213-216.

Yu Z.S. and H.X. Zhang (2004). Ethanol fermentation of acid-hydrolyzed cellulosic

pyrolysate with Saccharomyces cerevisiae. Bioresour Technol. 93:199–204.

Zaldivar J., J. Nielsen and L. Olsson (2001). Fuel ethanol production from lignocellulose:

a challenge for metabolic engineering and process integration. Appl. Microbiol.

Biotechnol. 56:17–34.

Zeng M., N.S. Mosier,C.P. Huang, D.M. Sherman and M.R. Ladisch (2007). Microscopic

examination of changes of plant cell structure in corn stover due to hot water

pretreatment and enzymatic hydrolysis. Biotechnol. Bioeng. 97: 265-278.

Zhang M, C. Eddy, K. Deanda, M. Finkelstein, S. Picataggio (1995) Metabolic Engineering

of a pentose metabolism pathway in ethanologenic Zymomonas mobilis. Science.

267:240-243.

Zhao X., L. Zhang and D. Liu (2007). Comparative study on chemical pretreatment

methods for improving enzymatic digestibility of crofton weed stem. Bioresource

Technol, 99:3729–3736.

Page 41: REFERENCE - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/4784/17/17... · 2015. 12. 4. · J. Mol. Biol. 215(3):403-10. Amann R., W. Ludwig, and K. Schleifer (1995). Phylogenetic

Zhao Y., Y. Wang, J.Y. Zhu, A. Ragauskas and Y. Deng (2007). Enhanced enzymatic

hydrolysis of spruce by alkaline pretreatment at low temperature. Biotechnol.

Bioeng. 99(6):1320-1328.

Zhou S. and L. O. Ingram (2000). Synergistic hydrolysis of carboxymethyl cellulose and acid-

swollen cellulose by two endoglucanases (CelZ and CelY) from Erwinia chrysanthemi.

J. Bacteriol. 182:5676–5682.

Zverlov V.V., W. Holl and W.H. Schwarz (2003). Enzymes for digestion of cellulose and

other polysaccharides in the gut of longhorn beetle larvae, Rhagium inquisitor L. (Col.,

Cerambycidae). Int. Biodeterior. Biodegrad. 51: 175-179.


Recommended