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Gas exchange Photosynthesis Phloem – sugar transport Gas exchange – cellular respiration Water &...

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Gas exchange Photosynthesis Phloem – sugar transport Gas exchange – cellular respiration Water & mineral absorption Xylem – water & mineral transport Transpiration
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Page 1: Gas exchange Photosynthesis Phloem – sugar transport Gas exchange – cellular respiration Water & mineral absorption Xylem – water & mineral transport Transpiration.

Gas exchange Photosynthesis

Phloem –sugar transport

Gas exchange –cellular respirationWater & mineral

absorption

Xylem – water & mineral transport

Transpiration

Page 2: Gas exchange Photosynthesis Phloem – sugar transport Gas exchange – cellular respiration Water & mineral absorption Xylem – water & mineral transport Transpiration.
Page 3: Gas exchange Photosynthesis Phloem – sugar transport Gas exchange – cellular respiration Water & mineral absorption Xylem – water & mineral transport Transpiration.

3 MAIN CELL COMPARTMENTS

TISSUE COMPARTMENTS•Symplast – travel via cytosol continum

•Apoplast- travel via cell walls& extracellular spaces

Page 4: Gas exchange Photosynthesis Phloem – sugar transport Gas exchange – cellular respiration Water & mineral absorption Xylem – water & mineral transport Transpiration.

ABSORPTION OF WATER& MINERALS BY ROOTS

Mycorrhizae –•Symbiotic relationship•Surface area for absorption

Page 5: Gas exchange Photosynthesis Phloem – sugar transport Gas exchange – cellular respiration Water & mineral absorption Xylem – water & mineral transport Transpiration.

TRANSPORT OF WATER

• Root pressure

• Guttation

• Transpirational pull

• Cohesion & adhesion

Page 6: Gas exchange Photosynthesis Phloem – sugar transport Gas exchange – cellular respiration Water & mineral absorption Xylem – water & mineral transport Transpiration.

TRANSPIRATIONAL PULL

Page 7: Gas exchange Photosynthesis Phloem – sugar transport Gas exchange – cellular respiration Water & mineral absorption Xylem – water & mineral transport Transpiration.

ASCENT OF WATER

•SOLAR POWERED

•HYDROGEN BONDING

•CHARACTERISTICS OF WATER

Page 8: Gas exchange Photosynthesis Phloem – sugar transport Gas exchange – cellular respiration Water & mineral absorption Xylem – water & mineral transport Transpiration.

CONTROL OF TRANSPIRATION

Photosynthesis – transpiration compromiseGuard cellsStomaopen

Stomaclosed

Page 9: Gas exchange Photosynthesis Phloem – sugar transport Gas exchange – cellular respiration Water & mineral absorption Xylem – water & mineral transport Transpiration.

Guard cells:inner walls thicker, cellulose microfibrils

Page 10: Gas exchange Photosynthesis Phloem – sugar transport Gas exchange – cellular respiration Water & mineral absorption Xylem – water & mineral transport Transpiration.

Guard cells: regulated by uptake and loss of K+

Page 11: Gas exchange Photosynthesis Phloem – sugar transport Gas exchange – cellular respiration Water & mineral absorption Xylem – water & mineral transport Transpiration.

Adaptations to reduce transpiration:thick cuticle, recessed stomata

Stoma

Page 12: Gas exchange Photosynthesis Phloem – sugar transport Gas exchange – cellular respiration Water & mineral absorption Xylem – water & mineral transport Transpiration.

TRANSLOCATION OF PHLOEM SAP

From source (sugar production) to sink (consumes or stores sugar), pressure flow hypothesis

Chemiosmotic mechanism for active transport of sucrose

Page 13: Gas exchange Photosynthesis Phloem – sugar transport Gas exchange – cellular respiration Water & mineral absorption Xylem – water & mineral transport Transpiration.

PRESSURE FLOWLoading of sugar reduces water potential

Absorption of water generates pressure and forces flow

Pressure gradient reinforced by the unloading of sugar at the sink

Xylem recycles water from sink to source

Page 14: Gas exchange Photosynthesis Phloem – sugar transport Gas exchange – cellular respiration Water & mineral absorption Xylem – water & mineral transport Transpiration.

Tapping phloem-sap with the help of an aphid

Page 15: Gas exchange Photosynthesis Phloem – sugar transport Gas exchange – cellular respiration Water & mineral absorption Xylem – water & mineral transport Transpiration.
Page 16: Gas exchange Photosynthesis Phloem – sugar transport Gas exchange – cellular respiration Water & mineral absorption Xylem – water & mineral transport Transpiration.

THE AVAILABILITY OF SOIL WATER & MINERALS

• Roots hairs increase surface area• Minerals actively transported in, water follows by osmosis

Page 17: Gas exchange Photosynthesis Phloem – sugar transport Gas exchange – cellular respiration Water & mineral absorption Xylem – water & mineral transport Transpiration.

Soil Bacteria:Nitrogen fixing & Ammonifying

(decomposers)

Page 18: Gas exchange Photosynthesis Phloem – sugar transport Gas exchange – cellular respiration Water & mineral absorption Xylem – water & mineral transport Transpiration.

Root nodules on legumes

Development of a soybean root nodulePericycle layer gives rise

to secondary roots

Page 19: Gas exchange Photosynthesis Phloem – sugar transport Gas exchange – cellular respiration Water & mineral absorption Xylem – water & mineral transport Transpiration.
Page 20: Gas exchange Photosynthesis Phloem – sugar transport Gas exchange – cellular respiration Water & mineral absorption Xylem – water & mineral transport Transpiration.

PARASITIC PLANT

CARNIVOROUS PLANTS

Page 21: Gas exchange Photosynthesis Phloem – sugar transport Gas exchange – cellular respiration Water & mineral absorption Xylem – water & mineral transport Transpiration.
Page 22: Gas exchange Photosynthesis Phloem – sugar transport Gas exchange – cellular respiration Water & mineral absorption Xylem – water & mineral transport Transpiration.

ANGIOSPERM LIFE CYCLEsporophyte/gametophyte;

diploid/haploid

Page 23: Gas exchange Photosynthesis Phloem – sugar transport Gas exchange – cellular respiration Water & mineral absorption Xylem – water & mineral transport Transpiration.

FLOWER ANATOMYComplete-all organsIncomplete-lacking

1 or more organsBisexual – both

stamens & carpelsUnisexual-one or the

otherMonoecious-

carpellate & staminate flowers

Dioecious-separate plants

Page 24: Gas exchange Photosynthesis Phloem – sugar transport Gas exchange – cellular respiration Water & mineral absorption Xylem – water & mineral transport Transpiration.
Page 25: Gas exchange Photosynthesis Phloem – sugar transport Gas exchange – cellular respiration Water & mineral absorption Xylem – water & mineral transport Transpiration.

Angiosperm Gametophytes

Pollen grains

male

female

Page 26: Gas exchange Photosynthesis Phloem – sugar transport Gas exchange – cellular respiration Water & mineral absorption Xylem – water & mineral transport Transpiration.

Reduce self - fertilization

Page 27: Gas exchange Photosynthesis Phloem – sugar transport Gas exchange – cellular respiration Water & mineral absorption Xylem – water & mineral transport Transpiration.

Genetic Basis of Self-Incompatibility

Page 28: Gas exchange Photosynthesis Phloem – sugar transport Gas exchange – cellular respiration Water & mineral absorption Xylem – water & mineral transport Transpiration.
Page 29: Gas exchange Photosynthesis Phloem – sugar transport Gas exchange – cellular respiration Water & mineral absorption Xylem – water & mineral transport Transpiration.

Growth of pollen tube and double fertilization

*

*

Page 30: Gas exchange Photosynthesis Phloem – sugar transport Gas exchange – cellular respiration Water & mineral absorption Xylem – water & mineral transport Transpiration.

Development of a Dicot Embryo

Page 31: Gas exchange Photosynthesis Phloem – sugar transport Gas exchange – cellular respiration Water & mineral absorption Xylem – water & mineral transport Transpiration.

Below cotyledons

Above cotyledons

Embryonic root

Unique to monocots

Development 0f a pea fruit

Page 32: Gas exchange Photosynthesis Phloem – sugar transport Gas exchange – cellular respiration Water & mineral absorption Xylem – water & mineral transport Transpiration.

GERMINATION• Imbibition• Release of Gibberellic acid• Aleurone enzymes (α amylase)• Hydrolysis of endosperm

Page 33: Gas exchange Photosynthesis Phloem – sugar transport Gas exchange – cellular respiration Water & mineral absorption Xylem – water & mineral transport Transpiration.

Seed Germination- Radicle emerges 1st

a) Cotyledons pulled from soilb) Hypocotyl emerges, cotyledons remain in groundc) Shoot grows up through coleoptile

Page 34: Gas exchange Photosynthesis Phloem – sugar transport Gas exchange – cellular respiration Water & mineral absorption Xylem – water & mineral transport Transpiration.

ASEXUAL REPRODUCTION(vegetative reproduction)

Fragmentation – separation of a parent plant into parts that reform whole plants

Root system of a single parent gives rise to many adventitious shoots

Vegetative Propagation- cuttings

Page 35: Gas exchange Photosynthesis Phloem – sugar transport Gas exchange – cellular respiration Water & mineral absorption Xylem – water & mineral transport Transpiration.

PLANT RESPONSES TO EXTERNAL SIGNALS

Light induced greening of dark sprouted potatoes

Grass seedlinggrowing towardlight

Page 36: Gas exchange Photosynthesis Phloem – sugar transport Gas exchange – cellular respiration Water & mineral absorption Xylem – water & mineral transport Transpiration.

Signal Transduction Pathway(review)

Page 37: Gas exchange Photosynthesis Phloem – sugar transport Gas exchange – cellular respiration Water & mineral absorption Xylem – water & mineral transport Transpiration.

TROPISMS

• Phototropism – response to light– Stems (positive); Roots (negative)

• Gravitropism – response to gravity– Stems (negative); Roots (positive)

• Thigmotropism – response to contact– Curling around objects (vines)

Page 38: Gas exchange Photosynthesis Phloem – sugar transport Gas exchange – cellular respiration Water & mineral absorption Xylem – water & mineral transport Transpiration.

PHOTOTROPISM

Page 39: Gas exchange Photosynthesis Phloem – sugar transport Gas exchange – cellular respiration Water & mineral absorption Xylem – water & mineral transport Transpiration.

CONCLUSION

-CHEMICAL SIGNALPRESENT IN COLEOPTILE TIP STIMULATES GROWTHAS IT PASSED DOWN THECOLEOPTILE-HIGHER CONCENTRATIONOF CHEMICAL ON DARKER SIDE CAUSED THE PLANT GROWTH TO CURVE TOWARD LIGHT- NAMED THE CHEMICAL “AUXIN”

Page 40: Gas exchange Photosynthesis Phloem – sugar transport Gas exchange – cellular respiration Water & mineral absorption Xylem – water & mineral transport Transpiration.

PLANT HORMONES• Auxins – stem elongation in apical

meristems– Fruit maturation, prevents abscission

• Cytokinins – cell division in roots, embryos, fruits

• Gibberellins – stem elongation in mature regions, fruit development

• Abscisic acid – dormancy, stress, abscission

• Ethylene – fruit ripening

Page 41: Gas exchange Photosynthesis Phloem – sugar transport Gas exchange – cellular respiration Water & mineral absorption Xylem – water & mineral transport Transpiration.

Apical Dominance:•Terminal shoot inhibits lateral buds•Auxin responsible

Page 42: Gas exchange Photosynthesis Phloem – sugar transport Gas exchange – cellular respiration Water & mineral absorption Xylem – water & mineral transport Transpiration.

Gibberellins:•Stimulate growth (elongation & division)•Tall spindly plants•Larger seedless grapes

Page 43: Gas exchange Photosynthesis Phloem – sugar transport Gas exchange – cellular respiration Water & mineral absorption Xylem – water & mineral transport Transpiration.

Abscisic Acid (ABA)•Seed dormancy

-Inhibits germination•Stress

-Drought-Winter

Page 44: Gas exchange Photosynthesis Phloem – sugar transport Gas exchange – cellular respiration Water & mineral absorption Xylem – water & mineral transport Transpiration.
Page 45: Gas exchange Photosynthesis Phloem – sugar transport Gas exchange – cellular respiration Water & mineral absorption Xylem – water & mineral transport Transpiration.
Page 46: Gas exchange Photosynthesis Phloem – sugar transport Gas exchange – cellular respiration Water & mineral absorption Xylem – water & mineral transport Transpiration.

Leaf Abscisision

•Parenchyma cells w/ very thin walls

•Change in balanceof auxin & ethylene

•Aging leaf producesless & less auxin

Page 47: Gas exchange Photosynthesis Phloem – sugar transport Gas exchange – cellular respiration Water & mineral absorption Xylem – water & mineral transport Transpiration.
Page 48: Gas exchange Photosynthesis Phloem – sugar transport Gas exchange – cellular respiration Water & mineral absorption Xylem – water & mineral transport Transpiration.

Phytochrome regulation of lettuce seeds

Pr ↔ Pfr acts as a switching mechanismthat controls various light-induced events

Page 49: Gas exchange Photosynthesis Phloem – sugar transport Gas exchange – cellular respiration Water & mineral absorption Xylem – water & mineral transport Transpiration.

Links light reception to cellular responses

Functions as the photoreceptor

Page 50: Gas exchange Photosynthesis Phloem – sugar transport Gas exchange – cellular respiration Water & mineral absorption Xylem – water & mineral transport Transpiration.

bluish blue-greenish

Switched on by

Page 51: Gas exchange Photosynthesis Phloem – sugar transport Gas exchange – cellular respiration Water & mineral absorption Xylem – water & mineral transport Transpiration.

Photoperiodic Control of Flowering

Short day plants flower when night exceeds the critical dark period

Long day plants flower when night is shorter than the critical dark period

Page 52: Gas exchange Photosynthesis Phloem – sugar transport Gas exchange – cellular respiration Water & mineral absorption Xylem – water & mineral transport Transpiration.
Page 53: Gas exchange Photosynthesis Phloem – sugar transport Gas exchange – cellular respiration Water & mineral absorption Xylem – water & mineral transport Transpiration.
Page 54: Gas exchange Photosynthesis Phloem – sugar transport Gas exchange – cellular respiration Water & mineral absorption Xylem – water & mineral transport Transpiration.

Root Gravitropism

Page 55: Gas exchange Photosynthesis Phloem – sugar transport Gas exchange – cellular respiration Water & mineral absorption Xylem – water & mineral transport Transpiration.

Smaller plant touched 2x/day

Rapid turgor movements

Page 56: Gas exchange Photosynthesis Phloem – sugar transport Gas exchange – cellular respiration Water & mineral absorption Xylem – water & mineral transport Transpiration.

Response to flooding & oxygen deprivation


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