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Biología, meiosis

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MEIOSIS MEIOSIS
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Page 1: Biología, meiosis

MEIOSISMEIOSIS

Page 2: Biología, meiosis

Meiosis

• The form of cell divisioncell division by which gametes, gametes, with halfhalf the number of chromosomes,chromosomes, are produced.

• Diploid (2n) Diploid (2n) haploid (n)haploid (n)

• MeiosisMeiosis is sexual reproduction.sexual reproduction.

• Two divisionsTwo divisions (meiosis I meiosis I and meiosis IImeiosis II).

Page 3: Biología, meiosis

MeiosisMeiosis

• Sex cells Sex cells divide to produce gametesgametes (sperm (sperm or egg)or egg).

• GametesGametes have halfhalf the # of chromosomeschromosomes.

• Occurs only in gonads (testes or ovaries).Occurs only in gonads (testes or ovaries).

Male: spermatogenesisMale: spermatogenesis

Female: oogenesisFemale: oogenesis

• MeiosisMeiosis is similar to mitosismitosis with some chromosomal differences.

Page 4: Biología, meiosis

SpermatogenesisSpermatogenesis

2n=46

humansex cell

diploid (2n)

n=23

n=23

meiosis I

n=23

n=23

n=23

n=23

sperm

haploid (n)

meiosis II

Page 5: Biología, meiosis

Interphase IInterphase I

• Similar to mitosismitosis interphase.

• ChromosomesChromosomes replicate (S phase).(S phase).

• Each duplicated chromosomechromosome consist of two identical sister chromatidschromatids attached at their centromerescentromeres.

• CentrioleCentriole pairs also replicate.

Page 6: Biología, meiosis

Interphase IInterphase I

• NucleusNucleus and nucleolusnucleolus visible.

nuclear membrane

nucleolus

cell membrane

chromatin

Page 7: Biología, meiosis

Meiosis I (four phases)Meiosis I (four phases)

• Cell division Cell division that reduces the chromosomechromosome number by one-half.one-half.

• four phasesfour phases:

a.a. prophase Iprophase I

b.b. metaphase Imetaphase I

c.c. anaphase Ianaphase I

d.d. telophase Itelophase I

Page 8: Biología, meiosis

Prophase IProphase I

• Longest and most complex phase (90%).Longest and most complex phase (90%).

• ChromosomesChromosomes condense.

• SynapsisSynapsis occurs: homologous chromosomes homologous chromosomes come together to form a tetradtetrad.

• TetradTetrad is two chromosomeschromosomes or four chromatidschromatids (sister and nonsister chromatids).

Page 9: Biología, meiosis

Prophase IProphase I - - SynapsisSynapsis

Homologous chromosomes

sister chromatids sister chromatidsTetrad

Page 10: Biología, meiosis

Homologous ChromosomesHomologous Chromosomes

• Pair of chromosomeschromosomes (maternalmaternal and paternalpaternal) that are similar in shape and size.

• Homologous pairs (tetrads) (tetrads) carry genes controlling the same inherited traits.

• Each locuslocus (position of a gene) (position of a gene) is in the same position on homologues.

• Humans have 23 pairs of homologous chromosomes.homologous chromosomes.

a. 22 pairs of autosomesautosomes

b. 01 pair of sex chromosomessex chromosomes

Page 11: Biología, meiosis

Homologous ChromosomesHomologous Chromosomes

Paternal Maternal

eye color locus

eye color locus

hair color locus

hair color locus

Page 12: Biología, meiosis

Crossing OverCrossing Over

• Crossing over (variation) Crossing over (variation) may occur between nonsister chromatidschromatids at the chiasmatachiasmata.

• Crossing overCrossing over: segments of nonsister chromatidschromatids break and reattach to the other chromatidchromatid.

• Chiasmata (chiasma) Chiasmata (chiasma) are the sites of crossing crossing overover.

Page 13: Biología, meiosis

Crossing Over - variation Crossing Over - variation

nonsister chromatids

chiasmata: site of crossing over

variation

Tetrad

Page 14: Biología, meiosis

Sex ChromosomesSex Chromosomes

XX chromosome - female XY chromosome - male

Page 15: Biología, meiosis

Prophase IProphase I

centriolesspindle fiber

asterfibers

Page 16: Biología, meiosis

Metaphase IMetaphase I• Shortest phaseShortest phase

• TetradsTetrads align on the metaphase platemetaphase plate.

• INDEPENDENT ASSORTMENT OCCURS:INDEPENDENT ASSORTMENT OCCURS:1. Orientation of homologous pair to poles is random.2. Variation3. Formula: 2n

Example:Example: 2n = 42n = 4then then n = 2 n = 2

thusthus 2 22 2 = 4 combinations= 4 combinations

Page 17: Biología, meiosis

Metaphase IMetaphase I

metaphase plate

OR

metaphase plate

Page 18: Biología, meiosis

Question:Question:

• In terms of In terms of Independent AssortmentIndependent Assortment - -how many different combinations of how many different combinations of sperm could a sperm could a humanhuman malemale produce? produce?

Page 19: Biología, meiosis

AnswerAnswer

• Formula: 2Formula: 2nn

• Human chromosomes:Human chromosomes: 2n = 462n = 46

n = 23n = 23

• 222323 = ~8 million combinations = ~8 million combinations

Page 20: Biología, meiosis

Anaphase IAnaphase I

• Homologous chromosomes Homologous chromosomes separate and move towards the poles.

• Sister chromatids Sister chromatids remain attached at their centromerescentromeres.

Page 21: Biología, meiosis

Anaphase IAnaphase I

Page 22: Biología, meiosis

Telophase ITelophase I

• Each pole now has haploidhaploid set of chromosomeschromosomes.

• CytokinesisCytokinesis occurs and two haploid daughter cells are formed.

Page 23: Biología, meiosis

Telophase ITelophase I

Page 24: Biología, meiosis

Meiosis IIMeiosis II

• No interphase II No interphase II

(or very short - no more DNA replicationDNA replication)

• Remember:Remember: Meiosis II Meiosis II is similar to mitosismitosis

Page 25: Biología, meiosis

Prophase IIProphase II

• same as prophaseprophase in mitosismitosis

Page 26: Biología, meiosis

Metaphase IIMetaphase II

• same as metaphasemetaphase in mitosismitosis

metaphase platemetaphase plate

Page 27: Biología, meiosis

Anaphase IIAnaphase II

• same as anaphaseanaphase in mitosismitosis

• sister chromatids separatesister chromatids separate

Page 28: Biología, meiosis

Telophase IITelophase II

• Same as telophasetelophase in mitosismitosis.

• Nuclei form.

• CytokinesisCytokinesis occurs.

• Remember:Remember: four haploid daughter cells four haploid daughter cells produced.produced.

gametes = sperm or egggametes = sperm or egg

Page 29: Biología, meiosis

Telophase IITelophase II

Page 30: Biología, meiosis

MeiosisMeiosis

2n=4

sex cell

diploid (2n)

n=2

n=2

meiosis I

n=2

n=2

n=2

n=2

sperm

haploid (n)

meiosis II

Page 31: Biología, meiosis

VariationVariation

• Important to population as the raw Important to population as the raw material for material for natural selectionnatural selection..

• Question:Question:

What are the three sexual sources ofWhat are the three sexual sources of

genetic variation? genetic variation?

Page 32: Biología, meiosis

Answer:Answer:

1. crossing over (prophase I)1. crossing over (prophase I)

2. independent assortment (metaphase I)2. independent assortment (metaphase I)

3. random fertilization3. random fertilization

Remember: variation is good!

Page 33: Biología, meiosis

Question:Question:

• A cell containing 20 chromosomes20 chromosomes (diploid)(diploid) at the beginning of meiosis would, at its completion, produce cells containing how many chromosomeschromosomes?

Page 34: Biología, meiosis

Answer:Answer:

• 10 chromosomes (haploid)10 chromosomes (haploid)

Page 35: Biología, meiosis

KaryotypeKaryotype• A method of organizing the A method of organizing the chromosomes chromosomes of a of a

cell in relation to number, size, and type.cell in relation to number, size, and type.

Page 36: Biología, meiosis

FertilizationFertilization

• The fusion of a spermsperm and eggegg to form a zygotezygote.• A zygote is a fertilized egg

n=23egg

sperm n=23

2n=46zygote

Page 37: Biología, meiosis

Question:Question:

• A cell containing 40 chromatids40 chromatids at the beginning of meiosis would, at its completion, produce cells containing how many chromosomeschromosomes?

Page 38: Biología, meiosis

Answer:Answer:

• 10 chromosomes10 chromosomes


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