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Mitosis
• cell division for growth, healing & asexual repro.   1
  diploid set  2 identical diploid sets somatic cells
• Interphase: replication = 90% of cycle so…chromatin
• then Mitosis: P M A T
  1. Prophase: chromatin condenses  visible chromosomes
                homologous pairs vs dupl. chromosomes
  membrane breaks & centrioles move to poles




             Early prophase      Late prophase
more Mitosis
2. Metaphase:                                           replicated
chromosomes line up at equator end-to-end        spindle fibers
attach to chromatids = decision made notice # of fibers one per
chromatid what is going to get separated from what?so what is a
spindle fiber? Elastic connective tissue            …and what if
it gets old and loses its elasticity?




             Transition to
             metaphase                 Metaphase
and more still
3. Anaphase:
     centromere breaks down = chromatids not held together
     fibers retract to separate chromatids

   what is being separated here?
   what is staying together (NOT separated)?
…and remember what happens when those fibers
   get old and lose their elasticity?
…last one
4. Telophase: centrioles back to original position
               nuclear membrane forms x 2
     THEN…..

    Cytokinesis: cleavage furrow
                   …..and we start over again




               Telophase         Cytokinesis
Diagrammatic representations for the major stages of prophase I of
      meiosis I (above) and photographs of such stages (below)




Interphase   L   Zygotene      P   Diplotene          Diakinesis
Diagrammatic representations for the major stages of meiosis I
       (above) and photographs of such stages (below)




Metaphase I       Anaphase I   Telophase I   INT Prophase II
Diagrammatic representations for the major stages of
meiosis II (above) and photographs of such stages (below




     Metaphase II   Anaphase II   Telophase II
    Tetrad stage
Diagrammatic illustration of chromosome types, based on
     centromere position as defined by Levan et al., 1964
Karyotype preparation based on chromosome length and centromere position




Metacentric Submetacentric         Acrocentric       Telocentric
• What is crossing over? How does it work?




• The result? Swapped alleles between homologous pairs
               Would swapping alleles between chromatids in
               a dupl. chromosome change anything?
        So, vs Mitosis:                 1.
        Prophase is longer   2. Side-
        by-side              3.
        Crossing over
• Metaphase 1:
     Chromosomes already lined up so all that’s left to do is...
     Spindle fibers attach
         notice # of fibers (vs Mitosis) one / dupl. chromosome
  what is going to get separated from what?

   The decision is made = “Independent Assortment”
  decision made independently at each chromosome

                         Metaphase 1   of        So, vs mitosis:
                         meiosis                 Metaphase is shorter


                         vs      XX XX XX XX


   Metaphase - mitosis
• Anaphase & telophase similar to Mitosis
• Second round of cell division separates chromatids one from
  another – just like Mitosis


                     1st round      2nd round

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Mitosis

  • 1. Mitosis • cell division for growth, healing & asexual repro. 1 diploid set  2 identical diploid sets somatic cells • Interphase: replication = 90% of cycle so…chromatin • then Mitosis: P M A T 1. Prophase: chromatin condenses  visible chromosomes homologous pairs vs dupl. chromosomes membrane breaks & centrioles move to poles Early prophase Late prophase
  • 2. more Mitosis 2. Metaphase: replicated chromosomes line up at equator end-to-end spindle fibers attach to chromatids = decision made notice # of fibers one per chromatid what is going to get separated from what?so what is a spindle fiber? Elastic connective tissue …and what if it gets old and loses its elasticity? Transition to metaphase Metaphase
  • 3. and more still 3. Anaphase: centromere breaks down = chromatids not held together fibers retract to separate chromatids what is being separated here? what is staying together (NOT separated)? …and remember what happens when those fibers get old and lose their elasticity?
  • 4. …last one 4. Telophase: centrioles back to original position nuclear membrane forms x 2 THEN….. Cytokinesis: cleavage furrow …..and we start over again Telophase Cytokinesis
  • 5. Diagrammatic representations for the major stages of prophase I of meiosis I (above) and photographs of such stages (below) Interphase L Zygotene P Diplotene Diakinesis
  • 6. Diagrammatic representations for the major stages of meiosis I (above) and photographs of such stages (below) Metaphase I Anaphase I Telophase I INT Prophase II
  • 7. Diagrammatic representations for the major stages of meiosis II (above) and photographs of such stages (below Metaphase II Anaphase II Telophase II Tetrad stage
  • 8. Diagrammatic illustration of chromosome types, based on centromere position as defined by Levan et al., 1964 Karyotype preparation based on chromosome length and centromere position Metacentric Submetacentric Acrocentric Telocentric
  • 9. • What is crossing over? How does it work? • The result? Swapped alleles between homologous pairs Would swapping alleles between chromatids in a dupl. chromosome change anything? So, vs Mitosis: 1. Prophase is longer 2. Side- by-side 3. Crossing over
  • 10. • Metaphase 1: Chromosomes already lined up so all that’s left to do is... Spindle fibers attach notice # of fibers (vs Mitosis) one / dupl. chromosome what is going to get separated from what? The decision is made = “Independent Assortment” decision made independently at each chromosome Metaphase 1 of So, vs mitosis: meiosis Metaphase is shorter vs XX XX XX XX Metaphase - mitosis
  • 11. • Anaphase & telophase similar to Mitosis • Second round of cell division separates chromatids one from another – just like Mitosis 1st round 2nd round