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8 Cards in this Set

  • Front
  • Back
prophase 1
Chromosomes form and each chromosome pairs with its homologous chromosome.
Chromosomes form and each chromosome pairs with its homologous chromosome.
metaphase 1
Tetrads line up in the middle, equatorial plane, of the cell
Tetrads line up in the middle, equatorial plane, of the cell
anaphase 1
Homologous chromosomes separate and move away from each other to opposite poles of the cell
Each is genetically different from the original cell due to crossing-over
Homologous chromosomes separate and move away from each other to opposite poles of the cell
Each is genetically different from the original cell due to crossing-over
telephase and cytokinesis 1
Nuclear envelope forms
Cytokinesis occurs resulting in two daughter cells
Daughter cells are NOT identical due to crossing-over in prophase I.
Nuclear envelope forms
Cytokinesis occurs resulting in two daughter cells
Daughter cells are NOT identical due to crossing-over in prophase I.
prophase 2
Chromosomes form
Nuclear envelope disappears
Chromosomes form
Nuclear envelope disappears
metaphase 2
Chromosomes line up in the middle of the cell at the equatorial plate
Chromosomes line up in the middle of the cell at the equatorial plate
anaphase 2
Sister chromatids separate and move away from each other to opposite poles of the cell
Sister chromatids separate and move away from each other to opposite poles of the cell
telephase and cytokinesis 2
Nuclear envelope forms
Cytokinesis occurs resulting in four genetically different gametes
Nuclear envelope forms
Cytokinesis occurs resulting in four genetically different gametes