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Question
intro. to meiosis webquest
name: payton dorsey
task 1: introduction to meiosis
click below to watch the “meiosis” video by the amoeba sisters. as you watch, answer the following questions.
click here
- what does the process of meiosis contribute to?
- what type of cells does meiosis produce?
- how many chromosomes does a human sperm cell or egg cell contain?
- why is meiosis a “reduction division”?
- which phase must take place before meiosis starts?
- how many times is “pmat” carried out in meiosis?
- describe what happens during prophase.
- what happens during crossing over?
- where are the chromosomes during metaphase i?
- what happens during anaphase i?
- how many cells exist after meiosis i?
- what is pulled away by the spindle fibers during anaphase ii?
- what happens during telophase ii?
Brief Explanations
- Meiosis contributes to genetic diversity through processes like crossing - over and independent assortment. It is also essential for sexual reproduction as it produces gametes.
- Meiosis produces gametes, which are sex cells. In humans, these are sperm cells in males and egg cells in females.
- A human sperm cell or egg cell contains 23 chromosomes. These are haploid cells.
- Meiosis is a "reduction division" because the parent cell is diploid (has two sets of chromosomes) and the resulting gametes are haploid (have one set of chromosomes), reducing the chromosome number by half.
- Interphase must take place before meiosis starts. During interphase, the cell grows, replicates its DNA, and prepares for cell division.
- "PMAT" (Prophase, Metaphase, Anaphase, Telophase) is carried out twice in meiosis, once in Meiosis I and once in Meiosis II.
- During prophase I of meiosis, homologous chromosomes pair up (synapsis) and crossing - over occurs, where segments of non - sister chromatids are exchanged. In prophase II, the nuclear envelope breaks down and spindle fibers form.
- During crossing over, segments of non - sister chromatids of homologous chromosomes exchange genetic material, increasing genetic diversity.
- During metaphase I, the homologous chromosome pairs line up along the equator (metaphase plate) of the cell.
- During anaphase I, the homologous chromosomes are pulled apart to opposite poles of the cell by the spindle fibers.
- After Meiosis I, two cells exist. These cells are haploid but each chromosome still consists of two sister chromatids.
- During anaphase II, the sister chromatids are pulled apart by the spindle fibers and move to opposite poles of the cell.
- During telophase II, the nuclear envelope reforms around the separated chromosomes, the spindle fibers break down, and cytokinesis occurs, resulting in four haploid daughter cells.
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- Genetic diversity and sexual reproduction.
- Gametes (sex cells).
- 23 chromosomes.
- Reduces chromosome number from diploid to haploid.
- Interphase.
- Twice.
- In prophase I: Homologous chromosomes pair up and crossing - over occurs. In prophase II: Nuclear envelope breaks down and spindle fibers form.
- Segments of non - sister chromatids exchange genetic material.
- Homologous chromosome pairs line up along the metaphase plate.
- Homologous chromosomes are pulled to opposite poles.
- Two cells.
- Sister chromatids.
- Nuclear envelope reforms, spindle fibers break down, and cytokinesis occurs, resulting in four haploid daughter cells.