What happens during Telophase 2 of meiosis?

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During Telophase 2 of meiosis, the nuclear membrane reforms around each set of chromosomes, signaling the near completion of meiosis. As the process continues, the cytoplasm divides in a process known as cytokinesis, resulting in four genetically distinct daughter cells, each with half the original number of chromosomes. This stage is significant because it marks the conclusion of the meiotic division, yielding haploid cells that can develop into gametes in sexual reproduction.

The importance of this phase lies in its successful preparation of the cells for their role in creating genetic diversity through sexual reproduction. Each of the four daughter cells produced during Telophase 2 contains a unique set of alleles due to the processes of crossing over and independent assortment that occurred earlier in meiosis.

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