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Cytoplasm separates in the final phase of the cell cycle, cytokineses.
The final product of meiosis is four genetically non-identical haploid daughter cells.
Karyokinesis is the phase during mitosis during which the nucleus of a diploid cell splits to form two separate nuclei in whats known as a "clevage" from the anaphase to the telophase during mitosis. And is only obtained due to the pull of the protein fibres or spindles by the centrioles.
Meiosis. Takes place during gametogenesis, the formation of sperm or ova. The final sperm or ova formed will each contain 23 chromosomes, haploid number.
The final stage is cytokinesis when the cytoplasm is split.
Telophase. Telophase includes cytokinesis, when the cytoplasm splits.
Cytokineses is the term used for division of cytoplasm. It is achieved by cell plate formation or by furrowing. In most of the plant cells cell plate formation is common. In animal cells and in bacteria it is by furrowing.
cytoplasm
Sperm are all 1N (half the complement of chromosomes of the original male). Prophase 1 in meiosis the cell is 4N Prophase 2 in meiosis the cells are 2N Final division creates 1N cells.
Technically, the term "mitosis" refers only to the division of the DNA, the genetic material; the division of the cytoplasm is called "cytokinesis" and usually occurs during any from late anaphase through telophase.
Haploid
Cytoplasm separates in the final phase of the cell cycle, cytokineses.
The final product of meiosis is four genetically non-identical haploid daughter cells.
Karyokinesis is the phase during mitosis during which the nucleus of a diploid cell splits to form two separate nuclei in whats known as a "clevage" from the anaphase to the telophase during mitosis. And is only obtained due to the pull of the protein fibres or spindles by the centrioles.
Meiosis. Takes place during gametogenesis, the formation of sperm or ova. The final sperm or ova formed will each contain 23 chromosomes, haploid number.
The final stage is cytokinesis when the cytoplasm is split.
cytoplasm