Haploid
Mitotic cell division produces two genetically identical daughter cells that are genetically identical to their parent cell. The daughter cells that result from mitotic cell division are 2n, having two sets of chromosomes. Meiotic cell division produces four genetically non-identical cells that are 1n, having only one set of chromosomes. The parent cell for meiotic cell division is 2n.
The daughter cells that result from mitotic cell division are genetically identical. The daughter cells that result from meiotic cell division are genetically unique.
Spermatogenesis is the formation of spermatozoa from spermatogonia in the testes. This process involves mitotic division, meiotic division, and differentiation of male germ cells to produce mature sperm cells.
Yes, in that the sister chromatids of the homologous chromosomes separate into four new daughter cells. However, the result is four genetically non-identical daughter cells with only one set of 23 chromosomes.
Amitosis is nuclear division occurring without symmetry, and as such is a rather random type of division with without proper structure. Mitosis and Meiosis do differ in the number of daughter cells, mitosis with 2 and meiosis with 4. This, however, is also not a fair comparison, as mitosis and meiosis result in different types of cells.
Somatic cells undergo mitotic division but not meiotic division. Meiotic division is only seen in germ cells to produce gametes.
Mitotic or meiotic, depending on whether ordinary cell division or gamete production is involved.
Human mitotic cells undergo cell division to produce two identical daughter cells with the same number of chromosomes as the parent cell. In contrast, human meiotic cells undergo two rounds of cell division to produce four haploid daughter cells with half the number of chromosomes as the parent cell. Meiotic cells are involved in the formation of gametes (sperm and egg cells) for sexual reproduction, while mitotic cells are involved in growth, repair, and asexual reproduction.
Yes, mutations are passed on to new cells during replication. If a mutation occurs in a cell's DNA, it will be present in all daughter cells that are produced through replication. This can lead to genetic variation and evolution over time.
do you mean milotic? and there is no suck thing as a meiotic.
Mitotic cell division produces two genetically identical daughter cells that are genetically identical to their parent cell. The daughter cells that result from mitotic cell division are 2n, having two sets of chromosomes. Meiotic cell division produces four genetically non-identical cells that are 1n, having only one set of chromosomes. The parent cell for meiotic cell division is 2n.
Two identical daughter cells are produced at the end of a single mitotic division.
The daughter cells that result from mitotic cell division are genetically identical. The daughter cells that result from meiotic cell division are genetically unique.
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Spermatogenesis is the formation of spermatozoa from spermatogonia in the testes. This process involves mitotic division, meiotic division, and differentiation of male germ cells to produce mature sperm cells.
In mitotic division, chromosomes are arranged individually in the middle of the cell at metaphase, whereas in the first division of meiosis, homologous chromosomes are paired together in the middle. This pairing of homologous chromosomes is known as synapsis and is unique to meiosis.
Spermatogenesis is the form of cell division that creates sperm. It involves the process of sperm cell production through a series of mitotic and meiotic divisions in the testes.