Cell differentiation primarily occurs after mitosis, during the development of multicellular organisms. Following mitotic divisions, cells can specialize into various types through gene expression changes, allowing them to perform specific functions. While meiosis is crucial for producing gametes and contributes to genetic diversity, it does not directly involve the differentiation of cells into specialized types.
mitosis occures everywhere in the body, most people get mitosis mixed up with meiosis but meiosis is the process of mitosis doubled, meiosis happens mainly in the sex cells suck as sperm, and in the development process of a embryo, zygote, and fetus, etc.
No, mitosis does not occur in the phloem. Mitosis is the process of cell division, and in the phloem, specialized cells called sieve elements are responsible for transporting sugars. These sieve elements are formed via a process called differentiation, not mitosis.
Yes, mitosis does occur in the ovaries and testes. In the ovaries, mitosis is involved in the production of ova (eggs) through the development of ovarian follicles. In the testes, mitosis plays a role in the production of sperm through the process of spermatogenesis.
Meiosis and mitosis are different types of cellular reproductions. Meiosis is sexual but mitosis is asexual reproduction. Meiosis and mitosis continue to occur when the immune system produces white blood cells.
These changes usually occur in meiosis not mitosis. It causes a mixing of the alleles.
Yes, crossing over occurs during the process of genetic recombination in meiosis, but not in mitosis.
mitosis occures everywhere in the body, most people get mitosis mixed up with meiosis but meiosis is the process of mitosis doubled, meiosis happens mainly in the sex cells suck as sperm, and in the development process of a embryo, zygote, and fetus, etc.
Its meiosis. Mitosis is cell division.
No, mitosis does not occur in the phloem. Mitosis is the process of cell division, and in the phloem, specialized cells called sieve elements are responsible for transporting sugars. These sieve elements are formed via a process called differentiation, not mitosis.
Crossing over occurs during the prophase I stage of meiosis, not during mitosis.
Yes, mitosis does occur in the ovaries and testes. In the ovaries, mitosis is involved in the production of ova (eggs) through the development of ovarian follicles. In the testes, mitosis plays a role in the production of sperm through the process of spermatogenesis.
mitosis occurs more frequently then meiosis
No, crossovers do not occur during mitosis. Crossovers, also known as genetic recombination, happen during meiosis, specifically during prophase I. Mitosis is the cell division process that results in two identical daughter cells, while meiosis is the cell division process that results in four genetically unique daughter cells.
Telophase occur in both mitosis and meiosis. During telophase nuclear membrane and nuclei reforms and in meiosis it further goes for meiosis 2 which is same as mitosis
place of occurence ;mitosis= somatic cells | meiosis=gonadic cells crossing over;mitosis=does not occur | meiosis=occur during prophase of meiosis 1 to form tetrads number of daughter cell;mitosis=two | meiosis= four genetic variation;mitosis=no variation produced| meiosis=produces genetic variation genetic composition in daughter cell; mitosis=identical to the parent cell | meiosis= non identical to the parent cell and each other
Telophase occur in both mitosis and meiosis. During telophase nuclear membrane and nuclei reforms and in meiosis it further goes for meiosis 2 which is same as mitosis
Meiosis and mitosis are different types of cellular reproductions. Meiosis is sexual but mitosis is asexual reproduction. Meiosis and mitosis continue to occur when the immune system produces white blood cells.