A total of four daughter cells form
A total of four daughter cells form
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
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 1: Prophase 1, Metaphase1, Anaphase 1, Telophase 1. Meiosis 2: Prophase 1, Metaphase 2, Anaphase 2, Telophase 2. Makes 4 daughter cells that contain 4 chromosomes each.
A total of four daughter cells form. *apex*
Answer this q Two haploid cells are formed. Devon S uestion…
Interphase Prophase 1 Metaphase 1 Anaphase 1 Telophase 1 Cytokinesis 1 Prophase 2 Metaphase 2 Anaphase 2 Telophase 2 Cytokinesis 2
Telophase 1 occurs after the first division of meiosis and results in the separation of homologous chromosomes, with the formation of two haploid daughter cells. Telophase 2 occurs after the second division of meiosis and results in the separation of sister chromatids, producing four haploid daughter cells.
There is meiosis I and meiosis II. The stages for meiosis I are prophase I, metaphase I, anaphase I, telophase I, and cytokinesis. For meiosis II, the stages are the same, only those are II instead of I.
In cell division, the period after telophase 1 is called cytokinesis. It occurs at the end of either mitosis and meiosis,
The phase that happens only once in meiosis is prophase I, which is characterized by the pairing of homologous chromosomes and the exchange of genetic material through crossing over. This phase is unique to meiosis and does not occur in mitosis.
The order of the phases of meiosis is: prophase I, metaphase I, anaphase I, telophase I, cytokinesis, prophase II, metaphase II, anaphase II, telophase II, and cytokinesis. During meiosis I, homologous chromosomes separate, while during meiosis II, sister chromatids separate.