Meiosis takes place in sexual reproduction and genetic variations takes place in sexual reproduction. Genetic variations lead to evolution to new species.
Meiosis is when the male gene and the female gene combine chromosomes to make a child or offspring. This increases the diversity of genes in an individual, and allows that diversity to spread through the population, thus effecting evolution.
Meiosis I and meiosis II
Meiosis
Gametes are produced by a type of cell division called meiosis. Meiosis results in four daughter cells each with half the number of chromosomes of the parent cell.
Meiosis allows a cell to form into 4 cells (by meiosis 1 (which is literally mitosis) and meiosis 2 (mitosis without DNA replication)) in meiosis 1, the cells exchanges DNA information between homologous pairs, this allows genes to be transferred and creates 4 unique and distinct cells. segragation of alleles occur too.
Genetic variation after meiosis is significant because it leads to the creation of unique offspring with diverse traits. This variation is important for evolution and adaptation to changing environments.
Meiosis produces new varieties .
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Meiosis is when the male gene and the female gene combine chromosomes to make a child or offspring. This increases the diversity of genes in an individual, and allows that diversity to spread through the population, thus effecting evolution.
Meiosis occurs in the reproductive cells to form male and female gametes. For sexual reproduction meiosis is essential. Genetic advance is achieved by crossing over in chromosomes during meiosis, hence meiosis helps in evolution of races in plants.Meiosis occurs in the reproductive cells to form male and female gametes. For sexual reproduction meiosis is essential. Genetic advance is achieved by crossing over in chromosomes during meiosis, hence meiosis helps in evolution of races in plants.
Genetic recombination in meiosis is significant because it creates genetic diversity in offspring. During this process, chromosomes exchange genetic material, leading to new combinations of genes. This increases variation within a population, which can be beneficial for evolution and adaptation to changing environments.
The statement that is FALSE concerning gametes produced by meiosis is that they are genetically identical to the parent cell. Meiosis results in the formation of haploid gametes with genetic variation due to crossing over and independent assortment of chromosomes during the process.
This statement is false. Meiosis is a process in which a diploid cell divides to produce four haploid cells. It involves two rounds of cell division, resulting in genetic variation through crossing over and independent assortment.
A. The statement is true for mitosis and meiosis II. -sources mastering biology!
The step that explains the probability that a particular allele will be in a gamete is the Law of Independent Assortment during meiosis I. This law states that alleles of different genes segregate independently of one another during the formation of gametes, leading to various combinations of alleles in the resulting gametes.
Both mitosis and meiosis are processes of cell division. They involve the replication and distribution of genetic material. Mitosis results in two identical daughter cells, while meiosis results in four genetically diverse daughter cells.