the reason it change for mutation. it lead to provide in the parent organism. therefore, B is correct.
In sex cells, or gametes, genetic changes occur primarily through two processes: meiosis and genetic recombination. During meiosis, homologous chromosomes undergo crossing over, leading to the exchange of genetic material between them, which creates genetic diversity. Additionally, mutations can occur in the DNA of sex cells, which may be passed on to offspring. These changes contribute to the genetic variation essential for evolution and adaptation.
Yes, somatic mutations can occur in sex chromosomes. These mutations can affect the genes located on the X or Y chromosome, leading to genetic changes in somatic cells, which are not passed on to offspring. Somatic mutations on sex chromosomes can impact an individual's health and development.
Can be the basis for evolutionary change. When changes occur in the genes of sex cells, these changes can be passed on to offspring and may result in beneficial adaptations over generations, leading to evolutionary change.
Sex linked genes occur only on the X or the Y sex chromosomes.
it helps the genes more and helps with more chromosome
In sex cells, or gametes, genetic changes occur primarily through two processes: meiosis and genetic recombination. During meiosis, homologous chromosomes undergo crossing over, leading to the exchange of genetic material between them, which creates genetic diversity. Additionally, mutations can occur in the DNA of sex cells, which may be passed on to offspring. These changes contribute to the genetic variation essential for evolution and adaptation.
Yes, somatic mutations can occur in sex chromosomes. These mutations can affect the genes located on the X or Y chromosome, leading to genetic changes in somatic cells, which are not passed on to offspring. Somatic mutations on sex chromosomes can impact an individual's health and development.
Can be the basis for evolutionary change. When changes occur in the genes of sex cells, these changes can be passed on to offspring and may result in beneficial adaptations over generations, leading to evolutionary change.
Achrondoplasia is in all of the cells that have genes in them, not just the sex cells or somatic cells.
Sex linked genes occur only on the X or the Y sex chromosomes.
ok well this is a very easy question! the sex cells of a female produce a baby and genes for the baby!! smart!!
If meiosis did not occur to produce sex cells, there would be no genetic diversity in offspring. Sex cells are the result of meiosis, which shuffles genetic material, leading to unique combinations of genes in offspring. Without meiosis, there would be no variation in the genetic makeup of individuals, potentially leading to decreased adaptability and increased vulnerability to environmental challenges.
it helps the genes more and helps with more chromosome
The sperm and egg sex cells (or gametes) have both recessive and dominant genes in them.
If mutations in occur in autosomes, they can not be passed on. If you get cancer from smoking, you can't pass that cancer on to your children. Only changes in sex cells can be passed on and these can cause enough of a change that would be evolutionary. Many people have changes in sex cells but most don't make any change as far as evolution. Perhaps a second thumb might happen but that probably will not change the human race.
mutations of genes in an organism's sex cells & new combinations of existing genes during sexual reproduction.
Mitosis does not occur in sex cells, such as sperm and egg cells, as they undergo a different type of cell division called meiosis.