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Mutations Video Lecture - NEET

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FAQs on Mutations Video Lecture - NEET

1. What are mutations?
Mutations are permanent changes that occur in the DNA sequence of an organism's genome. They can result from errors during DNA replication, exposure to certain chemicals or radiation, or even spontaneous changes. Mutations can occur in both somatic cells (body cells) and germ cells (reproductive cells), and they can have various effects on an organism's traits and health.
2. How do mutations happen?
Mutations can occur through several mechanisms. One common mechanism is called substitution, where one nucleotide in the DNA sequence is replaced by another. Insertions and deletions are also common, where nucleotides are added or removed from the sequence. Mutations can also happen due to chromosomal rearrangements, such as inversions or translocations. These changes can be caused by errors during DNA replication, exposure to mutagenic agents, or even by natural processes.
3. Are all mutations harmful?
No, not all mutations are harmful. While some mutations can have negative effects on an organism, such as causing genetic diseases or impairing normal functioning, others can be neutral or even beneficial. Beneficial mutations can contribute to the evolution of a species by providing advantages in certain environments or improving the organism's ability to adapt. Neutral mutations, on the other hand, do not have a noticeable impact on an organism's traits or health.
4. Can mutations be inherited?
Yes, mutations can be inherited. When a mutation occurs in the germ cells (sperm or eggs) of an organism, it can be passed on to the next generation. These mutations are called germline mutations and can be responsible for inherited genetic disorders or variations. On the other hand, mutations that occur in somatic cells during an organism's lifetime are not passed on to offspring.
5. How do mutations contribute to genetic diversity?
Mutations are one of the main drivers of genetic diversity in populations. By introducing new genetic variations, mutations provide the raw material for natural selection to act upon. Beneficial mutations can increase an organism's fitness and become more prevalent in a population over time. Additionally, mutations can lead to the creation of new genes or gene variants, contributing to the overall genetic diversity within a species.
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