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The somatic mutation theory of ageing states that accumulation of mutations in somatic cells is the primary cause of aging. A comparison of somatic mutation rate across several mammal species found that the total number of accumulated mutations at the end of lifespan was roughly equal across a broad range of lifespans. [16]
The mutation accumulation theory of aging was first proposed by Peter Medawar in 1952 as an evolutionary explanation for biological aging and the associated decline in fitness that accompanies it. [1] Medawar used the term 'senescence' to refer to this process.
A related theory is that mutation, as distinct from DNA damage, is the primary cause of aging. A comparison of somatic mutation rate across several mammal species found that the total number of accumulated mutations at the end of lifespan was roughly equal across a broad range of lifespans. [49]
Somatic mutations accumulate within an organism's cells as it ages and with each round of cell division; the role of somatic mutations in the development of cancer is well established, and the accumulation of somatic mutations is implicated in the biology of aging. [4]
Genetics of aging is generally concerned with life extension associated with genetic alterations, rather than with accelerated aging diseases leading to reduction in lifespan. The first mutation found to increase longevity in an animal was the age-1 gene in Caenorhabditis elegans .
Early research on somatic mutations in aging showed that deletions, inversion, and translocations of genetic material are common in aging mice and aging genomes tend to contain visible chromosomal changes, mitotic recombination, whole gene deletions, intragenic deletions, and point mutations.
The disposable soma theory of aging posits that there is a trade-off in resource allocation between somatic maintenance and reproductive investment.Too low an investment in self-repair would be evolutionarily unsound, as the organism would likely die before reproductive age.
Mitochondrial Free Radical Theory of Aging; Mitochondrial Theory of Aging; Mutation accumulation theory of aging; Neuroendocrine theory of aging; Order to disorder theory of aging; Rate of living theory; Redundant DNA theory; Reliability theory of aging and longevity; Reproductive-cell cycle theory; Somatic mutation theory of aging; Telomeric ...