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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >A mutation in the age-1 gene in Caenorhabditis elegans lengthens life and reduces hermaphrodite fertility.
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A mutation in the age-1 gene in Caenorhabditis elegans lengthens life and reduces hermaphrodite fertility.

机译:秀丽隐杆线虫的age-1基因突变延长寿命并降低雌雄同体的生育能力。

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摘要

age-1(hx546) is a recessive mutant allele in Caenorhabditis elegans that results in an increase in mean life span averaging 40% and in maximal life span averaging 60% at 20 degrees; at 25 degrees age-1(hx546) averages a 65% increase in mean life span (25.3 days vs. 15.0 days) and a 110% increase in maximum life span (46.2 days vs. 22.0 days for wild-type hermaphrodites). Mutant males also show extended life spans. age-1(hx546) is associated with a 75% decrease in hermaphrodite self-fertility as compared to the age-1+ allele at 20 degrees. Using two novel strategies for following the segregation of age-1, we present evidence that longer life results from a mutation in a single gene that increases the probability of survival at all chronological ages. The long-life and reduced-fertility phenotypes cosegregate and are tightly linked to fer-15, a locus on linkage group II. age-1(hx546) does not affect the timing of larval molts, the length of embryogenesis, food uptake, movement, or behavior in any way tested. Although age-1(hx546) lowers hermaphrodite self-fertility, it does not markedly affect the length of the reproductive period with all the increase in life expectancy due to an increase in the length of postreproductive life. In so far as we are aware, this mutant in age-1 is the only instance of a well-characterized genetic locus in which the mutant form results in lengthened fife. It is likely that the action of age-1 in lengthening life results not from eliminating a programmed aging function but rather from reduced hermaphrodite self-fertility or from some other unknown metabolic or physiologic alteration.
机译:age-1(hx546)是秀丽隐杆线虫中的隐性突变等位基因,在20度下平均寿命平均延长40%,最大寿命平均延长60%;在25度1岁(hx546)时,平均寿命(长寿命的两性人平均寿命)增加了65%(25.3天比15.0天),最大寿命增加了110%(46.2天比22.0天)。突变男性也可以延长寿命。与20岁时的1岁+等位基因相比,1岁(hx546)与雌雄同体的自育能力降低了75%。使用两种新颖的策略追踪1岁年龄的隔离,我们提供证据表明,更长的寿命是由单个基因的突变导致的,该突变增加了在所有年龄段的存活率。长寿和低生育率表型共同分离,并与fer-15紧密相连,fer-15是连锁II上的一个基因座。 age-1(hx546)不会以任何经过测试的方式影响幼虫蜕皮的时间,胚胎发生的时间,食物摄取,运动或行为。尽管1岁(hx546)降低了雌雄同体的自育能力,但由于生殖后寿命的延长,预期寿命的所有增加都不会明显影响生殖期的长度。据我们所知,这个年龄在1岁的突变体是特征明确的遗传基因座的唯一实例,在该基因座中,突变体形式导致横笛的加长。年龄1延长寿命的作用可能不是由于消除了已编程的衰老功能,而是由于雌雄同体的自育能力降低或某些其他未知的代谢或生理变化。

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