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黑腹果蝇新突变的年龄特异性效应II. 繁殖力和雄性交配能力

Age-specific effects of novel mutations in Drosophila melanogaster II. Fecundity and male mating ability.

作者信息

Mack P D, Lester V K, Promislow D E

机构信息

Department of Genetics, University of Georgia, Athens 30602-7223, USA.

出版信息

Genetica. 2000;110(1):31-41. doi: 10.1023/a:1017538505627.

Abstract

Evolutionary theories of senescence assume that mutations with age-specific effects exist, yet until now, there has been little experimental evidence to support this assumption. In this study, we allowed mutations to accumulate in an outbred, wild population of Drosophila melanogaster to test for age-specific differences in both male mating ability and fecundity. We assayed for age-specific effects of mutations after 10, 20, and 30 generations of mutation accumulation. For mating ability, we found the strongest effects of mutations in the first half of the life span after 20 generations, and at nearly all ages by generation 30. These results are qualitatively consistent with results from a companion study in which age-specific mortality was assayed on the same lines of D. melanogaster. By contrast, effects of fecundity were confined to late ages after 20 generations of mutation accumulation, but by generation 30, as with male mating ability, effects of novel mutations were distributed across all age classes. We discuss several possible explanations for the differences that we observe between generations within traits, and among traits, and the relevance for these patterns to models of aging as well as models of mate choice and sexual selection.

摘要

衰老的进化理论假定存在具有年龄特异性效应的突变,但直到现在,几乎没有实验证据支持这一假设。在本研究中,我们让突变在一个远交的野生黑腹果蝇种群中积累,以测试雄性交配能力和繁殖力方面的年龄特异性差异。在经过10代、20代和30代的突变积累后,我们测定了突变的年龄特异性效应。对于交配能力,我们发现在20代后寿命的前半段突变效应最强,到30代时几乎在所有年龄都有显著效应。这些结果在定性上与一项配套研究的结果一致,在该研究中对同一品系的黑腹果蝇测定了年龄特异性死亡率。相比之下,在经过20代突变积累后,繁殖力的效应仅限于晚年,但到30代时,与雄性交配能力一样,新突变的效应分布在所有年龄组。我们讨论了几个可能的解释,来说明我们在性状内各代之间以及性状之间观察到的差异,以及这些模式与衰老模型以及配偶选择和性选择模型的相关性。

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