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可转座DNA元件与生活史特征。I. 体细胞中P DNA元件的转座会缩短黑腹果蝇的寿命。

Transposable DNA elements and life history traits. I. Transposition of P DNA elements in somatic cells reduces the lifespan of Drosophila melanogaster.

作者信息

Woodruff R C

机构信息

Department of Biological Sciences, Bowling Green State University, OH 43403.

出版信息

Genetica. 1992;86(1-3):143-54. doi: 10.1007/BF00133717.

Abstract

As an initial study of the influence of transposable DNA elements on life history traits, and as a model system for estimating the impact of somatic genetic damage on longevity, the effect of P DNA element movement in somatic cells on adult lifespan was measured in Drosophila melanogaster males. Lifespan was significantly reduced in males that contained the somatically active Pry+ delta 2-3 element and 17, 4, 3, but not just a single P element. Furthermore, there appears to be a direct correlation between the number of transposing P elements and the amount of lifespan reduction. This reduction in lifespan observed in males with somatically active P elements is probably due to genetic damage in embryos, larvae and pupae from P-element excisions and insertions, leading to changes in gene structure and regulation, chromosome breakage, and subsequent cell death in adults. This hypothesis is supported in this study by a significant increase in recessive sex-linked lethal mutations in the same males that had reduced lifespans and by the previous observation of chromosome breakage in somatic cells of similar males. The evolutionary implications of these results are discussed, including the possible influence of somatic DNA transpositions on fitness and other life history traits.

摘要

作为对转座DNA元件对生活史特征影响的初步研究,以及作为评估体细胞遗传损伤对寿命影响的模型系统,我们在黑腹果蝇雄性中测量了体细胞中P DNA元件移动对成虫寿命的影响。含有体细胞活性Pry+ delta 2-3元件以及17、4、3个P元件(而非仅单个P元件)的雄性果蝇寿命显著缩短。此外,转座P元件的数量与寿命缩短的程度之间似乎存在直接关联。在具有体细胞活性P元件的雄性果蝇中观察到的寿命缩短可能是由于胚胎、幼虫和蛹期P元件的切除和插入导致的遗传损伤,进而导致基因结构和调控的变化、染色体断裂以及成虫随后的细胞死亡。本研究通过寿命缩短的相同雄性果蝇中隐性伴性致死突变的显著增加,以及之前在类似雄性果蝇体细胞中观察到的染色体断裂,支持了这一假设。我们讨论了这些结果的进化意义,包括体细胞DNA转座对适合度和其他生活史特征的可能影响。

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