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首页> 外文期刊>Genetica >Pleiotropic Effects of methoprene-tolerant(Met), a Gene Involved in Juvenile Hormone Metabolism, on Life History Traits in Drosophila melanogaster
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Pleiotropic Effects of methoprene-tolerant(Met), a Gene Involved in Juvenile Hormone Metabolism, on Life History Traits in Drosophila melanogaster

机译:甲氧戊二烯(Met),一种涉及青少年激素代谢的基因,对果蝇的生活史特征具有多效性。

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Life history theory assumes that there are alleles with pleiotropic effects on fitness components. Although quantitative genetic data are often consistent with pleiotropy, there are few explicit examples of pleiotropic loci. The Drosophila melanogastergene Methoprene-tolerant(Met) may be such a locus. The Met gene product, a putative juvenile hormone receptor, facilitates the action of juvenile hormone (JH) and JH analogs; JH affects many life history traits in arthropods. Here we use quantitative complementation to investigate effects of Met mutant and wildtype alleles on female developmental time, onset of reproduction, and fecundity. Whereas the alleles did not differ in their effects on developmental time, we detected allelic variation for the onset of reproduction and for age-specific fecundity. Alleles influenced phenotypic covariances among traits (developmental time and onset of reproduction; onset of reproduction and both early and late fecundity; early and late fecundity), suggesting that alleles of Metvary in their pleiotropic effects upon life history. Furthermore, the genetic covariance between developmental time and early fecundity attributed to alleles of Met was negative, indicating consistent pleiotropic effects among alleles on these traits. The allelic effects of Metsupport genetic models where pleiotropy at genes associated with hormone regulation can contribute to the evolution of life history traits.
机译:生命史理论假设存在对健身成分具有多效性的等位基因。尽管定量遗传数据通常与多效性相符,但很少有多效性基因座的明确例子。果蝇的果蝇耐甲氧丁烯(Met)可能就是这样的基因座。 Met基因产物是一种假定的少年激素受体,可促进少年激素(JH)和JH类似物的作用。 JH影响节肢动物的许多生活史特征。在这里,我们使用定量互补来研究Met突变体和野生型等位基因对女性发育时间,生殖开始和繁殖力的影响。尽管等位基因对发育时间的影响没有差异,但我们检测到等位基因变异的繁殖开始和特定年龄的繁殖力。等位基因影响性状之间的表型协方差(发育时间和生殖开始;生殖开始以及早期和晚期生殖力;早期和晚期生殖力),表明Metvary等位基因在多效性对生活史的影响。此外,归因于Met等位基因的发育时间与早期生殖力之间的遗传协方差为负,表明等位基因对这些性状具有一致的多效性效应。 Metsupport基因模型的等位基因效应,与激素调节相关的基因的多效性可以促进生活史特征的演变。

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