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Social effects for locomotion vary between environments in Drosophila melanogaster females

机译:机置的社会效应在德罗斯科拉梅洛拉斯司机女性的环境之间变化

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摘要

Despite strong purifying or directional selection, variation is ubiquitous in populations. One mechanism for the maintenance of variation is indirect genetic effects (IGEs), as the fitness of a given genotype will depend somewhat on the genes of its social partners. IGEs describe the effect of genes in social partners on the expression of the phenotype of a focal individual. Here, we ask what effect IGEs, and variation in IGEs between abiotic environments, has on locomotion in Drosophila. This trait is known to be subject to intralocus sexually antagonistic selection. We estimate the coefficient of interaction, Ψ, using six inbred lines of Drosophila.We found that Ψ varied between abiotic environments, and that it may vary across among male genotypes in an abiotic environment specific manner. We also found evidence that social effects of males alter the value of a sexually dimorphic trait in females, highlighting an interesting avenue for future research into sexual antagonism. We conclude that IGEs are an important component of social and sexual interactions and that they vary between individuals and abiotic environments in complex ways, with the potential to promote the maintenance of phenotypic variation.
机译:尽管净化或方向选择强烈,但种类普遍存在中。维持变异的一种机制是间接遗传效应(IGES),因为给定基因型的适应性将稍微依赖其社会伙伴的基因。 IGES描述了基因在社会伴侣对焦型表达表达的影响。在这里,我们询问非生物环境之间的IGES的效果IGES和变异,在果蝇的运动上。众所周知,这种特质受到肠道细胞性拮抗的选择。我们估计了使用六种肾血清血液的六种近红线的相互作用系数。我们发现ψ在非生物环境之间变化,并且它可能在非生物环境特异性的男性基因型中变化。我们还发现,雄性的社会影响改变了女性中性别二甲性质的价值,突出了一个有趣的途径,以便将来的性拮抗作用。我们得出结论,IGES是社会和性互动的重要组成部分,它们以复杂的方式在个人和非生物环境之间变化,有可能促进维持表型变异。

著录项

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  • 作者单位

    Program in Molecular and Computational Biology Dornsife College of Letters Arts and Sciences University of Southern California Los Angeles California 90089;

    Graduate Program in Computational Biology Dornsife College of Letters Arts and Sciences University of Southern California Los Angeles California 90089;

    Program in Molecular and Computational Biology Dornsife College of Letters Arts and Sciences University of Southern California Los Angeles California 90089;

    Program in Molecular and Computational Biology Dornsife College of Letters Arts and Sciences University of Southern California Los Angeles California 90089;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物演化与发展;
  • 关键词

    Drosophila; indirect genetic effects; locomotion;

    机译:果蝇;间接遗传效果;运动;

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