黑腹果蝇难愈性和精子竞争雌性变异的QTL分析。

Mara K N Lawniczak, David J Begun
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引用次数: 18

摘要

在许多动物群体中,精子竞争是一个重要的健康组成部分。雄性黑腹果蝇在精子竞争能力方面表现出显著的遗传变异,雌性在第一次和第二次使用雄性精子方面表现出显著的遗传变异。目前,负责维持精子竞争相关表型遗传变异的力量受到了广泛关注。虽然有几个候选基因导致了男性竞争能力的变化,但与女性精子使用有关的基因在很大程度上仍未被发现。如果不了解潜在的基因,就很难区分不同的性选择模式,如隐性女性选择和性冲突。我们使用数量性状位点(QTL)定位来确定基因组中与雌性倾向于使用第一或第二雄性精子、雌性不愿再交配和早期生育能力有关的区域。最受支持的影响表型的标记包括33F/34A (P2)、57B(耐受性)和23F/24A(育性)。在这些重组自交系中观察到的表型变异中,有10% ~ 15%是由这些单个qtl解释的。对本实验中检测到的区域进行更详细的研究,可能会导致鉴定出与这里鉴定的qtl有关的基因。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A QTL analysis of female variation contributing to refractoriness and sperm competition in Drosophila melanogaster.

Sperm competition is an important fitness component in many animal groups. Drosophila melanogaster males exhibit substantial genetic variation for sperm competitive ability and females show considerable genetic variation for first versus second male sperm use. Currently, the forces responsible for maintaining genetic variation in sperm competition related phenotypes are receiving much attention. While several candidate genes contributing to the variation seen in male competitive ability are known, genes involved in female sperm use remain largely undiscovered. Without knowledge of the underlying genes, it will be difficult to distinguish between different models of sexual selection such as cryptic female choice and sexual conflict. We used quantitative trait locus (QTL) mapping to identify regions of the genome contributing to female propensity to use first or second male sperm, female refractoriness to re-mating, and early-life fertility. The most well supported markers influencing the phenotypes include 33F/34A (P2), 57B (refractoriness) and 23F/24A (fertility). Between 10% and 15% of the phenotypic variance observed in these recombinant inbred lines was explained by these individual QTLs. More detailed investigation of the regions detected in this experiment may lead to the identification of genes responsible for the QTLs identified here.

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