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两个主效基因座影响近缘物种拟暗果蝇和塞舌尔果蝇雌性个体的种间交配。

Two major-effect loci influence interspecific mating in females of the sibling species, Drosophila simulans and D. sechellia.

作者信息

Lu Kenneth, Erezyilmaz Deniz

机构信息

NYC Health and Hospitals/Lincoln, 234 East 149th Street, Bronx, NY 10451, USA.

Centre for Neural Circuits and Behaviour, Department of Physiology, Anatomy and Genetics, University of Oxford, Mansfield Road, Oxford OX1-3SR, UK.

出版信息

G3 (Bethesda). 2025 Feb 5;15(2). doi: 10.1093/g3journal/jkae279.

Abstract

Secondary contact between incompletely isolated species can produce a wide variety of outcomes. The vinegar flies Drosophila simulans and D. sechellia diverged on islands in the Indian Ocean and are currently separated by partial pre- and postzygotic barriers. The recent discovery of hybridization between D. simulans and D. sechellia in the wild presents an opportunity to monitor the prevalence of alleles that influence hybridization between these sibling species. We therefore sought to identify those loci in females that affect interspecific mating, and we adapted a two-choice assay to capture female mate choice and female attractiveness simultaneously. We used shotgun sequencing to genotype female progeny of reciprocal F1 backcrosses at high resolution and performed QTL analysis. We found 2 major-effect QTL in both backcrosses, one on either arm of the third chromosome that each account for 32-37% of the difference in phenotype between species. The QTL of both backcrosses overlap and may each be alternate alleles of the same locus. Genotypes at these 2 loci followed an assortative mating pattern with D. simulans males but not D. sechellia males, which mated most frequently with females that were hybrid at both loci. These data reveal how different allele combinations at 2 major loci may promote isolation and hybridization in the same species pair. Identification of these QTLs is an important step toward understanding how the genetic architecture of mate selection may shape the outcome of secondary contact.

摘要

不完全隔离的物种之间的二次接触会产生各种各样的结果。醋蝇中的拟暗果蝇和谢岛果蝇在印度洋的岛屿上发生了分化,目前受到部分合子前和合子后隔离屏障的分隔。最近在野外发现拟暗果蝇和谢岛果蝇之间存在杂交现象,这为监测影响这些近缘物种杂交的等位基因的流行情况提供了一个机会。因此,我们试图确定雌性中影响种间交配的那些基因座,并采用了一种双选试验来同时捕捉雌性的配偶选择和雌性的吸引力。我们使用鸟枪法测序对正反交F1回交雌性后代进行高分辨率基因分型,并进行了数量性状基因座(QTL)分析。我们在两个回交中都发现了2个主效QTL,分别位于第三条染色体的两条臂上,每个QTL占物种间表型差异的32 - 37%。两个回交的QTL重叠,可能各自是同一基因座的替代等位基因。这2个基因座的基因型与拟暗果蝇雄性呈现选型交配模式,但与谢岛果蝇雄性则不然,谢岛果蝇雄性最常与在这两个基因座均为杂交型的雌性交配。这些数据揭示了2个主要基因座上不同的等位基因组合如何在同一物种对中促进隔离和杂交。鉴定这些QTL是理解配偶选择的遗传结构如何塑造二次接触结果的重要一步。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2513/11797031/7be56b543890/jkae279f1.jpg

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