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拟暗果蝇的Y染色体与常染色体相互作用,影响雄性适应性。

The Drosophila simulans Y chromosome interacts with the autosomes to influence male fitness.

作者信息

Archer C R, Stephens R M, Sharma M D, Hosken D J

机构信息

Science and Engineering Research Support Facility Centre for Ecology & Conservation, School of Biosciences, University of Exeter, Penryn, UK.

出版信息

J Evol Biol. 2017 Oct;30(10):1821-1825. doi: 10.1111/jeb.13141. Epub 2017 Aug 4.

Abstract

The Y chromosome should degenerate because it cannot recombine. However, male-limited transmission increases selection efficiency for male-benefit alleles on the Y, and therefore, Y chromosomes should contribute significantly to variation in male fitness. This means that although the Drosophila Y chromosome is small and gene-poor, Y-linked genes are vital for male fertility in Drosophila melanogaster and the Y chromosome has large male fitness effects. It is unclear whether the same pattern is seen in the closely related Drosophila simulans. We backcrossed Y chromosomes from three geographic locations into five genetic backgrounds and found strong Y and genetic background effects on male fertility. There was a significant Y-background interaction, indicating substantial epistasis between the Y and autosomal genes affecting male fertility. This supports accumulating evidence that interactions between the Y chromosome and the autosomes are key determinants of male fitness.

摘要

Y染色体因无法进行重组而理应退化。然而,雄性限定性遗传增加了Y染色体上对雄性有益等位基因的选择效率,因此,Y染色体应在雄性适合度变异中发挥重要作用。这意味着,尽管果蝇的Y染色体较小且基因贫乏,但Y连锁基因对黑腹果蝇的雄性生育能力至关重要,且Y染色体对雄性适合度有很大影响。目前尚不清楚在亲缘关系密切的拟果蝇中是否也存在同样的模式。我们将来自三个地理位置的Y染色体回交到五种遗传背景中,发现Y染色体和遗传背景对雄性生育能力有强烈影响。存在显著的Y染色体-背景相互作用,表明影响雄性生育能力的Y染色体基因与常染色体基因之间存在大量上位性效应。这支持了越来越多的证据,即Y染色体与常染色体之间的相互作用是雄性适合度的关键决定因素。

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