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一个基因拷贝数军备竞赛正在进行:跨越物种屏障的 X、Y 染色体传递扭曲。

A gene copy number arms race in action: X,Y-chromosome transmission distortion across a species barrier.

机构信息

Institute of Vertebrate Biology, Czech Academy of Sciences, Research Facility in Studenec, Brno, Czech Republic.

Laboratory of Mammalian Evolutionary Genetics, Institute of Animal Physiology and Genetics, Czech Academy of Sciences, Brno, Czech Republic.

出版信息

Evolution. 2023 Jun 1;77(6):1330-1340. doi: 10.1093/evolut/qpad051.

Abstract

A remarkable gene copy number (CN) arms race system has recently been described in laboratory mice, where Slx;Slxl1 and Sly genes compete over transmission by altering the fertilization success of X and Y chromosome-bearing sperm, respectively. Here, we focus on this system in nature, where natural selection can counter CN/gene product escalation. Our model is house mouse subspecies hybridizing in Europe. In some regions, Y chromosomes of the Eastern subspecies have introgressed onto Western genomic backgrounds, accompanied by sex ratio distortion in favor of males, consistent with the inbred lines suggested mechanism: Overabundance of SLY protein expressed by invading Y chromosomes. We take Slx as representative of the X side of this arms race and measure Slx|Sly CN and expression across an "Invasion" transect where Ys introgress and a "Control" transect with negligible introgression. Since we found similar Slx|Sly ratios in both transects, SLY overabundance is unlikely to explain the introgression. However, Slx CN is relatively low in the introgression area, suggesting that Slx is less able to combat Sly effects here. Furthermore, deterministic changes in Slx;Sly expression proportions versus CN proportions suggest standing variation for trans regulation of Slx|Sly is being co-opted in nature where their arms race reduces population fitness.

摘要

一个引人注目的基因拷贝数(CN)臂竞赛系统最近在实验室小鼠中被描述,其中 Slx;Slxl1 和 Sly 基因通过改变携带 X 和 Y 染色体的精子的受精成功率来分别竞争传递。在这里,我们关注的是自然界中的这个系统,在自然界中,自然选择可以对抗 CN/基因产物的升级。我们的模型是在欧洲杂交的家鼠亚种。在一些地区,东方亚种的 Y 染色体已经侵入到西方的基因组背景中,伴随着雄性比例的性别比例扭曲,这与近交系提出的机制一致:入侵 Y 染色体表达的 SLY 蛋白过多。我们以 Slx 作为这个军备竞赛 X 侧的代表,并在“入侵”横切和“控制”横切中测量 Slx|Sly CN 和表达,其中 Y 染色体侵入,而“控制”横切中几乎没有侵入。由于我们在两个横切中都发现了相似的 Slx|Sly 比值,因此 SLY 过多不太可能解释侵入。然而,在侵入区域 Slx CN 相对较低,表明 Slx 在这里对抗 Sly 效应的能力较弱。此外,Slx;Sly 表达比例与 CN 比例的确定性变化表明,在自然选择中,Slx|Sly 的跨调节存在着固定的变异,因为它们的军备竞赛降低了种群的适应性。

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