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How could fully scaled carps appear in natural waters in Madagascar?

机译:马达加斯加的天然水域中怎么会出现完全鳞状的鲤鱼?

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摘要

The capacity of organisms to rapidly evolve in response to environmental changes is a key feature of evolution, and studying mutation compensation is a way to evaluate whether alternative routes of evolution are possible or not. Common carps (Cyprinus carpio) carrying a homozygous loss-of-function mutation for the scale cover gene fgfr1a1, causing the 'mirror' reduced scale cover, were introduced in Madagascar a century ago. Here we show that carps in Malagasy natural waters are now predominantly covered with scales, though they still all carry the homozygous mutation. We also reveal that the number of scales in mutated carps is under strong polygenic genetic control, with a heritability of 0.49. As a whole, our results suggest that carps submitted to natural selection could evolve a wild-type-like scale cover in less than 40 generations from standing polygenic genetic variation, confirming similar findings mainly retrieved from model organisms.
机译:生物响应环境变化而迅速进化的能力是进化的关键特征,而研究突变补偿是评估替代进化途径是否可行的一种方式。一个世纪前在马达加斯加引入了带有鳞片覆盖基因fgfr1a1的纯合功能缺失突变的普通鲤鱼(鲤)。在这里,我们显示,马达加斯加人的天然水域中的鲤鱼现在主要被鳞片所覆盖,尽管它们仍然都带有纯合突变。我们还发现,突变鲤鱼的鳞片数量受到强大的多基因遗传控制,遗传力为0.49。总体而言,我们的研究结果表明,提交给自然选择的鲤鱼可以从站立的多基因遗传变异中进化不到40代,形成类似野生型的鳞片覆盖,从而证实了类似的发现,主要是从模型生物中获得的。

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