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Molecular genetics of ecological diversification: Duplication and rapid evolution of toxin genes of the venomous gastropod Conus

机译:生态多样化的分子遗传学:有毒腹足纲圆锥体毒素基因的复制和快速进化

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摘要

Predatory snails in the marine gastropod genus Conus stun prey by injecting a complex mixture of peptide neurotoxins. These conotoxins are associated with trophic diversification and block a diverse array of ion channels and neuronal receptors in prey species, but the evolutionary genesis of this functional diversity is unknown. Here we show that conotoxins with little amino acid similarity are in fact products of recently diverged loci that are rapidly evolving by strong positive selection in the vermivorous cone, Conus abbreviatus, and that the rate of conotoxin evolution is higher than that of most other known proteins. Gene duplication and diversifying selection result in the formation of functionally variable conotoxins that are linked to ecological diversification and evolutionary success of this genus.
机译:通过注射复杂的肽神经毒素混合物,在海洋腹足纲动物属Conus身上捕食蜗牛。这些芋螺毒素与营养多样化相关联,并阻止猎物物种中多种离子通道和神经元受体,但是这种功能多样性的进化起源尚不清楚。在这里我们表明,氨基酸相似性很小的芋螺毒素实际上是最近分化的基因座的产物,它们通过在食虫锥Conus abbreviatus中的强阳性选择而迅速进化,并且芋螺毒素的进化速率高于大多数其他已知蛋白质。基因复制和多样化选择导致功能可变的芋螺毒素的形成,该毒素与该属的生态多样性和进化成功有关。

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