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猎物转移驱动圆锥蜗牛毒液进化。

Prey Shifts Drive Venom Evolution in Cone Snails.

机构信息

Department of Biochemistry, University of Utah, Salt Lake City, UT 84112, USA.

School of Biological Sciences, University of Utah, Salt Lake City, UT 84112, USA.

出版信息

Mol Biol Evol. 2024 Aug 2;41(8). doi: 10.1093/molbev/msae120.

Abstract

Venom systems are complex traits that have independently emerged multiple times in diverse plant and animal phyla. Within each venomous lineage there typically exists interspecific variation in venom composition where several factors have been proposed as drivers of variation, including phylogeny and diet. Understanding these factors is of broad biological interest and has implications for the development of antivenom therapies and venom-based drug discovery. Because of their high species richness and the presence of several major evolutionary prey shifts, venomous marine cone snails (genus Conus) provide an ideal system to investigate drivers of interspecific venom variation. Here, by analyzing the venom gland expression profiles of ∼3,000 toxin genes from 42 species of cone snail, we elucidate the role of prey-specific selection pressures in shaping venom variation. By analyzing overall venom composition and individual toxin structures, we demonstrate that the shifts from vermivory to piscivory in Conus are complemented by distinct changes in venom composition independent of phylogeny. In vivo injections of venom from piscivorous cone snails in fish further showed a higher potency compared with venom of nonpiscivores demonstrating a selective advantage. Together, our findings provide compelling evidence for the role of prey shifts in directing the venom composition of cone snails and expand our understanding of the mechanisms of venom variation and diversification.

摘要

毒液系统是复杂的特征,在不同的植物和动物门中多次独立出现。在每一个有毒的谱系中,毒液成分通常存在种间变异,有几个因素被认为是变异的驱动因素,包括系统发育和饮食。了解这些因素具有广泛的生物学意义,并对抗毒液疗法和基于毒液的药物发现有影响。由于其物种丰富度高,并且存在几种主要的进化性猎物转变,有毒的海洋圆锥蜗牛(属 Conus)为研究种间毒液变异的驱动因素提供了一个理想的系统。在这里,通过分析来自 42 种圆锥蜗牛的约 3000 个毒素基因的毒液腺表达谱,我们阐明了猎物特异性选择压力在塑造毒液变异中的作用。通过分析整体毒液成分和单个毒素结构,我们证明了 Conus 从食虫到食鱼的转变与毒液成分的独立于系统发育的明显变化相补充。在鱼类中对食鱼的圆锥蜗牛的毒液进行体内注射,与非食鱼的毒液相比,表现出更高的效力,证明了一种选择优势。总之,我们的研究结果为猎物转变在指导圆锥蜗牛毒液成分方面的作用提供了令人信服的证据,并扩展了我们对毒液变异和多样化机制的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ae17/11296725/d73ee3d49b19/msae120f1.jpg

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