海洋掠食性蜗牛分泌毒液的演变

Giulia Zancolli, Maria Vittoria Modica, Nicolas Puilladre, Yuri Kantor, Agneesh Barua, Giulia Campli, Marc Robinson-Rechavi
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摘要

毒液是自然界中一种广泛的分泌物,因其毒素成分和应用潜力而被广泛研究。然而,人们对毒液产生的进化过程仍然知之甚少。为了解决这个问题,我们对海洋掠食性腹足类动物的食道相关腺体进行了转录组学比较分析,其中锥螺毒腺代表了特化的顶峰。我们发现,毒腺的功能分化和特化是通过将其祖先的消化功能重新分配到其他器官(特别是食道)来实现的。这要求整个消化系统的表达发生协同变化,并加速转录组的进化。毒腺分泌能力的提高是通过调节古老的分泌机制实现的,尤其是参与内质网应激和折叠蛋白反应的基因。另一方面,涉及转座元件的新基因的出现也为毒腺调控网络做出了贡献。我们的分析为功能分化的遗传基础提供了新的见解,并突出了腹足类消化系统显著的可塑性。
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Evolution of venom production in marine predatory snails
Venom is a widespread secretion in nature, extensively studied for its toxin components and application potential. Yet, the evolution of venom production remains poorly understood. To address this question, we conducted a comparative transcriptomics analysis of the oesophagus-associated glands in marine predatory gastropods, among which the cone snail venom gland represents a pinnacle of specialisation. We found that the functional divergence and specialisation of the venom gland was achieved through a redistribution of its ancestral digestive functions to other organs, specifically the oesophagus. This entailed concerted expression changes and accelerated transcriptome evolution across the entire digestive system. The increase in venom gland secretory capacity was achieved through the modulation of an ancient secretory machinery, particularly genes involved in endoplasmic reticulum stress and unfolded protein response. On the other hand, the emergence of novel genes, involving transposable elements, contributed to the gland regulatory network. Our analysis provides new insights into the genetic basis of functional divergence and highlights the remarkable plasticity of the gastropod digestive system.
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