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海葵毒液表型的微观和宏观进化。

Micro and macroevolution of sea anemone venom phenotype.

机构信息

University of North Carolina at Charlotte, Department of Biological Sciences, Charlotte, NC, USA.

School of Life Sciences, University of Warwick, Coventry, United Kingdom.

出版信息

Nat Commun. 2023 Jan 16;14(1):249. doi: 10.1038/s41467-023-35794-9.

Abstract

Venom is a complex trait with substantial inter- and intraspecific variability resulting from strong selective pressures acting on the expression of many toxic proteins. However, understanding the processes underlying toxin expression dynamics that determine the venom phenotype remains unresolved. By interspecific comparisons we reveal that toxin expression in sea anemones evolves rapidly and that in each species different toxin family dictates the venom phenotype by massive gene duplication events. In-depth analysis of the sea anemone, Nematostella vectensis, revealed striking variation of the dominant toxin (Nv1) diploid copy number across populations (1-24 copies) resulting from independent expansion/contraction events, which generate distinct haplotypes. Nv1 copy number correlates with expression at both the transcript and protein levels with one population having a near-complete loss of Nv1 production. Finally, we establish the dominant toxin hypothesis which incorporates observations in other venomous lineages that animals have convergently evolved a similar strategy in shaping their venom.

摘要

毒液是一种复杂的特征,具有很强的种内和种间变异性,这是由于许多有毒蛋白的表达受到强烈的选择压力的影响。然而,对于决定毒液表型的毒素表达动态背后的过程的理解仍然没有得到解决。通过种间比较,我们发现海葵的毒素表达进化迅速,而且在每个物种中,不同的毒素家族通过大规模的基因重复事件决定了毒液表型。对海葵 Nematostella vectensis 的深入分析显示,在种群中(1-24 个拷贝),主导毒素(Nv1)的二倍体拷贝数存在显著的变化,这是由于独立的扩张/收缩事件导致的,这些事件产生了不同的单倍型。Nv1 的拷贝数与转录本和蛋白质水平的表达相关,一个种群的 Nv1 产量几乎完全丧失。最后,我们建立了主导毒素假说,该假说结合了其他毒液进化枝的观察结果,即动物在塑造其毒液方面已经趋同进化出了类似的策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/adf3/9842752/c0d45c06f535/41467_2023_35794_Fig1_HTML.jpg

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