鲸类动物体型进化的新基因组见解和皮托悖论的解决。

The American Naturalist Pub Date : 2022-02-01 Epub Date: 2022-01-06 DOI:10.1086/717768
Di Sun 孙迪, Simin Chai 柴思敏, Xin Huang 黄鑫, Yingying Wang 王滢莹, Linlin Xiao 肖琳琳, Shixia Xu 徐士霞, Guang Yang 杨光
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引用次数: 3

摘要

摘要鲸类动物(鲸鱼、海豚和鼠海豚)经历了从典型陆生哺乳动物身体向流线型身体的彻底转变,同时表现出巨大的种间体型差异。然而,鲸类动物体型多样化的分子机制在很大程度上是未知的。本研究利用22种鲸类的基因组和表型数据,进行了系统发育基因组-体型分析,探讨了鲸类体型高度多样性的遗传基础。一项功能富集分析表明,鲸类动物的体型相关基因在与免疫、细胞生长和代谢相关的途径中富集,表明它们有助于体型多样化。与体型进化相关的基因主要参与免疫监视、肿瘤抑制功能和恶性肿瘤的发生。这些基因在肿瘤控制中的作用解决了Peto悖论(即,身体尺寸的扩大和细胞数量的增加与癌症发病率的增加之间缺乏对应关系)。我们的结果为鲸类动物身体大小变化的进化提供了新的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Novel Genomic Insights into Body Size Evolution in Cetaceans and a Resolution of Peto's Paradox.

AbstractCetaceans (whales, dolphins, and porpoises) have undergone a radical transformation from the typical terrestrial mammalian body plan to a streamlined body, while exhibiting dramatic interspecific size differences. However, the molecular mechanisms underlying the diversification of cetacean body size are largely unknown. Here, by using genomic and phenotypic data for 22 cetaceans, we performed phylogenetic genome-body size analysis and explored the genetic basis of the high diversity of body size in cetaceans. A functional enrichment analysis showed that body size-related genes in cetaceans are enriched in pathways associated with immunity, cell growth, and metabolism, suggesting that they contributed to body size diversification. Genes showing correlated evolution with body size were mainly involved in immune surveillance, tumor suppression function, and development of hypertumors. The role of these genes in tumor control resolves Peto's paradox (i.e., the lack of a correspondence between an expansion in body size and, thereby, cell number and an increased cancer incidence). Our results provide novel insights into the evolution of substantial body size variation in cetaceans.

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