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生活在盐碱栖息地的鸟类肾脏大小和眶上盐腺的趋同进化。

Convergent evolution of kidney sizes and supraorbital salt glands for birds living in saline habitats.

作者信息

Chiu Chi-Cheng, Yao Cheng-Te, Liao Ben-Yang, Li Shou-Hsien

机构信息

School of Life Science, National Taiwan Normal University, Taipei 11677, Taiwan.

High altitude research station, Taiwan Endemic Species Research Institute, Nantou 55244, Taiwan.

出版信息

iScience. 2024 Feb 9;27(3):109169. doi: 10.1016/j.isci.2024.109169. eCollection 2024 Mar 15.

Abstract

Only a small number of avian species inhabit salty environments. To understand how they adapted, we examined the evolution of kidney sizes, supraorbital salt glands (SSGs), and the utilization of salty habitats across 230 species spanning 25 avian orders. Phylogenetic analysis indicates that SSGs, large kidneys, and thriving in salty habitats emerged convergently in birds. Transition rate analysis reveals that species possessing SSGs and large kidneys tended to move from low-to high-salinity environments, while others moved in the opposite direction. However, habitat salinity also influenced kidney evolution; lineages residing in high-salinity environments tended to develop larger kidneys than those in low-salinity environments. Our findings suggest that SSGs and large kidneys may have evolved through adaptation to high salinity. Overall, habitat conditions and physiological traits influenced avian adaptation to salty environments in a reciprocal manner. These results shed the new light on the evolutionary mechanisms underlying functional diversity in birds.

摘要

只有少数鸟类栖息在咸水环境中。为了解它们是如何适应的,我们研究了25个鸟类目230种鸟类的肾脏大小、眶上盐腺(SSGs)的进化以及对咸水栖息地的利用情况。系统发育分析表明,眶上盐腺、大肾脏以及在咸水栖息地生存的能力在鸟类中是趋同出现的。转变速率分析显示,拥有眶上盐腺和大肾脏的物种倾向于从低盐度环境向高盐度环境迁移,而其他物种则朝相反方向迁移。然而,栖息地盐度也影响了肾脏的进化;生活在高盐度环境中的谱系往往比生活在低盐度环境中的谱系发育出更大的肾脏。我们的研究结果表明,眶上盐腺和大肾脏可能是通过对高盐度的适应而进化的。总体而言,栖息地条件和生理特征以相互作用的方式影响了鸟类对咸水环境的适应。这些结果为鸟类功能多样性背后的进化机制提供了新的线索。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3dbd/10904986/80852ea3bb4d/fx1.jpg

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