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中国恒河猴低温适应的眼部进化

Melocular Evolution on Cold Temperature Adaptation of Chinese Rhesus Macaques.

作者信息

Wang Xuan, Feng Ming-Hong, Wang Shao-Bo, Shi Hong

机构信息

State Key Laboratory of Primate Biomedical Research, Institute of Primate Translational Medicine, Kunming University of Science and Technology, Kunming,Yunnan, 650500, China.

PET/CT Center, First People's Hospital of Yunnan Province, Kunming 650032, China.

出版信息

Curr Genomics. 2025;26(1):36-47. doi: 10.2174/0113892029301969240708094053. Epub 2024 Jul 10.

Abstract

INTRODUCTION

Currently, macaques are used as animal models for human disease in biomedical research. There are two macaques species widely used as animal models, ., cynomolgus macaques and rhesus macaques. These two primates distribute widely, and their natural habitats are different. Cynomolgus macaques distribute in tropical climates, while rhesus macaques mostly distribute in relatively cold environments, and cynomolgus macaques have a common frostbite problem during winter when they are transferred to cold environments.

METHODS

In order to explore the molecular mechanisms underlying the temperature adaptation in macaques, genetic analysis and natural selection tests were performed. Based on the analysis of heat shock protein genes, DNAJC22, DNAJC28, and HSF5 showed positive selection signals. To these 3 genes, the significantly differential expression had been confirmed between cynomolgus macaques and Chinese rhesus macaques.

RESULTS

Molecular evolution analysis showed that mutations of DNAJC22, DNAJC28, and HSF5 in Chinese rhesus macaques could enable them to gain the ability to rapidly regulate body temperature. The heat shock proteins provided an important function for Chinese rhesus macaques, allowing them to adapt to a wide range of temperatures and spread widely. The selection time that was estimated suggested that the cold adaptation of Chinese rhesus macaques coincided with the time that the modern human populations migrated northward from tropic regions to relatively cold regions, and the selection genes were similar.

CONCLUSION

This study elucidated the evolutionary history of cynomolgus macaques and rhesus macaques from molecular adaptation. Furthermore, it provided an evolutionary perspective to reveal the different distribution and adaptation of macaques. Cynomolgus macaques is an ideal biomedical animal model to mimic human natural frostbite.

摘要

引言

目前,猕猴被用作生物医学研究中人类疾病的动物模型。有两种猕猴物种被广泛用作动物模型,即食蟹猕猴和恒河猴。这两种灵长类动物分布广泛,其自然栖息地不同。食蟹猕猴分布在热带气候地区,而恒河猴大多分布在相对寒冷的环境中,食蟹猕猴在冬季转移到寒冷环境时会出现常见的冻伤问题。

方法

为了探究猕猴温度适应的分子机制,进行了遗传分析和自然选择测试。基于对热休克蛋白基因的分析,DNAJC22、DNAJC28和HSF5显示出正选择信号。对于这3个基因,已证实在食蟹猕猴和中国恒河猴之间存在显著差异表达。

结果

分子进化分析表明,中国恒河猴中DNAJC22、DNAJC28和HSF5的突变使其能够获得快速调节体温的能力。热休克蛋白为中国恒河猴提供了重要功能,使其能够适应广泛的温度范围并广泛分布。估计的选择时间表明,中国恒河猴的冷适应与现代人类群体从热带地区向北迁移到相对寒冷地区的时间一致,且选择的基因相似。

结论

本研究从分子适应角度阐明了食蟹猕猴和恒河猴的进化历史。此外,它为揭示猕猴的不同分布和适应提供了一个进化视角。食蟹猕猴是模拟人类自然冻伤的理想生物医学动物模型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/78aa/11793050/48e8c04934b1/CG-26-1-36_F1a.jpg

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