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与生活史性状适应相关的猿类正向选择遗传特征的鉴定。

Identification of genetic signatures of positive selection in apes linked to life-history trait adaptations.

作者信息

Roh Yoo-Rim, Park Kiejung, An Young Jun, Yim Hyung-Soon, Lee Jung-Hyun

机构信息

Marine Biotechnology and Bioresource Research Department, Korea Institute of Ocean Science and Technology, 385 Haeyang-ro, Yeongdo-gu, Busan, 49111, Republic of Korea.

Department of Marine Biotechnology, University of Science and Technology, 217 Gajeong-ro, Yuseong-gu, Daejeon, 34113, Republic of Korea.

出版信息

Genes Genomics. 2025 May 4. doi: 10.1007/s13258-025-01647-6.

Abstract

BACKGROUND

Apes, including humans, exhibit distinctive life history traits such as increased brain mass, delayed sexual maturity, and extended longevity compared to non-ape primates. These pronounced interspecific differences likely arise from underlying genetic architecture. However, the molecular mechanisms contributing to these traits remain largely unknown.

OBJECTIVE

This study aims to identify genetic factors under positive selection that may have contributed to the evolution of ape-specific life history traits, particularly extended longevity.

METHODS

Comparative genomic analyses were performed between 7 ape species and 22 non-ape primate taxa to identify positively selected genes (PSGs). Functional enrichment analyses were conducted to determine the biological processes associated with these PSGs. Additionally, expression analyses were carried out to assess tissue-specific patterns and their potential roles in neurodevelopment and systemic homeostasis.

RESULTS

A total of 143 PSGs were idetntified, showing significant enrichment in biological processes including homeostatic regulation, protein complex assembly, and G protein-coupled receptor signaling pathways. Among these, ADCY5, PRKCB, and IL2 were of particular interest due to their established roles in longevity-associated mechanisms. Expression analyses revealed tissue-specific patterns suggesting potential involvement in brain evolution, neurodevelopment, and glucose homeostasis.

CONCLUSION

This study provides molecular insights into the genetic mechanisms underlying longevity in apes and highlights key biological processes that may have contributed to the evolution of ape-specific life history traits. These findings enhance our understanding of how positive selection has shaped complex phenotypes, particularly extended lifespan, in the ape lineage.

摘要

背景

包括人类在内的猿类,与非猿灵长类动物相比,具有独特的生活史特征,如脑容量增加、性成熟延迟和寿命延长。这些显著的种间差异可能源于潜在的遗传结构。然而,导致这些特征的分子机制在很大程度上仍然未知。

目的

本研究旨在确定正选择下的遗传因素,这些因素可能有助于猿类特有的生活史特征的进化,特别是延长的寿命。

方法

对7种类人猿物种和22种非猿灵长类分类群进行比较基因组分析,以确定正选择基因(PSGs)。进行功能富集分析,以确定与这些PSGs相关的生物学过程。此外,进行表达分析,以评估组织特异性模式及其在神经发育和全身稳态中的潜在作用。

结果

共鉴定出143个PSGs,在包括稳态调节、蛋白质复合物组装和G蛋白偶联受体信号通路等生物学过程中显示出显著富集。其中,ADCY5、PRKCB和IL2因其在长寿相关机制中的既定作用而特别受关注。表达分析揭示了组织特异性模式,表明其可能参与大脑进化、神经发育和葡萄糖稳态。

结论

本研究为猿类长寿的遗传机制提供了分子见解,并突出了可能有助于猿类特有的生活史特征进化的关键生物学过程。这些发现增进了我们对正选择如何塑造猿类谱系中复杂表型,特别是延长寿命的理解。

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