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味觉受体 TAS1R 和 TAS2R 家族的基因:寻找其在人类进化中适应性作用的特征。

Genes from the TAS1R and TAS2R Families of Taste Receptors: Looking for Signatures of Their Adaptive Role in Human Evolution.

机构信息

I3S, Instituto de Investigação e Inovação em Saúde, Universidade do Porto, Portugal.

IPATIMUP, Institute of Molecular Pathology and Immunology, University of Porto, Portugal.

出版信息

Genome Biol Evol. 2018 Apr 1;10(4):1139-1152. doi: 10.1093/gbe/evy071.

Abstract

Taste perception is crucial in monitoring food intake and, hence, is thought to play a significant role in human evolution. To gain insights into possible adaptive signatures in genes encoding bitter, sweet, and umami taste receptors, we surveyed the available sequence variation data from the 1000 Genomes Project Phase 3 for TAS1R (TAS1R1-3) and TAS2R (TAS2R16 and TAS2R38) families. Our study demonstrated that genes from these two families have experienced contrasting evolutionary histories: While TAS1R1 and TAS1R3 showed worldwide evidence of positive selection, probably correlated with improved umami and sweet perception, the patterns of variation displayed by TAS2R16 and TAS2R38 were more consistent with scenarios of balancing selection that possibly conferred a heterozygous advantage associated with better capacity to perceive a wide range of bitter compounds. In TAS2R16, such adaptive events appear to have occurred restrictively in mainland Africa, whereas the strongest evidence in TAS2R38 was detected in Europe. Despite plausible associations between taste perception and the TAS1R and TAS2R selective signatures, we cannot discount other biological mechanisms as driving the evolutionary trajectories of those TAS1R and TAS2R members, especially given recent findings of taste receptors behaving as the products of pleiotropic genes involved in many functions outside the gustatory system.

摘要

味觉感知对于监测食物摄入至关重要,因此被认为在人类进化中起着重要作用。为了深入了解编码苦味、甜味和鲜味味觉受体的基因中可能存在的适应性特征,我们调查了 1000 基因组计划第三阶段中 TAS1R(TAS1R1-3)和 TAS2R(TAS2R16 和 TAS2R38)家族的可用序列变异数据。我们的研究表明,这两个家族的基因经历了截然不同的进化历史:虽然 TAS1R1 和 TAS1R3 显示出全世界范围内正选择的证据,可能与鲜味和甜味感知的改善有关,但 TAS2R16 和 TAS2R38 的变异模式更符合平衡选择的情景,这可能赋予了杂合优势,与更广泛的苦味化合物感知能力有关。在 TAS2R16 中,这种适应性事件似乎只在非洲大陆发生,而在 TAS2R38 中则检测到最强的证据在欧洲。尽管味觉感知与 TAS1R 和 TAS2R 的选择特征之间存在明显的关联,但我们不能排除其他生物学机制是这些 TAS1R 和 TAS2R 成员进化轨迹的驱动力,尤其是考虑到最近发现味觉受体作为参与味觉系统以外许多功能的多效基因的产物发挥作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/85d7/5905477/39c084789cb1/evy071f1.jpg

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