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TBX3 增强子内的单核苷酸突变增加了中国马的体尺。

A single-nucleotide mutation within the TBX3 enhancer increased body size in Chinese horses.

机构信息

Laboratory of Animal (Poultry) Genetics Breeding and Reproduction, Ministry of Agriculture, Institute of Animal Science, Chinese Academy of Agricultural Sciences (CAAS), Beijing 100193, P.R. China; Centre d'Anthropobiologie et de Génomique de Toulouse, Université Paul Sabatier, 37 allées Jules Guesde, 31000 Toulouse, France; CAAS-ILRI Joint Laboratory on Livestock and Forage Genetic Resources, Institute of Animal Science, Chinese Academy of Agricultural Sciences (CAAS), Beijing 100193, P.R. China.

Laboratory of Animal (Poultry) Genetics Breeding and Reproduction, Ministry of Agriculture, Institute of Animal Science, Chinese Academy of Agricultural Sciences (CAAS), Beijing 100193, P.R. China; CAAS-ILRI Joint Laboratory on Livestock and Forage Genetic Resources, Institute of Animal Science, Chinese Academy of Agricultural Sciences (CAAS), Beijing 100193, P.R. China.

出版信息

Curr Biol. 2022 Jan 24;32(2):480-487.e6. doi: 10.1016/j.cub.2021.11.052. Epub 2021 Dec 13.

Abstract

Chinese ponies are endemic to the mountainous areas of southwestern China and were first reported in the archaeological record at the Royal Tomb of Zhongshan King, Mancheng, dated to approximately ∼2,100 YBP. Previous work has started uncovering the genetic basis of size variation in western ponies and horses, revealing a limited number of loci, including HMGA2,LCORL/NCAPG,ZFAT, and LASP1. Whether the same genetic pathways also drive the small body size of Chinese ponies, which show striking anatomical differences to Shetland ponies, remains unclear. To test this, we combined whole-genome sequences of 187 horses across China. Statistical analyses revealed top association between genetic variation at the T-box transcription factor 3 (TBX3) and the body size. Fine-scale analysis across an extended population of 189 ponies and 574 horses narrowed down the association to one A/G SNP at an enhancer region upstream of the TBX3 (ECA8:20,644,555, p = 2.34e-39). Luciferase assays confirmed the single-nucleotide G mutation upregulating TBX3 expression, and enhancer-knockout mice exhibited shorter limbs than wild-type littermates (p < 0.01). Re-analysis of ancient DNA data showed that the G allele, which is most frequent in modern horses, first occurred some ∼2,300 years ago and rose in frequency since. This supports selection for larger size in Asia from approximately the beginning of the Chinese Empire. Overall, this study characterized the causal regulatory mutation underlying small body size in Chinese ponies and revealed size as one of the main selection targets of past Chinese breeders.

摘要

中国马起源于中国西南部山区,在距今约 2100 年前满城中山靖王墓的考古记录中首次被报道。之前的研究已经开始揭示西方矮马和马种体型变异的遗传基础,发现了包括 HMGA2、LCORL/NCAPG、ZFAT 和 LASP1 在内的少数几个基因座。同样的遗传途径是否也导致了中国马体型较小,这与设得兰矮马有明显的解剖学差异,目前还不清楚。为了验证这一点,我们对中国 187 匹马的全基因组序列进行了组合分析。统计分析显示,TBX3 基因座的遗传变异与体型之间存在最强的关联。在一个扩展的 189 匹马和 574 匹马的种群中进行的精细分析,将关联缩小到 TBX3 上游增强子区域的一个 A/G SNP(ECA8:20,644,555,p=2.34e-39)。萤光素酶检测证实了单核苷酸 G 突变可上调 TBX3 的表达,增强子敲除小鼠的四肢比野生型同窝仔鼠短(p<0.01)。对古代 DNA 数据的重新分析表明,在现代马中最常见的 G 等位基因,大约在 2300 年前首次出现,并在此后频率上升。这支持了从中国帝国早期开始,亚洲地区对更大体型的选择。总的来说,本研究描述了中国矮马体型较小的因果调控突变,并揭示了体型是过去中国马种选育的主要目标之一。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2edd/8796118/2f727dae3331/fx1.jpg

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