Selection at the <i>GSDMC</i> locus in horses and its implications for human mobility.

Liu, Xuexue; Jia, Yaozhen; Pan, Jianfei; Zhang, Yanli; Gong, Ying; Wang, Xintong; Ma, Yuehui; Alvarez, Nadir et al. · Science · 2025

basic_science · Level V

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Abstract

Horsepower revolutionized human history through enhanced mobility, transport, and warfare. However, the suite of biological traits that reshaped horses during domestication remains unclear. We scanned an extensive horse genome time series for selection signatures at 266 markers associated with key traits. We detected a signature of positive selection at <i>ZFPM1</i>-known to be a modulator of behavior in mice-occurring ~5000 years ago (ya), suggesting that taming was one of the earliest steps toward domestication of horses. Intensive selection at <i>GSDMC</i> began ~4750 ya with the domestication bottleneck, leading regulatory variants to high frequency by ~4150 ya. <i>GSDMC</i> genotypes are linked to body conformation in horses and to spinal anatomy, motor coordination, and muscular strength in mice. Our results suggest that selection on standing variation at <i>GSDMC</i> was crucial for the emergence of horses that could facilitate fast mobility in human societies ~4200 ya.

Medical subject headings