Woolly mammoths were among the most abundant cold-adapted species during the Pleistocene. Their once-large populations went extinct in two waves, an end-Pleistocene extinction of continental populations followed by the mid-Holocene extinction of relict populations on St. Paul Island â¼5,600âyears ago and Wrangel Island â¼4,000âyears ago. Wrangel Island mammoths experienced an episode of rapid demographic decline coincident with their isolation, leading to a small population, reduced genetic diversity, and the fixation of putatively deleterious alleles, but the functional consequences of these processes are unclear. Here, we show that a Wrangel Island mammoth genome had many putative deleterious mutations that are predicted to cause diverse behavioral and developmental defects. Resurrection and functional characterization of several genes from the Wrangel Island mammoth carrying putatively deleterious substitutions identified both loss and gain of function mutations in genes associated with developmental defects (HYLS1), oligozoospermia and reduced male fertility (NKD1), diabetes (NEUROG3), and the ability to detect floral scents (OR5A1). These data suggest that at least one Wrangel Island mammoth may have suffered adverse consequences from reduced population size and isolation.
Functional Architecture of Deleterious Genetic Variants in the Genome of a Wrangel Island Mammoth.
弗兰格尔岛猛犸象基因组中有害遗传变异的功能结构
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作者:Fry Erin, Kim Sun K, Chigurapti Sravanthi, Mika Katelyn M, Ratan Aakrosh, Dammermann Alexander, Mitchell Brian J, Miller Webb, Lynch Vincent J
| 期刊: | Genome Biology and Evolution | 影响因子: | 2.800 |
| 时间: | 2020 | 起止号: | 2020 Mar 1; 12(3):48-58 |
| doi: | 10.1093/gbe/evz279 | ||
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