Publications by authors named "Wen-hui Pi"

Article Synopsis
  • Researchers created a detailed genome resource for domestic sheep and their wild relatives, analyzing 810 samples from 7 wild species and 158 domestic populations, revealing a total of ∼121.2 million genetic variations.
  • They identified novel gene variants that impact local adaptation in domestic sheep, including a mutation linked to wool fineness, along with significant differences in genetic variations between wild and domestic groups.
  • The study also mapped out historical migrations of sheep from their domestication center in the Near East to different regions in Asia, highlighting two major migration waves during the Bronze Ages that influenced genetic diversity.
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How animals, particularly livestock, adapt to various climates and environments over short evolutionary time is of fundamental biological interest. Further, understanding the genetic mechanisms of adaptation in indigenous livestock populations is important for designing appropriate breeding programs to cope with the impacts of changing climate. Here, we conducted a comprehensive genomic analysis of diversity, interspecies introgression, and climate-mediated selective signatures in a global sample of sheep and their wild relatives.

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Understanding the genetic changes underlying phenotypic variation in sheep (Ovis aries) may facilitate our efforts towards further improvement. Here, we report the deep resequencing of 248 sheep including the wild ancestor (O. orientalis), landraces, and improved breeds.

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In animal cells, inhibition of non-homologous end joining (NHEJ) pathway improves the efficiency of homologous recombination (HR)-mediated double-strand brakes (DSBs) repair. To improve the efficiency of HR in sheep embryo fibroblasts, the NHEJ key molecule DNA ligase 4 (Lig4) was suppressed by siRNA interference. Four pairs of siRNA targeting Lig4 were designed and chemically synthesized.

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