College of Animal Science and Technology, Northwest A&F University, Key Laboratory of Animal Genetics, Breeding and Reproduction of Shaanxi Province, Key Laboratory of Animal Biotechnology, Ministry of Agriculture, Yangling 712100, PR China.
Department of Neurology, Institute of Brain Science, Medical School, Shanxi Datong University, Datong 037000, China.
Genomics. 2021 Jan;113(1 Pt 1):142-150. doi: 10.1016/j.ygeno.2020.11.024. Epub 2020 Dec 1.
To select candidate genes for goat prolificacy, we managed six multi- and six single-kid female goats at the same feeding level and in the same management mode over a 4-year period. These goats showed stable differences in litter size over five continuous parturition records. Whole-genome re-sequencing was used in all 12 to select candidate genes, namely, AURKA, ENDOG, SOX2, RORA, GJA10, RXFP2, CDC25C, and NANOS3, by the strength of their differentiation signals. Most of the selected genes were enriched in the coiled coil process and ovarian development, which suggests that the coiled coil process has a potential regulatory effect on fecundity. Detection of the distribution of variants and association analyses with litter size in 400 goats showed that NANOS3 exon mutations may lead to a transformation of the protein structure. The variation in CDC25C, ENDOG, and NANOS3 showed a significant association with litter size. These results can contribute to the improvement of reproduction traits in the artificial breeding of goats.
为了筛选产羔数相关的候选基因,我们在 4 年的时间里,在相同的饲养水平和管理模式下,管理了 6 只多羔和 6 只单羔母羊。这些母羊在连续 5 胎的产羔记录中表现出稳定的产羔数差异。我们对这 12 只母羊进行了全基因组重测序,通过其分化信号选择候选基因,包括 AURKA、ENDOG、SOX2、RORA、GJA10、RXFP2、CDC25C 和 NANOS3。选择的大多数基因富集在卷曲螺旋过程和卵巢发育中,这表明卷曲螺旋过程对产羔数具有潜在的调节作用。在 400 只羊中检测变异分布和与产羔数的关联分析表明,NANOS3 外显子突变可能导致蛋白质结构的转变。CDC25C、ENDOG 和 NANOS3 的变异与产羔数显著相关。这些结果有助于提高山羊的繁殖性状,进而促进人工养殖山羊的发展。