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全基因组序列分析揭示了湘猪重要经济性状的选择特征。

Whole-genome sequence analysis reveals selection signatures for important economic traits in Xiang pigs.

机构信息

Institute of Agro-Bioengineering/Key Laboratory of Plant Resource Conservative and Germplasm Innovation in Mountainous Region and Key Laboratory of Animal Genetics, Breeding and Reproduction in the Plateau Mountainous Region (Ministry of Education), College of Life Science and College of Animal Science, Guizhou University, Guiyang, 550025, China.

Tongren University, Tongren, 554300, China.

出版信息

Sci Rep. 2022 Jul 12;12(1):11823. doi: 10.1038/s41598-022-14686-w.

Abstract

Xiang pig (XP) is one of the best-known indigenous pig breeds in China, which is characterized by its small body size, strong disease resistance, high adaptability, favorite meat quality, small litter sizes, and early sexual maturity. However, the genomic evidence that links these unique traits of XP is still poorly understood. To identify the genomic signatures of selection in XP, we performed whole-genome resequencing on 25 unrelated individual XPs. We obtained 876.70 Gb of raw data from the genomic libraries. The LD analysis showed that the lowest level of linkage disequilibrium was observed in Xiang pig. Comparative genomic analysis between XPs and other breeds including Tibetan, Meishan, Duroc and Landrace revealed 3062, 1228, 907 and 1519 selected regions, respectively. The genes identified in selected regions of XPs were associated with growth and development processes (IGF1R, PROP1, TBX19, STAC3, RLF, SELENOM, MSTN), immunity and disease resistance (ZCCHC2, SERPINB2, ADGRE5, CYP7B1, STAT6, IL2, CD80, RHBDD3, PIK3IP1), environmental adaptation (NR2E1, SERPINB8, SERPINB10, SLC26A7, MYO1A, SDR9C7, UVSSA, EXPH5, VEGFC, PDE1A), reproduction (CCNB2, TRPM6, EYA3, CYP7B1, LIMK2, RSPO1, ADAM32, SPAG16), meat quality traits (DECR1, EWSR1), and early sexual maturity (TAC3). Through the absolute allele frequency difference (ΔAF) analysis, we explored two population-specific missense mutations occurred in NR6A1 and LTBP2 genes, which well explained that the vertebrae numbers of Xiang pigs were less than that of the European pig breeds. Our results indicated that Xiang pigs were less affected by artificial selection than the European and Meishan pig breeds. The selected candidate genes were mainly involved in growth and development, disease resistance, reproduction, meat quality, and early sexual maturity. This study provided a list of functional candidate genes, as well as a number of genetic variants, which would provide insight into the molecular basis for the unique traits of Xiang pig.

摘要

香猪(XP)是中国著名的本土猪种之一,其特点是体型小、抗病力强、适应性高、肉质鲜美、产仔数少、性成熟早。然而,与 XP 这些独特性状相关的基因组证据仍知之甚少。为了鉴定 XP 中选择的基因组特征,我们对 25 个无关的 XP 个体进行了全基因组重测序。我们从基因组文库中获得了 876.70 Gb 的原始数据。LD 分析表明,香猪的最低水平的连锁不平衡。XP 与其他品种(包括藏猪、梅山猪、杜洛克和长白猪)之间的比较基因组分析显示,分别有 3062、1228、907 和 1519 个选择区域。在 XP 选择区域中鉴定的基因与生长和发育过程(IGF1R、PROP1、TBX19、STAC3、RLF、SELENOM、MSTN)、免疫和抗病性(ZCCHC2、SERPINB2、ADGRE5、CYP7B1、STAT6、IL2、CD80、RHBDD3、PIK3IP1)、环境适应性(NR2E1、SERPINB8、SERPINB10、SLC26A7、MYO1A、SDR9C7、UVSSA、EXPH5、VEGFC、PDE1A)、繁殖(CCNB2、TRPM6、EYA3、CYP7B1、LIMK2、RSPO1、ADAM32、SPAG16)、肉质性状(DECR1、EWSR1)和早期性成熟(TAC3)有关。通过绝对等位基因频率差异(ΔAF)分析,我们探讨了 NR6A1 和 LTBP2 基因中发生的两个种群特异性错义突变,这很好地解释了香猪的椎骨数量比欧洲猪种少。我们的结果表明,与欧洲和梅山猪种相比,香猪受人工选择的影响较小。候选的选择基因主要涉及生长和发育、抗病性、繁殖、肉质和早期性成熟。本研究提供了一组功能候选基因和一些遗传变异,这将为香猪独特性状的分子基础提供深入的了解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f119/9276726/ac4adff6f74c/41598_2022_14686_Fig1_HTML.jpg

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