Revelation of genetic diversity and genomic footprints of adaptation in Indian pig breeds

生物 遗传多样性 系统发育树 驯化 选择(遗传算法) 遗传学 兽医学 生物技术 基因 医学 人口 人口学 社会学 人工智能 计算机科学
作者
A. Vani,Amit Kumar,Sudarshan Mahala,Sarath Chandra Janga,Anuj Chauhan,Arnav Mehrotra,Arun Kumar De,Amiya Ranjan Sahu,Sheikh Firdous Ahmad,Varshini Vempadapu,Triveni Dutt
出处
期刊:Gene [Elsevier BV]
卷期号:893: 147950-147950 被引量:3
标识
DOI:10.1016/j.gene.2023.147950
摘要

In the present study, the genetic diversity measures among four Indian domestic breeds of pig namely Agonda Goan, Ghurrah, Ghungroo, and Nicobari, of different agro-climatic regions of country were explored and compared with European commercial breeds, European wild boar and Chinese domestic breeds. The double digest restriction site-associated DNA sequencing (ddRADseq) data of Indian pigs (102) and Landrace (10 animals) were generated and whole genome sequencing data of exotic pigs (60 animals) from public data repository were used in the study. The principal component analysis (PCA), admixture analysis and phylogenetic analysis revealed that Indian breeds were closer in ancestry to Chinese breeds than European breeds. European breeds exhibited highest genetic diversity measures among all the considered breeds. Among Indian breeds, Agonda Goan and Ghurrah were found to be more genetically diverse than Nicobari and Ghungroo. The selection signature regions in Indian pigs were explored using iHS and XP-EHH, and during iHS analysis, it was observed that genes related to growth, reproduction, health, meat quality, sensory perception and behavior were found to be under selection pressure in Indian pig breeds. Strong selection signatures were recorded in 24.25-25.25 Mb region of SSC18, 123.25-124 Mb region of SSC15 and 118.75-119.5 Mb region of SSC2 in most of the Indian breeds upon pairwise comparison with European commercial breeds using XP-EHH. These regions were harboring some important genes such as EPHA4 for thermotolerance, TAS2R16, FEZF1, CADPS2 and PTPRZ1 for adaptability to scavenging system of rearing, TRIM36 and PGGT1B for disease resistance and CCDC112, PIAS1, FEM1B and ITGA11 for reproduction.
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