Genomic Insights into Pig Domestication and Adaptation: An Integrated Approach Using Genome-Wide Selection Analysis and Multiple Public Datasets.

IF 2.7 2区 农林科学 Q1 AGRICULTURE, DAIRY & ANIMAL SCIENCE
Animals Pub Date : 2024-11-04 DOI:10.3390/ani14213159
Haoyuan Zhang, Pengcheng Ruan, He Cong, Lu Xu, Baigao Yang, Tao Ren, Dongjie Zhang, Hongyue Chen, Pengfei Hu, Zhen Wang, Hongmei Pan, Xiuqin Yang, Yanguo Han, Yan Zeng, Yongju Zhao, Di Liu, Simone Ceccobelli, Guangxin E
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Abstract

As a global focus of animal husbandry, pigs provide essential meat resources for humans. Therefore, analyzing the genetic basis of adaptability, domestication, and artificial selection in pigs will contribute to further breeding. This study performed a genome-wide selection sweep analysis to identify candidate genes related to domestication and adaptive selection via data from 2413 public genotypes. Two complementary statistical analyses, FST (fixation index) and XP-EHH (cross-population extended haplotype homozygosity) were applied. The results revealed that numerous candidate genes were associated with high-altitude adaptability (e.g., SIRPA, FRS2, and GRIN2B) and habitat temperature adaptability (e.g., MITF, PI3KC2A, and FRS2). In addition, candidate genes related to the domestic genetic imprint of indigenous pigs (e.g., TNR, NOCT, and SPATA5) and strong artificial selection pressure in commercial breeds (e.g., ITPR2, HSD17B12, and UGP2) were identified in this study. Specifically, some MHC-related genes (e.g., ZRTB12, TRIM26, and C7H6orf15) were also under selection during domestication and artificial selection. Additionally, a phylogenetic comparative analysis revealed that the genetic divergence between populations does not fully follow the geographical distribution and management history in the major histocompatibility complex region/major histocompatibility complex II haplotypes, unlike that of the genome-wide genotypes. Furthermore, the higher heterozygosity and haplotype alleles of MHC reduce the differences between populations. Briefly, this study not only helps promote the relative theoretical understanding of environmental adaptive selection and domestication but also provides a theoretical reference for disease-resistant breeding in pigs.

猪驯化和适应的基因组学启示:利用全基因组选择分析和多个公共数据集的综合方法。
作为全球畜牧业的焦点,猪为人类提供了重要的肉类资源。因此,分析猪的适应性、驯化和人工选择的遗传基础将有助于进一步的育种工作。本研究进行了全基因组选择扫描分析,通过 2413 个公开基因型的数据来确定与驯化和适应性选择相关的候选基因。研究采用了两种互补的统计分析方法:FST(固定指数)和XP-EHH(跨群扩展单倍型同源性)。结果显示,许多候选基因与高海拔适应性(如 SIRPA、FRS2 和 GRIN2B)和生境温度适应性(如 MITF、PI3KC2A 和 FRS2)有关。此外,本研究还发现了与本土猪的家系遗传印记(如 TNR、NOCT 和 SPATA5)和商品猪品种的强大人工选择压力(如 ITPR2、HSD17B12 和 UGP2)相关的候选基因。具体而言,一些与 MHC 相关的基因(如 ZRTB12、TRIM26 和 C7H6orf15)在驯化和人工选择过程中也受到了选择。此外,系统发育比较分析表明,在主要组织相容性复合体区域/主要组织相容性复合体 II 单倍型中,种群间的遗传分化并不完全遵循地理分布和管理历史,这与全基因组基因型不同。此外,主要组织相容性复合物较高的杂合度和单倍型等位基因减少了不同人群之间的差异。简而言之,本研究不仅有助于促进对环境适应性选择和驯化的相对理论认识,还为猪的抗病育种提供了理论参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Animals
Animals Agricultural and Biological Sciences-Animal Science and Zoology
CiteScore
4.90
自引率
16.70%
发文量
3015
审稿时长
20.52 days
期刊介绍: Animals (ISSN 2076-2615) is an international and interdisciplinary scholarly open access journal. It publishes original research articles, reviews, communications, and short notes that are relevant to any field of study that involves animals, including zoology, ethnozoology, animal science, animal ethics and animal welfare. However, preference will be given to those articles that provide an understanding of animals within a larger context (i.e., the animals'' interactions with the outside world, including humans). There is no restriction on the length of the papers. Our aim is to encourage scientists to publish their experimental and theoretical research in as much detail as possible. Full experimental details and/or method of study, must be provided for research articles. Articles submitted that involve subjecting animals to unnecessary pain or suffering will not be accepted, and all articles must be submitted with the necessary ethical approval (please refer to the Ethical Guidelines for more information).
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