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利用新一代测序技术对弥勒红骨山羊进行全基因组选择性检测。

Genome-wide selective detection of Mile red-bone goat using next-generation sequencing technology.

作者信息

He Yong-Meng, Hong Qiong-Hua, Zhou Dong-Ke, Wang Shi-Zhi, Yang Bai-Gao, Yuan Ying, Zhang Wei-Yi, Huang Yong-Fu, E Guang-Xin

机构信息

Chongqing Key Laboratory of Forage & Herbivore College of Animal Science and Technology Chongqing Engineering Research Centre for Herbivores Resource Protection and Utilization Southwest University Chongqing China.

Yunnan Animal Science and Veterinary Institute Kunming China.

出版信息

Ecol Evol. 2021 Oct 12;11(21):14805-14812. doi: 10.1002/ece3.8165. eCollection 2021 Nov.

Abstract

The ecotype population of goats () was created by long-term artificial selection and natural adaptation. Mile red-bone goat is an indigenous breed with visible red bones, and its special bone structure has received extensive attention. This study aimed to identify genetic variants and candidate genes associated with specific bone phenotypes using next-generation sequencing technology (NGS). The results revealed that 31,828,206 single nucleotide polymorphisms (SNPs) were obtained from 72 goats (20 Mile red-bone goats and 52 common goats) by NGS. A total of 100 candidate genes were identified on the basis top 1% window interaction from nucleotide diversity (), ratio ( / ), and pairwise fixation index ( ). Exactly 77 known signaling pathways were enriched. Specifically, three coding genes (, , and ) were annotated in the vitamin metabolism signaling pathways, and was annotated to the osteoclast (OC) differentiation pathway. Furthermore, 5862 reliable copy number variations (CNVs) were obtained, and 14 and 24 genes were annotated with the top 1‰ CNV based on (>0.490) and (>0.527), respectively. Several pathways related to bone development and metabolism of exogenous substances in vivo, including calcium signaling pathway, OC differentiation, and glycerophospholipid metabolism, were annotated. Specifically, six genes from 19 candidate CNVs, which were obtained by interaction of the top 1‰ CNVs with and , were annotated to mucin-type O-glycan biosynthesis and metabolic pathways. Briefly, the results implied that pseudopurpurin and specific genetic variants work together to contribute to the red-bone color and specific bone structure of Mile red-bone goat. This study is helpful to understanding the genetic basis of the unique bone phenotype of Mile red-bone goats.

摘要

山羊的生态型种群是通过长期人工选择和自然适应形成的。弥勒红骨山羊是一种具有可见红骨的本土品种,其特殊的骨骼结构受到了广泛关注。本研究旨在利用下一代测序技术(NGS)鉴定与特定骨骼表型相关的遗传变异和候选基因。结果显示,通过NGS从72只山羊(20只弥勒红骨山羊和52只普通山羊)中获得了31,828,206个单核苷酸多态性(SNP)。基于核苷酸多样性()、比值(/)和成对固定指数()的前1%窗口相互作用,共鉴定出100个候选基因。确切地说,有77条已知信号通路得到了富集。具体而言,三个编码基因(、和)在维生素代谢信号通路中被注释,并且被注释到破骨细胞(OC)分化通路。此外,获得了5862个可靠的拷贝数变异(CNV),基于(>0.490)和(>0.527),分别有14个和24个基因在前1‰ CNV中被注释。体内有几条与骨发育和外源物质代谢相关的通路被注释,包括钙信号通路、OC分化和甘油磷脂代谢。具体而言,通过前1‰ CNV与和的相互作用获得的19个候选CNV中的6个基因被注释到粘蛋白型O-聚糖生物合成和代谢通路。简而言之,结果表明假紫红素和特定的遗传变异共同作用,促成了弥勒红骨山羊的红骨颜色和特殊骨骼结构。本研究有助于理解弥勒红骨山羊独特骨骼表型的遗传基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6bc2/8571596/b5a9ecb9f3fa/ECE3-11-14805-g003.jpg

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