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狮头鹅120日龄体重和体型性状的遗传精细定位

Genetic fine-mapping of body weight and size traits at 120 days of age in Lion-head geese.

作者信息

Huang Zhirong, Zhang Liyun, Luo Maojun, Liu Nian, Wu Zhongping, Zhang Xumeng, Chen Junpeng, Lin Zhenping, Huang Yunmao, Tian Yunbo, Jiang Jicai, Li Xiujin

机构信息

College of Animal Science Technology, Zhongkai University of Agriculture and Engineering, Guangzhou, Guangdong, 510225, People's Republic of China.

Baisha Poultry and Livestock Origin Research Institute, Shantou, 515821, People's Republic of China.

出版信息

BMC Genomics. 2025 Jul 24;26(1):688. doi: 10.1186/s12864-025-11879-1.

Abstract

BACKGROUND

The Lion-head goose is one of the largest goose breeds all over the word. Body weight and body size traits at 120 days of age (i.e. the slaughter age) are economically important traits, which directly affect the profit of Lion-head goose industry. However, so far few studies have explored the genetic basis of these traits. This study for the first time integrated the single-SNP genome-wide association study (GWAS) and genetic fine-mapping based on whole-genome sequencing data to investigate the genetic architecture of body weight and 11 body size traits at 120 days of age in 504 lion-head geese.

RESULTS

Single-SNP GWAS identified three major QTL regions located on Chr18: 2,436-6,745 kb (4,210 kb), Chr18: 9,756 - 10,076 kb (320 kb) and Chr25: 4,794-4,799 kb (5 kb), which were associated with body weight, semi-diving length, pelvic width, fossil bone length and chest depth. Genetic fine-mapping of these three QTL regions revealed 16 candidate genes and 68 important SNP-trait pairs. Out of these genes, MBTD1, CEP112, RAB11FIP4, APOH, and WIPI1 were associated with body weight and other body size traits. Among these SNP-trait pairs, we found a nonsynonymous mutation (c.C463A) in the MBTD1 influencing body weight and other two body size traits.

CONCLUSION

These findings will enhance our understanding of the genetic architecture of body weight and body size traits at 120 days of age, which support the application of molecular breeding on these economically important traits in Lion-head geese.

摘要

背景

狮头鹅是世界上最大的鹅品种之一。120日龄(即屠宰年龄)时的体重和体尺性状是重要的经济性状,直接影响狮头鹅产业的利润。然而,迄今为止,很少有研究探索这些性状的遗传基础。本研究首次整合单核苷酸多态性全基因组关联研究(GWAS)和基于全基因组测序数据的基因精细定位,以研究504只狮头鹅120日龄时体重和11个体尺性状的遗传结构。

结果

单核苷酸多态性GWAS鉴定出位于Chr18:2436 - 6745 kb(4210 kb)、Chr18:9756 - 10076 kb(320 kb)和Chr25:4794 - 4799 kb(5 kb)的三个主要QTL区域,这些区域与体重、半潜水长度、骨盆宽度、胫长和胸深相关。对这三个QTL区域的基因精细定位揭示了16个候选基因和68个重要的单核苷酸多态性-性状对。在这些基因中,MBTD1、CEP112、RAB11FIP4、APOH和WIPI1与体重和其他体尺性状相关。在这些单核苷酸多态性-性状对中,我们在MBTD1中发现了一个影响体重和其他两个体尺性状的非同义突变(c.C463A)。

结论

这些发现将增进我们对120日龄时体重和体尺性状遗传结构的理解,支持在狮头鹅这些重要经济性状上应用分子育种。

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