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利用视频图像分析对杂交羔羊体尺进行全基因组关联研究。

Genome wide association studies for carcass traits measured by video image analysis in crossbred lambs.

机构信息

Scotland's Rural College (SRUC), Peter Wilson Building, The King's Buildings, West Mains Road, Edinburgh EH9 3JG, United Kingdom.

Scotland's Rural College (SRUC), Peter Wilson Building, The King's Buildings, West Mains Road, Edinburgh EH9 3JG, United Kingdom.

出版信息

Meat Sci. 2024 Aug;214:109518. doi: 10.1016/j.meatsci.2024.109518. Epub 2024 Apr 16.

Abstract

This is the first UK genome wide association study investigating potential links between Video Image Analysis (VIA) carcass traits and molecular polymorphisms in crossbred sheep. Phenotypic and genotypic data were collected from two crossbred lamb populations: Texel x Scotch Mule (TxSM, n = 2330) and Texel x Lleyn (TxL, n = 3816). Traits measured included live weights at birth, eight weeks and weaning (∼15 weeks). VIA-predicted traits included total weights and weights of fat, muscle and bone in the whole carcass and primal (hind leg, saddle, shoulder) regions. Within-breed heritabilities estimated for the VIA traits ranged from 0.01 to 0.70, indicating potential for inclusion of some traits in breeding programmes. The two crossbred populations differed in SNPs associated with different traits. Two SNPs on chromosomes two (s74618.1) and eight (s68536.1), respectively, reached genome-wise significance for TxSM, explaining <1% of trait variance, for whole carcass fat and muscle weights, hind leg and saddle fat weights and shoulder bone weights. For TxL, four SNPs reached genome-wise significance, on chromosome two for hind leg muscle weight (OAR2_117,959,202 and OAR2_11804335), on chromosome 10 for whole carcass bone weight (OAR19_8,995,957.1), and on chromosome 19 for weaning weight (s40847.1), each explaining <1% of trait genetic variation. Differences in apparent genetic control of carcass traits may be influenced by the lambs' cross-breed, but also by management decisions affecting environmental variance and trait definitions, which should be understood in order to define protocols for incorporation of carcass traits into (cross)breeding programmes. IMPLICATIONS: Combining VIA-measured carcass traits with conventional production traits in a breeding programme could potentially improve the production and product quality of meat sheep. Phenotypes for VIA traits could be collected relatively easily if VIA machines were present at all abattoir sites. The current study and future Genome Wide Association Studies may help to identify potentially informative molecular markers, that explain large proportions of the genetic variance observed in VIA-measured carcass traits. Including this information in the estimation of breeding values could increase the accuracy of prediction, increasing the potential rate of genetic improvement for product quality. This study confirms the polygenic architecture of the investigated carcass traits, with a small number of molecular markers that each explain a small amount of genetic variation. Further studies across breed types are recommended to further test and validate molecular markers for traits related to lamb carcass quality, as measured by video image analysis.

摘要

这是首次在英国进行的全基因组关联研究,旨在调查视频图像分析(VIA)胴体性状与杂交羊分子多态性之间的潜在联系。表型和基因型数据来自两个杂交羔羊群体:特克塞尔 x 苏格兰骡子(TxSM,n=2330)和特克塞尔 x 莱因(TxL,n=3816)。测量的性状包括出生、8 周和断奶时(约 15 周)的活体体重。VIA 预测的性状包括整个胴体和初级(后腿、鞍部、肩部)部位的总重量以及脂肪、肌肉和骨骼的重量。估计 VIA 性状的within-breed 遗传力在 0.01 到 0.70 之间,表明某些性状有可能纳入育种计划。这两个杂交群体在与不同性状相关的 SNP 上存在差异。在 TxSM 中,两个 SNP 分别位于第 2 号染色体(s74618.1)和第 8 号染色体(s68536.1)上,与整个胴体脂肪和肌肉重量、后腿和鞍部脂肪重量以及肩部骨重量相关,达到了全基因组显著水平,解释了不到 1%的性状变异。对于 TxL,有四个 SNP 达到了全基因组显著水平,位于第 2 号染色体上的后腿肌肉重量(OAR2_117,959,202 和 OAR2_11804335)、第 10 号染色体上的整个胴体骨骼重量(OAR19_8,995,957.1)和第 19 号染色体上的断奶体重(s40847.1),每个 SNP 解释了不到 1%的性状遗传变异。胴体性状的遗传控制差异可能受到羔羊杂交的影响,但也可能受到影响环境方差和性状定义的管理决策的影响,为了将胴体性状纳入(杂交)育种计划,应该理解这些影响,以定义协议。 影响:在育种计划中结合 VIA 测量的胴体性状和常规生产性状,可能会提高肉用绵羊的生产和产品质量。如果所有屠宰场都配备了 VIA 机器,则可以相对容易地收集 VIA 性状的表型。当前的研究和未来的全基因组关联研究可能有助于确定潜在的信息分子标记,这些标记解释了在 VIA 测量的胴体性状中观察到的大部分遗传变异。在估计育种值时包含这些信息可以提高预测的准确性,从而增加产品质量的遗传改进潜力。本研究证实了所研究胴体性状的多基因结构,少数分子标记每个标记解释了少量的遗传变异。建议在不同的品种类型中进行进一步的研究,以进一步测试和验证与羔羊胴体质量相关的性状的分子标记,如通过视频图像分析进行测量。

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