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水产养殖中的基因组选择:特别提及海水虾和珍珠牡蛎的应用、局限性与机遇

Genomic Selection in Aquaculture: Application, Limitations and Opportunities With Special Reference to Marine Shrimp and Pearl Oysters.

作者信息

Zenger Kyall R, Khatkar Mehar S, Jones David B, Khalilisamani Nima, Jerry Dean R, Raadsma Herman W

机构信息

Centre for Sustainable Tropical Fisheries and Aquaculture, College of Science and Engineering, James Cook University, Townsville, QLD, Australia.

ARC Research Hub for Advanced Prawn Breeding, James Cook University, Townsville, QLD, Australia.

出版信息

Front Genet. 2019 Jan 23;9:693. doi: 10.3389/fgene.2018.00693. eCollection 2018.

Abstract

Within aquaculture industries, selection based on genomic information (genomic selection) has the profound potential to change genetic improvement programs and production systems. Genomic selection exploits the use of realized genomic relationships among individuals and information from genome-wide markers in close linkage disequilibrium with genes of biological and economic importance. We discuss the technical advances, practical requirements, and commercial applications that have made genomic selection feasible in a range of aquaculture industries, with a particular focus on molluscs (pearl oysters, ) and marine shrimp ( and ). The use of low-cost genome sequencing has enabled cost-effective genotyping on a large scale and is of particular value for species without a reference genome or access to commercial genotyping arrays. We highlight the pitfalls and offer the solutions to the genotyping by sequencing approach and the building of appropriate genetic resources to undertake genomic selection from first-hand experience. We describe the potential to capture large-scale commercial phenotypes based on image analysis and artificial intelligence through machine learning, as inputs for calculation of genomic breeding values. The application of genomic selection over traditional aquatic breeding programs offers significant advantages through being able to accurately predict complex polygenic traits including disease resistance; increasing rates of genetic gain; minimizing inbreeding; and negating potential limiting effects of genotype by environment interactions. Further practical advantages of genomic selection through the use of large-scale communal mating and rearing systems are highlighted, as well as presenting rate-limiting steps that impact on attaining maximum benefits from adopting genomic selection. Genomic selection is now at the tipping point where commercial applications can be readily adopted and offer significant short- and long-term solutions to sustainable and profitable aquaculture industries.

摘要

在水产养殖业中,基于基因组信息的选择(基因组选择)具有深刻潜力,能够改变遗传改良计划和生产系统。基因组选择利用个体间已实现的基因组关系以及与具有生物学和经济重要性的基因处于紧密连锁不平衡状态的全基因组标记信息。我们讨论了使基因组选择在一系列水产养殖业中可行的技术进步、实际要求和商业应用,特别关注软体动物(珍珠牡蛎等)和海水虾(如[具体虾类品种1]和[具体虾类品种2])。低成本基因组测序的应用使得大规模的经济高效基因分型成为可能,对于没有参考基因组或无法使用商业基因分型阵列的物种具有特别价值。我们根据第一手经验,强调了测序基因分型方法的陷阱并提供了解决方案,以及构建适当的遗传资源以进行基因组选择。我们描述了通过机器学习基于图像分析和人工智能捕获大规模商业表型的潜力,作为计算基因组育种值的输入。与传统水产育种计划相比,基因组选择的应用具有显著优势,能够准确预测包括抗病性在内的复杂多基因性状;提高遗传增益率;最大限度减少近亲繁殖;消除基因型与环境相互作用的潜在限制影响。还强调了通过使用大规模群体交配和养殖系统进行基因组选择的进一步实际优势,以及提出了影响从采用基因组选择中获得最大效益的限速步骤。基因组选择目前正处于临界点,商业应用可以很容易地采用,并为可持续和盈利的水产养殖业提供重大的短期和长期解决方案。

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