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组学时代推进水产养殖遗传改良:美国水产养殖的现状与优先事项

Advancing genetic improvement in the omics era: status and priorities for United States aquaculture.

作者信息

Andersen Linnea K, Thompson Neil F, Abernathy Jason W, Ahmed Ridwan O, Ali Ali, Al-Tobasei Rafet, Beck Benjamin H, Calla Bernarda, Delomas Thomas A, Dunham Rex A, Elsik Christine G, Fuller S Adam, García Julio C, Gavery Mackenzie R, Hollenbeck Christopher M, Johnson Kevin M, Kunselman Emily, Legacki Erin L, Liu Sixin, Liu Zhanjiang, Martin Brittany, Matt Joseph L, May Samuel A, Older Caitlin E, Overturf Ken, Palti Yniv, Peatman Eric J, Peterson Brian C, Phelps Michael P, Plough Louis V, Polinski Mark P, Proestou Dina A, Purcell Catherine M, Quiniou Sylvie M A, Raymo Guglielmo, Rexroad Caird E, Riley Kenneth L, Roberts Steven B, Roy Luke A, Salem Mohamed, Simpson Kelly, Waldbieser Geoffrey C, Wang Hanping, Waters Charles D, Reading Benjamin J

机构信息

USDA-ARS Aquatic Animal Health Research Unit, Auburn, AL, USA.

USDA-ARS Pacific Shellfish Research Unit, Newport, OR, USA.

出版信息

BMC Genomics. 2025 Feb 17;26(1):155. doi: 10.1186/s12864-025-11247-z.

Abstract

BACKGROUND

The innovations of the "Omics Era" have ushered in significant advancements in genetic improvement of agriculturally important animal species through transforming genetics, genomics and breeding strategies. These advancements were often coordinated, in part, by support provided over 30 years through the 1993-2023 National Research Support Project 8 (NRSP8, National Animal Genome Research Program, NAGRP) and affiliate projects focused on enabling genomic discoveries in livestock, poultry, and aquaculture species. These significant and parallel advances demand strategic planning of future research priorities. This paper, as an output from the May 2023 Aquaculture Genomics, Genetics, and Breeding Workshop, provides an updated status of genomic resources for United States aquaculture species, highlighting major achievements and emerging priorities.

MAIN TEXT

Finfish and shellfish genome and omics resources enhance our understanding of genetic architecture and heritability of performance and production traits. The 2023 Workshop identified present aims for aquaculture genomics/omics research to build on this progress: (1) advancing reference genome assembly quality; (2) integrating multi-omics data to enhance analysis of production and performance traits; (3) developing resources for the collection and integration of phenomics data; (4) creating pathways for applying and integrating genomics information across animal industries; and (5) providing training, extension, and outreach to support the application of genome to phenome. Research focuses should emphasize phenomics data collection, artificial intelligence, identifying causative relationships between genotypes and phenotypes, establishing pathways to apply genomic information and tools across aquaculture industries, and an expansion of training programs for the next-generation workforce to facilitate integration of genomic sciences into aquaculture operations to enhance productivity, competitiveness, and sustainability.

CONCLUSION

This collective vision of applying genomics to aquaculture breeding with focus on the highlighted priorities is intended to facilitate the continued advancement of the United States aquaculture genomics, genetics and breeding research community and industries. Critical challenges ahead include the practical application of genomic tools and analytical frameworks beyond academic and research communities that require collaborative partnerships between academia, government, and industry. The scope of this review encompasses the use of omics tools and applications in the study of aquatic animals cultivated for human consumption in aquaculture settings throughout their life-cycle.

摘要

背景

“组学时代”的创新通过改变遗传学、基因组学和育种策略,在重要农业动物物种的遗传改良方面取得了重大进展。这些进展在一定程度上常常得益于1993年至2023年期间通过国家研究支持项目8(NRSP8,国家动物基因组研究计划,NAGRP)以及专注于在牲畜、家禽和水产养殖物种中实现基因组发现的附属项目提供的30多年支持。这些重大且并行的进展需要对未来的研究重点进行战略规划。本文作为2023年5月水产养殖基因组学、遗传学和育种研讨会的成果,提供了美国水产养殖物种基因组资源的最新状况,突出了主要成就和新出现的重点。

正文

鱼类和贝类的基因组及组学资源增进了我们对生产性能和生产性状的遗传结构及遗传力的理解。2023年研讨会确定了基于这一进展的水产养殖基因组学/组学研究当前目标:(1)提高参考基因组组装质量;(2)整合多组学数据以加强对生产和性能性状的分析;(3)开发用于收集和整合表型组学数据的资源;(4)创建在动物产业中应用和整合基因组信息的途径;(5)提供培训、推广和外展服务以支持从基因组到表型组的应用。研究重点应强调表型组学数据收集、人工智能、确定基因型与表型之间的因果关系、建立在水产养殖行业中应用基因组信息和工具的途径,以及扩大针对下一代劳动力的培训项目,以促进基因组科学融入水产养殖作业,从而提高生产力、竞争力和可持续性。

结论

这种将基因组学应用于水产养殖育种的共同愿景,聚焦于突出的重点,旨在促进美国水产养殖基因组学、遗传学和育种研究界及产业的持续进步。未来面临的关键挑战包括基因组工具和分析框架在学术和研究界之外的实际应用,这需要学术界、政府和产业之间的合作关系。本综述的范围涵盖组学工具在整个生命周期内用于水产养殖中供人类消费的养殖水生动物研究的使用和应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/63a0/11834649/d44080b6457e/12864_2025_11247_Fig1_HTML.jpg

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