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重要鲤科鱼类的遗传改良与基因组资源:可持续生产的现状与未来展望

Genetic improvement and genomic resources of important cyprinid species: status and future perspectives for sustainable production.

作者信息

Rasal Kiran D, Kumar Pokanti Vinay, Risha Shasti, Asgolkar Prachi, Harshavarthini M, Acharya Arpit, Shinde Siba, Dhere Siyag, Rasal Avinash, Sonwane Arvind, Brahmane Manoj, Sundaray Jitendra K, Nagpure Naresh

机构信息

ICAR - Central Institute of Fisheries Education, Mumbai, Maharashtra, India.

ICAR - Central Institute of Freshwater Aquaculture, Bhubaneswar, Odisha, India.

出版信息

Front Genet. 2024 Sep 19;15:1398084. doi: 10.3389/fgene.2024.1398084. eCollection 2024.

Abstract

Cyprinid species are the most cultured aquatic species around the world in terms of quantity and total value. They account for 25% of global aquaculture production and significantly contribute to fulfilling the demand for fish food. The aquaculture of these species is facing severe concerns in terms of seed quality, rising feed costs, disease outbreaks, introgression of exotic species, environmental impacts, and anthropogenic activities. Numerous researchers have explored biological issues and potential methods to enhance cyprinid aquaculture. Selective breeding is extensively employed in cyprinid species to enhance specific traits like growth and disease resistance. In this context, we have discussed the efforts made to improve important cyprinid aquaculture practices through genetic and genomic approaches. The recent advances in DNA sequencing technologies and genomic tools have revolutionized the understanding of biological research. The generation of a complete genome and other genomic resources in cyprinid species has significantly strengthened molecular-level investigations into disease resistance, growth, reproduction, and adaptation to changing environments. We conducted a comprehensive review of genomic research in important cyprinid species, encompassing genome, transcriptome, proteome, metagenome, epigenome, etc. This review reveals that considerable data has been generated for cyprinid species. However, the seamless integration of this valuable data into genetic selection programs has yet to be achieved. In the upcoming years, genomic techniques, gene transfer, genome editing tools are expected to bring a paradigm shift in sustainable cyprinid aquaculture production. The comprehensive information presented here will offer insights for the cyprinid aquaculture research community.

摘要

就数量和总价值而言,鲤科鱼类是全球养殖最多的水产养殖品种。它们占全球水产养殖产量的25%,并为满足鱼类食品需求做出了重大贡献。这些品种的水产养殖在苗种质量、饲料成本上升、疾病爆发、外来物种渗入、环境影响和人为活动等方面面临着严峻问题。众多研究人员探讨了生物学问题以及提高鲤科鱼类水产养殖的潜在方法。选择性育种在鲤科鱼类中被广泛应用,以增强生长和抗病性等特定性状。在此背景下,我们讨论了通过遗传和基因组方法改进重要鲤科鱼类水产养殖实践所做的努力。DNA测序技术和基因组工具的最新进展彻底改变了对生物学研究的理解。鲤科鱼类完整基因组和其他基因组资源的产生显著加强了对疾病抗性、生长、繁殖以及对不断变化环境的适应性的分子水平研究。我们对重要鲤科鱼类的基因组研究进行了全面综述,涵盖基因组、转录组、蛋白质组、宏基因组、表观基因组等。这篇综述表明,已经为鲤科鱼类产生了大量数据。然而,这些有价值的数据尚未无缝整合到遗传选择计划中。在未来几年,基因组技术、基因转移、基因组编辑工具有望给可持续鲤科鱼类水产养殖生产带来范式转变。这里呈现的全面信息将为鲤科鱼类水产养殖研究界提供见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d902/11446788/731b44aa25fc/fgene-15-1398084-g001.jpg

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