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萨尔雷克松将大西洋鲑鱼基因组与生长和饲料效率联系起来。

SALARECON connects the Atlantic salmon genome to growth and feed efficiency.

机构信息

Faculty of Chemistry, Biotechnology and Food Science, Norwegian University of Life Sciences (NMBU), Ås, Norway.

Faculty of Biosciences, Norwegian University of Life Sciences (NMBU), Ås, Norway.

出版信息

PLoS Comput Biol. 2022 Jun 10;18(6):e1010194. doi: 10.1371/journal.pcbi.1010194. eCollection 2022 Jun.

Abstract

Atlantic salmon (Salmo salar) is the most valuable farmed fish globally and there is much interest in optimizing its genetics and rearing conditions for growth and feed efficiency. Marine feed ingredients must be replaced to meet global demand, with challenges for fish health and sustainability. Metabolic models can address this by connecting genomes to metabolism, which converts nutrients in the feed to energy and biomass, but such models are currently not available for major aquaculture species such as salmon. We present SALARECON, a model focusing on energy, amino acid, and nucleotide metabolism that links the Atlantic salmon genome to metabolic fluxes and growth. It performs well in standardized tests and captures expected metabolic (in)capabilities. We show that it can explain observed hypoxic growth in terms of metabolic fluxes and apply it to aquaculture by simulating growth with commercial feed ingredients. Predicted limiting amino acids and feed efficiencies agree with data, and the model suggests that marine feed efficiency can be achieved by supplementing a few amino acids to plant- and insect-based feeds. SALARECON is a high-quality model that makes it possible to simulate Atlantic salmon metabolism and growth. It can be used to explain Atlantic salmon physiology and address key challenges in aquaculture such as development of sustainable feeds.

摘要

大西洋鲑(Salmo salar)是全球最有价值的养殖鱼类,人们非常关注优化其遗传和饲养条件,以提高生长速度和饲料效率。为了满足全球需求,必须用其他海洋饲料成分替代,这给鱼类健康和可持续性带来了挑战。代谢模型可以通过将基因组与代谢联系起来解决这个问题,代谢将饲料中的营养物质转化为能量和生物量,但目前还没有针对鲑鱼等主要水产养殖物种的此类模型。我们提出了 SALARECON,这是一个专注于能量、氨基酸和核苷酸代谢的模型,它将大西洋鲑的基因组与代谢通量和生长联系起来。它在标准化测试中表现良好,并能捕捉到预期的代谢(不)能力。我们表明,它可以根据代谢通量来解释缺氧生长,并通过模拟商业饲料成分下的生长来应用于水产养殖。预测的限制氨基酸和饲料效率与数据一致,该模型表明,通过向植物和昆虫饲料中添加几种氨基酸,可以实现海洋饲料的高效率。SALARECON 是一个高质量的模型,它使模拟大西洋鲑代谢和生长成为可能。它可以用于解释大西洋鲑的生理学,并解决水产养殖中的关键挑战,如可持续饲料的开发。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/28e9/9223387/fd3fff03044a/pcbi.1010194.g001.jpg

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