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评估在淡水湖和循环水系统中养殖的大西洋鲑鱼的基因型-环境相互作用。

Assessing genotype-environment interactions in Atlantic salmon reared in freshwater loch and recirculating systems.

作者信息

Tollervey Mette J, Bekaert Michaël, González Agustín Barría, Agha Saif, Houston Ross D, Doeschl-Wilson Andrea, Norris Ashie, Migaud Herve, Gutierrez Alejandro P

机构信息

Institute of Aquaculture University of Stirling Stirling UK.

Cooke Aquaculture Scotland, Avondale House, Strathclyde Business Park Bellshill UK.

出版信息

Evol Appl. 2024 Aug 9;17(8):e13751. doi: 10.1111/eva.13751. eCollection 2024 Aug.

Abstract

The interest in recirculating aquaculture systems (RAS) is growing due to their benefits such as increased productivity, better control over animal care, reduced environmental effects, and less water consumption. However, in some regions of the world, traditional aquaculture methods remain prevalent, and selective breeding has often been designed for performance within these systems. Therefore, it is important to evaluate how current fish populations fare in RAS to guide future breeding choices. In a commercial setting, we explore the genetic structure of growth characteristics, measure genotype-environment interactions (GxE) in salmon smolts, and examine genetic markers related to growth in freshwater lochs and RAS. Young salmon were raised together until they reached the parr stage, after which they were divided equally between freshwater net-pens and RAS. After an 8-week period, we sampled fish from each environment and genotyped them. Our findings revealed that fish reared in RAS were generally smaller in weight and length but exhibited a higher condition factor and uniformity. We found a notably smaller component of unexplained variance in the RAS, leading to higher heritability estimates. We observed a low GxE effect for length and condition factor, but significant re-ranking for whole-body weight, as well as noticeable differences in trait associations across environments. Specifically, a segment of chromosome 22 was found to be linked with the condition factor in the RAS population only. Results suggests that if the use of RAS continues to expand, the efficiency of existing commercial populations may not reach its full potential unless breeding programs specific to RAS are implemented.

摘要

由于循环水养殖系统(RAS)具有提高生产力、更好地控制动物饲养、减少环境影响和降低用水量等优点,人们对其兴趣日益浓厚。然而,在世界某些地区,传统养殖方法仍然普遍存在,而且选择性育种往往是针对这些系统中的性能进行设计的。因此,评估当前鱼类种群在RAS中的表现对于指导未来的育种选择非常重要。在商业环境中,我们探究了生长特征的遗传结构,测量了鲑鱼幼鱼的基因型-环境互作(GxE),并研究了与淡水湖和RAS中生长相关的遗传标记。幼鲑一起饲养至幼鱼阶段,之后将它们平均分配到淡水网箱和RAS中。经过8周的时间,我们从每个环境中采集鱼样本并进行基因分型。我们的研究结果表明,在RAS中饲养的鱼体重和体长通常较小,但具有更高的肥满度和均匀度。我们发现RAS中无法解释的变异成分明显较小,导致遗传力估计值更高。我们观察到体长和肥满度的GxE效应较低,但全身重量有显著的重新排序,并且不同环境下性状关联存在明显差异。具体而言,仅在RAS群体中发现22号染色体的一个片段与肥满度相关。结果表明,如果RAS的使用继续扩大,除非实施针对RAS的育种计划,否则现有商业种群的效率可能无法充分发挥其潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bb38/11310769/a589cfda895c/EVA-17-e13751-g001.jpg

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