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首页> 外文期刊>Journal of Thermal Biology >Is it advantageous for Atlantic salmon to be triploid at lower temperatures?
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Is it advantageous for Atlantic salmon to be triploid at lower temperatures?

机译:大西洋鲑鱼是在较低温度下的三倍体吗?

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Marine organisms living at low temperatures tend to have larger genomes and larger cells which suggest that these traits can be beneficial in colder environments. In fish, triploidy (three complete sets of chromosomes) can be induced experimentally following fertilization, which provides a model system to investigate the hypothesis that larger cells and genomes offers a physiological advantage at low temperatures. We tested this hypothesis by measuring metabolic rates and swimming performance of diploid and triploid Atlantic salmon (Salmo solar) post smolts acclimated to 3 or 10.5 degrees C. At 10.5 degrees C, triploids had significantly lower maximum metabolic rates which resulted in a lower aerobic scope compared to diploids. In addition, triploids initiated ram ventilation at lower swimming speeds, providing further evidence of a reduced capacity to meet oxygen demands during strenuous activity at 10.5 degrees C. However, at 3 degrees C, metabolic rates and critical swimming speeds were similar between both ploidies, and as expected substantially lower than at 10.5 degrees C. Therefore, triploidy in colder environments did not provide any advantage over diploidy in terms of metabolic rate traits or swimming performance in Atlantic salmon. We therefore conclude that traits, other than aerobic scope and swimming performance, contribute to the trend for increased cell and genome size in marine ectotherms living in cold environments.
机译:生活在低温下的海洋生物倾向于具有更大的基因组和较大的细胞,表明这些特征在更冷的环境中可能是有益的。在鱼类中,三倍体(三组成套染色体)可以通过施肥进行实验诱导,这提供了一种模型系统,以研究较大的细胞和基因组在低温下提供生理优势的假设。我们通过测量二倍体和三倍体大西洋鲑鱼(Salmo Solar)的代谢速率和游泳性能来测试这一假设,其熔渣适应3或10.5℃。在10.5摄氏度下,三倍体具有显着降低的最大代谢率,导致有氧范围下降与二倍体相比。此外,三倍体在较低的游泳速度下启动了RAM通风,提供了在10.5℃下剧烈活动期间满足氧需求的降低能力的进一步证据。然而,在3摄氏度下,两种倍增剂之间的代谢率和临界游泳速度相似。因此,预期基本上低于10.5℃。因此,在较冷的环境中的三倍体在代谢率特征或大西洋鲑鱼中的游泳表现方面没有提供任何优势。因此,我们得出结论,除了有氧范围和游泳性能之外,特征是促进生活在寒冷环境中的海洋疗法中细胞和基因组大小的趋势。

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