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Hemoglobin genotype has minimal influence on the physiological response of juvenile atlantic cod (Gadus morhua) to environmental challenges

机译:血红蛋白基因型对大西洋鳕鱼(Gadus morhua)对环境挑战的生理反应影响最小

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摘要

Hemoglobin (Hb) polymorphism in cod is associated with temperature‐related differences in biogeographical distribution, and several authors have suggested that functional characteristics of the various hemoglobin isoforms (HbIs) directly influence phenotypic traits such as growth rate. However, no study has directly examined whether Hb genotype translates into physiological differences at the whole animal level. Thus, we generated a family of juvenile Atlantic cod consisting of all three main Hb genotypes (HbI‐1/1, HbI‐2/2, and HbI‐1/2) by crossing a single pair of heterozygous parents, and we compared their metabolic and cortisol responses to an acute thermal challenge (10°C to their critical thermal maximum [CTM] or 22°C, respectively) and tolerance of graded hypoxia. There were no differences in routine metabolism (at 10°C), maximum metabolic rate, metabolic scope, CTM (overall mean 22.9° ± 0.2°C), or resting and poststress plasma cortisol levels among Hb genotypes. Further, although the HbI‐1/1 fish grew more (by 15%–30% during the first 9 mo) when reared at 10° ± 1°C and had a slightly enhanced hypoxia tolerance at 10°C (e.g., the critical O2 levels for HbI‐1/1, HbI‐2/2, and HbI‐1/2 cod were 35.56% ± 1.24%, and 40.20% ± 1.99% air saturation, respectively), these results are contradictory to expectations based on HbI functional properties. Thus, our findings (1) do not support previous assumptions that growth rate differences among cod Hb genotypes result from a more efficient use of the oxygen supply—that is, reduced standard metabolic rates and/or increased metabolic capacity—and (2) suggest that in juvenile cod, there is no selective advantage to having a particular Hb genotype with regards to the capacity to withstand ecologically relevant environmental challenges.
机译:鳕鱼中的血红蛋白(Hb)多态性与生物地理分布中与温度相关的差异有关,几位作者建议各种血红蛋白同工型(HbIs)的功能特征直接影响表型性状,例如生长速率。但是,没有研究直接检查Hb基因型是否在整个动物水平上转化为生理差异。因此,我们通过杂交一对杂合子亲本,产生了一个由所有三种主要的Hb基因型(HbI-1,HbI-2 / 2和HbI1 / 2)组成的大西洋大西洋鳕鱼家族,并对其进行了比较。代谢和皮质醇对急性热挑战(分别至其临界热最大值[CTM]或22°C的10°C)和分级缺氧耐受性的反应。在Hb基因型之间,常规代谢(在10°C时),最大代谢率,代谢范围,CTM(总体平均22.9°±0.2°C)或静息和应激后血浆皮质醇水平无差异。此外,尽管在10°±1°C饲养时,HbI-1 / 1鱼生长更快(在前9个月内增加了15%–30%),并且在10°C时耐缺氧性略有增强(例如,临界HbI-1 / 1,HbI-2 / 2和HbI-11 / 2鳕鱼的O2含量分别为35.56%±1.24%和40.20%±1.99%空气饱和度),这些结果与基于HbI的预期相矛盾功能特性。因此,我们的发现(1)不支持以前的假设,即鳕鱼Hb基因型之间的生长率差异是由于氧气供应的更有效利用导致的,即标准代谢率降低和/或新陈代谢能力增强,并且(2)建议在少年鳕鱼中,具有特定的Hb基因型在抵御生态相关环境挑战的能力方面没有选择优势。

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