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Cardiac plasticity in fishes: environmental influences and intraspecific differences

机译:鱼类的心脏可塑性:环境影响和种内差异

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摘要

Fish cardiac physiology and anatomy show a multiplicity of intraspecific modifications when exposed to prolonged changes in environmentally relevant parameters such as temperature, hypoxia and food availability, and when meeting the increased demands associated with training/increased activity and sexual maturation. Further, there is evidence that rearing fish under intensive aquaculture conditions significantly alters some, but not all, aspects of cardiac anatomy and physiology. This review focuses on the responses of cardiac physiology and anatomy to these challenges, highlighting where applicable, the importance of hyperplastic (i.e. the production of new cells) vs hypertrophic (the enlargement of existing cells) growth to the adaptive response of the heart. In addition, we summarize recent studies that have explored the relationship between the myocardial protection afforded by preconditioning and myocardial hypoxia tolerance. This latter research clearly demonstrates the capacity of the fish heart to adjust to short-term perturbations, and shows that it can be difficult to predict how short-term and long-term alterations in cardiac physiology will interact.
机译:当暴露于环境相关参数(例如温度,缺氧和食物供应)的长期变化中,并且满足与训练/活动量增加和性成熟相关的需求增加时,鱼的心脏生理学和解剖学表现出多种种内修饰。此外,有证据表明,在集约化水产养殖条件下养鱼会显着改变心脏解剖学和生理学的某些而非全部方面。这篇综述着重于心脏生理学和解剖学对这些挑战的反应,强调了在适用的情况下增生(即新细胞的产生)与肥大性(现有细胞的扩大)生长对心脏适应性反应的重要性。此外,我们总结了最近的研究,这些研究探索了预处理提供的心肌保护与心肌耐缺氧性之间的关系。后者的研究清楚地表明了鱼心脏适应短期摄动的能力,并表明很难预测心脏生理学的短期和长期变化将如何相互作用。

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