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Molecular ecophysiology of Antarctic notothenioid fishes

机译:南极类胡萝卜素鱼类的分子生态生理学

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摘要

The notothenioid fishes of the Southern Ocean surrounding Antarctica are remarkable examples of organismal adaptation to extreme cold. Their evolution since the mid-Miocene in geographical isolation and a chronically cold marine environment has resulted in extreme stenothermality of the extant species. Given the unique thermal history of the notothenioids, one may ask what traits have been gained, and conversely, what characters have been lost through change in the information content of their genomes. Two dramatic changes that epitomize such evolutionary transformations are the gain of novel antifreeze proteins, which are obligatory for survival in icy seawater, by most notothenioids and the paradoxical loss of respiratory haemoproteins and red blood cells, normally deemed indispensable for vertebrate life, by the species of a highly derived notothenioid family, the icefishes. Here, we review recent advances in our understanding of these traits and their evolution and suggest future avenues of investigation.
机译:南极洲南部海洋中的类胡萝卜素鱼类是机体适应极端寒冷的杰出例子。自中新世中期以来,它们在地理隔离和长期寒冷的海洋环境中的演变导致现存物种极度狭窄。考虑到类胡萝卜素的独特热史,人们可能会问,已经获得了哪些特征,反之,由于其基因组信息含量的变化而失去了哪些特征。体现这种进化转变的两个重大变化是,大多数类异戊二烯类化合物获得了在冰冷的海水中生存所必需的新型抗冻蛋白,而该物种通常认为这对于脊椎动物的生活是不可缺少的呼吸血红蛋白和红细胞的自相矛盾。一种高度衍生的类异戊二烯家族,即冰鱼。在这里,我们回顾了对这些特征及其演变的理解的最新进展,并提出了未来的研究途径。

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