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GC bias lead to increased small amino acids and random coils of proteins in cold-water fishes

机译:GC偏见导致冷水鱼类中的小氨基酸增加和蛋白质的随机卷曲

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摘要

BackgroundTemperature adaptation of biological molecules is fundamental in evolutionary studies but remains unsolved. Fishes living in cold water are adapted to low temperatures through adaptive modification of their biological molecules, which enables their functioning in extreme cold. To study nucleotide and amino acid preference in cold-water fishes, we investigated the substitution asymmetry of codons and amino acids in protein-coding DNA sequences between cold-water fishes and tropical fishes., The former includes two Antarctic fishes, Dissostichus mawsoni (Antarctic toothfish), Gymnodraco acuticeps (Antarctic dragonfish), and two temperate fishes, Gadus morhua (Atlantic cod) and Gasterosteus aculeatus (stickleback), and the latter includes three tropical fishes, including Danio rerio (zebrafish), Oreochromis niloticus (Nile tilapia) and Xiphophorus maculatus (Platyfish).
机译:背景技术生物分子的温度适应是进化研究的基础,但仍未解决。生活在冷水中的鱼类通过对其生物分子的适应性调节而适应低温,这使它们在极端寒冷的环境中也能发挥作用。为了研究冷水鱼类的核苷酸和氨基酸偏好,我们研究了冷水鱼类和热带鱼类之间蛋白质编码DNA序列中密码子和氨基酸的取代不对称性。前者包括两条南极鱼类Dissostichus mawsoni(Antarctic牙鱼),裸藻(Gymnodraco acuticeps)(南极龙鱼),温带鱼(Gadus morhua)(大西洋鳕鱼)和Gasterosteus aculeatus(棘背鱼),后者包括三种热带鱼,包括Danio rerio(斑马鱼),Oreochromis niloticus(尼罗罗非鱼)和Xiphophorus maculatus(扁鱼)。

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