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Molecular Characterization and Expression of α-Globin and β-Globin Genes in the Euryhaline Flounder (Platichthys flesus)

机译:大戟比目鱼(Platichthys flesus)中α-球蛋白和β-球蛋白基因的分子表征和表达

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摘要

In order to understand the possible role of globin genes in fish salinity adaptation, we report the molecular characterization and expression of all four subunits of haemoglobin, and their response to salinity challenge in flounder. The entire open reading frames of α1-globin and α2-globin genes were 432 and 435 bp long, respectively, whereas the β1-globin and β2-globin genes were both 447 bp. Although the head kidney (pronephros) is the predicted major site of haematopoiesis, real-time PCR revealed that expression of α-globin and β-globin in kidney (mesonephros) was 1.5 times higher than in head kidney. Notably, the α1-globin and β1-globin mRNA expression was higher than α2-globin and β2-globin in kidney. Expression levels of all four globin subunits were higher in freshwater- (FW-) than in seawater- (SW-)adapted fish kidney. If globins do play a role in salinity adaptation, this is likely to be more important in combating the hemodilution faced by fish in FW than the dehydration and salt loading which occur in SW.
机译:为了了解球蛋白基因在鱼类盐度适应中的可能作用,我们报道了血红蛋白的所有四个亚基的分子表征和表达,以及它们对比目鱼盐度挑战的反应。 α1-球蛋白和α2-球蛋白基因的整个开放阅读框分别长432和435 bp,而β1-球蛋白和β2-球蛋白基因均为447 bp。尽管头肾(前肾)是造血功能的主要预测部位,但实时PCR显示,肾脏(中肾)中α-珠蛋白和β-珠蛋白的表达是头肾的1.5倍。值得注意的是,肾脏中α1-球蛋白和β1-球蛋白的mRNA表达高于α2-球蛋白和β2-球蛋白。在淡水(FW-)中,所有四个球蛋白亚基的表达水平均高于在海水((SW))中适应的鱼肾。如果珠蛋白确实在盐分适应中发挥作用,那么在对抗鱼类在鱼类体内所面临的血液稀释中,这可能比西南部的脱水和盐分负荷更为重要。

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