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高原裂腹鱼(Schizopygopsis pylzovi)中血红蛋白表达对低氧的响应变化

Changes of hemoglobin expression in response to hypoxia in a Tibetan schizothoracine fish, Schizopygopsis pylzovi.

作者信息

Xia Mingzhe, Chao Yan, Jia Jianlei, Li Changzhong, Kong Qinghui, Zhao Yongli, Guo Songchang, Qi Delin

机构信息

State Key Laboratory of Plateau Ecology and Agriculture, Qinghai University, Xining, 810016, China.

College of Eco-Environmental Engineering, Qinghai University, Xining, 810016, China.

出版信息

J Comp Physiol B. 2016 Dec;186(8):1033-1043. doi: 10.1007/s00360-016-1013-1. Epub 2016 Jul 16.

Abstract

Fishes endemic to the Qinghai-Tibetan Plateau are comparatively well adapted to aquatic environments with low oxygen partial pressures (hypoxia). Here, we cloned the complete cDNA of hemoglobin (Hb) α and β from the Tibetan schizothoracine fish Schizopygopsis pylzovi, and then investigated changes in Hb mRNA and protein levels in spleen, liver and kidney in response to hypoxia. We applied severe hypoxia (4 h at PO = 0.6 kPa) and moderate hypoxia (72 h at PO = 6.0 kPa) to adult S. pylzovi. Changes of Hb expression under hypoxia, together with the investigations of spleen somatic index, kidney somatic index and Hb concentration in circulation, suggest that the kidney may not only serve as the erythropoietic organ, but also act as the major blood reservoir in S. pylzovi. From this perspective, the transcriptional activity of Hb in S. pylzovi, as reflected in the kidney, was turned down quickly after the onset of severe hypoxia, while under moderate hypoxia the transcriptional activity of Hb showed upregulation for a short time, but then the transcriptional machinery was turned down slowly on prolonged exposure. Notably, the changes in Hb protein levels in spleen, liver and kidney in response to severe and moderate hypoxia were not in line with the changes in mRNA levels, which are related with the blood reservoir in the kidney. Tibetan schizothoracine fish, at least S. pylzovi, show a particular response of the transcription regulation of Hb to moderate hypoxia, which is different from that of other fish species.

摘要

青藏高原特有的鱼类相对较好地适应了低氧分压(缺氧)的水生环境。在此,我们克隆了西藏裂腹鱼裂峡尻鱼血红蛋白(Hb)α和β的完整cDNA,然后研究了脾脏、肝脏和肾脏中Hb mRNA和蛋白质水平在缺氧条件下的变化。我们对成年裂峡尻鱼施加了严重缺氧(PO₂ = 0.6 kPa,持续4小时)和中度缺氧(PO₂ = 6.0 kPa,持续72小时)。缺氧条件下Hb表达的变化,以及对脾脏体指数、肾脏体指数和循环中Hb浓度的研究表明,肾脏不仅可能是红细胞生成器官,还可能是裂峡尻鱼的主要血液储存器官。从这个角度来看,严重缺氧开始后,裂峡尻鱼肾脏中反映的Hb转录活性迅速下降,而在中度缺氧条件下,Hb转录活性在短时间内上调,但在长时间暴露后转录机制缓慢下调。值得注意的是,脾脏、肝脏和肾脏中Hb蛋白质水平对严重和中度缺氧的反应与mRNA水平的变化不一致,这与肾脏中的血液储存有关。西藏裂腹鱼,至少裂峡尻鱼,对中度缺氧表现出Hb转录调控的特殊反应,这与其他鱼类不同。

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