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Anoxia- and hypoxia-induced expression of LDH-A* in the Amazon Oscar, Astronotus crassipinis

机译:缺氧和低氧诱导的LDH-A *在亚马逊奥斯卡天牛座中的表达

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摘要

Adaptation or acclimation to hypoxia occurs via the modulation of physiologically relevant genes, such as erythropoietin, transferrin, vascular endothelial growth factor, phosphofructokinase and lactate dehydrogenase A. In the present study, we have cloned, sequenced and examined the modulation of the LDH-A gene after an Amazonian fish species, Astronotus crassipinis (the Oscar), was exposed to hypoxia and anoxia. In earlier studies, we have discovered that adults of this species are extremely tolerant to hypoxia and anoxia, while the juveniles are less tolerant. Exposure of juveniles to acute hypoxia and anoxia resulted in increased LDH-A gene expression in skeletal and cardiac muscles. When exposed to graded hypoxia juveniles show decreased LDH-A expression. In adults, the levels of LDH-A mRNA did not increase in hypoxic or anoxic conditions. Our results demonstrate that, when given time for acclimation, fish at different life-stages are able to respond differently to survive hypoxic episodes.
机译:通过调节生理相关基因(例如促红细胞生成素,转铁蛋白,血管内皮生长因子,磷酸果糖激酶和乳酸脱氢酶A)来适应或适应缺氧。在本研究中,我们已经克隆,测序并研究了LDH-A的调节亚马逊鱼类Astronotus crassipinis(奥斯卡)暴露于缺氧和缺氧之后的基因。在较早的研究中,我们发现该物种的成年动物对缺氧和缺氧的耐受性极强,而未成年人的耐受性较低。青少年接触急性缺氧和缺氧会导致骨骼肌和心肌中LDH-A基因表达增加。当暴露于分级缺氧状态时,少年显示出LDH-A表达降低。在成年人中,缺氧或缺氧条件下LDH-A mRNA的水平没有增加。我们的结果表明,在给定的适应时间后,处于不同生命阶段的鱼类对缺氧事件的生存能力会有不同的反应。

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