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首页> 外文期刊>Journal of Thermal Biology >Hypoxia reduced upper thermal limits causing cellular and nuclear abnormalities of erythrocytes in Nile tilapia, Oreochromis niloticus
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Hypoxia reduced upper thermal limits causing cellular and nuclear abnormalities of erythrocytes in Nile tilapia, Oreochromis niloticus

机译:缺氧降低了上热限制,导致尼罗拉吡菌尼洛亚尼洛替氏菌的红细胞细胞和核异常

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Global warming is a threat across the world that leads to estimates of the upper thermal limits of ectothermic species. Increased water temperature up-regulates oxygen consumption and metabolic rates, and alters the physiological processes. In this study, we identified the critical thermal maxima (CTmax) and physiological responses under normoxia and hypoxia in Nile tilapia, Oreochromis niloticus. CTmax was 41.25 degrees C under hypoxia and 44.50 degrees C under normoxia. Compared to normoxia, lower values of hemoglobin (Hb) and red blood cells (RBCs) were observed at the CTmax under hypoxia. In contrast, higher values of white blood cells (WBCs) and blood glucose (Glu) levels were observed at the CTmax under hypoxia. Consequently, higher frequencies of micronucleus, cellular and nuclear abnormalities of erythrocytes were observed at the CTmax under hypoxia. These results suggest that high temperature tolerance and subsequent physiology are significantly affected by the oxygen supply in Nile tilapia. As climate vulnerability is intensifying day by day, this data will be helpful in successful management practice for the aquatic environment having low oxygen content.
机译:全球变暖是世界各地的威胁,导致卵巢物种的上热限制估计。增加水温上调氧气消耗和代谢速率,并改变生理过程。在这项研究中,我们确定了尼罗罗非鱼Nileochromis Niloticus的夜总会和缺氧下的临界热敏马克西姆(CTMAX)和生理反应。缺氧下的Ctmax为41.25摄氏度,常氧基44.50℃。与源极氧化相比,在缺氧下的CTMAX下观察到血红蛋白(HB)和红细胞(RBC)的较低值。相反,在缺氧下的CTmax下观察到更高的白细胞(WBC)和血糖(Glu)水平。因此,在缺氧下的Ctmax下观察到较高频率的微核,细胞和核细胞的细胞,细胞和核异常。这些结果表明,尼罗罗非鱼的氧气供应显着影响了高温耐受性和随后的生理学。随着气候脆弱性在日益增强,此数据将有助于成功的氧气含量的水生环境管理实践。

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