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首页> 外文期刊>Canadian Journal of Zoology >Changes in ventilation, metabolism, and behaviour, but not bradycardia, contribute to hypoxia survival in two species of Amazonian armoured catfish
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Changes in ventilation, metabolism, and behaviour, but not bradycardia, contribute to hypoxia survival in two species of Amazonian armoured catfish

机译:通气,新陈代谢和行为的变化(而非心动过缓)改变了两种亚马逊Amazon鱼的低氧存活率

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Amazonian armoured catfishes exhibit substantial cardiac hypoxia tolerance, but little is known concerning organismal cardiorespiratory, metabolic, and behavioural responses to low oxygen levels. This study assessed the general mechanisms used by two species of armoured catfish, Glyptoperichthyes gibbceps and Liposarcus pardalis, to survive the frequent periods of hypoxia encountered in the Amazon River. The gill ventilation rate (f(v)) and heart rate (f(h)) were studied under controlled hypoxia in aquaria and under natural hypoxia in a simulated pond. Glyptoperichthyes gibbceps were fitted with radiotelemetry tags and held in field cages to study their habits of depth selection and air breathing. When denied aerial respiration under hypoxia in aquaria, G. gibbceps increased f(v), but neither they nor L. pardalis exhibited alterations in f(h). An increase in f(v) was initially observed in G. gibbceps during pond hypoxia before aerial respiration was initiated and f(v) declined. Glyptoperichthyes gibbceps were hyperglycaemic under normoxia, and extremely large increases in plasma glucose and lactate concentrations were observed under hypoxia. Field studies confirmed their nocturnal behaviour and showed that air breathing increased at night, regardless of dissolved oxygen concentration. Our results show that armoured catfishes preferentially up-regulate f(v) and anaerobic metabolism and exhibit no bradycardia during hypoxia.
机译:亚马孙装甲cat鱼具有较强的心脏低氧耐受性,但对机体心肺,代谢和低氧水平的行为反应知之甚少。这项研究评估了两种装甲cat鱼Glyptoperichthyes gibbceps和Liposarcus pardalis使用的一般机制,以使其在亚马逊河遇到的频繁缺氧时期中生存。在水族馆的受控缺氧条件下和模拟池塘的自然缺氧条件下研究通风量(f(v))和心率(f(h))。 Glyptoperichthyes gibbceps装有无线电遥测标签,并关在野外笼中,以研究其深度选择和呼吸的习惯。当在水族馆缺氧条件下拒绝空中呼吸时,G。gibbceps会增加f(v),但它们和par。L. pardalis均未表现出f(h)的变化。最初在池塘低氧期间在长臂猿吉卜赛菌中观察到f(v)升高,然后开始进行空中呼吸,f(v)下降。常氧条件下的鹰嘴豆科高血糖症,低氧条件下血浆葡萄糖和乳酸浓度显着增加。现场研究证实了它们的夜间行为,并表明,无论溶解氧浓度如何,夜间空气呼吸都会增加。我们的结果表明,装甲cat鱼在缺氧时优先上调f(v)和无氧代谢,并且没有心动过缓。

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