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Metabolic and physiological responses in tissues of the long-lived bivalve Arctica islandica to oxygen deficiency

机译:长寿双壳类小北极岛组织对缺氧的代谢和生理反应

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In Arctica islandica, a long lifespan is associated with low metabolic activity, and with a pronounced tolerance to low environmental oxygen. In order to study metabolic and physiological responses to low oxygen conditions vs. no oxygen in mantle, gill, adductor muscle and hemocytes of the ocean quahog, specimens from the German Bight were maintained for 3.5days under normoxia (21kPa=controls), hypoxia (2kPa) or anoxia (0kPa). Tissue levels of anaerobic metabolites octopine, lactate and succinate as well as specific activities of octopine dehydrogenase (ODH) and lactate dehydrogenase (LDH) were unaffected by hypoxic incubation, suggesting that the metabolism of A. islandica remains fully aerobic down to environmental oxygen levels of 2kPa. PO_2-dependent respiration rates of isolated gills indicated the onset of metabolic rate depression (MRD) below 5kPa in A. islandica, while anaerobiosis was switched on in bivalve tissues only at anoxia. Tissue-specific levels of glutathione (GSH), a scavenger of reactive oxygen species (ROS), indicate no anticipatory antioxidant response takes place under experimental hypoxia and anoxia exposure. Highest specific ODH activity and a mean ODH/LDH ratio of 95 in the adductor muscle contrasted with maximal specific LDH activity and a mean ODH/LDH ratio of 0.3 in hemocytes. These differences in anaerobic enzyme activity patterns indicate that LDH and ODH play specific roles in different tissues of A. islandica which are likely to economize metabolism during anoxia and reoxygenation.
机译:在小北极岛中,长寿命与低代谢活性有关,并且对低环境氧具有明显的耐受性。为了研究低氧条件下海藻的地幔,g,内收肌和血细胞中无氧而无氧的代谢和生理反应,将德国湾的标本在常氧(21kPa =对照),低氧( 2kPa)或缺氧(0kPa)。厌氧培养不会影响厌氧代谢产物章鱼碱,乳酸和琥珀酸的组织水平以及章鱼碱脱氢酶(ODH)和乳酸脱氢酶(LDH)的比活性,这表明小岛曲霉的代谢在低至环境氧水平下仍完全有氧2kPa。离体-的依赖于PO_2的呼吸速率表明岛曲霉(A. islandica)的代谢速率下降(MRD)低于5kPa,而仅在缺氧的情况下,双壳类组织才开始进行厌氧菌培养。谷胱甘肽(GSH)的组织特异性水平,一种活性氧(ROS)的清除剂,表明在实验性缺氧和缺氧条件下未发生预期的抗氧化反应。内收肌中最高的比ODH活性和平均ODH / LDH比为95,而血细胞中的最大比LDH活性和平均ODH / LDH比为0.3。厌氧酶活性模式的这些差异表明LDH和ODH在小岛曲霉的不同组织中起特定作用,它们可能在缺氧和复氧期间节省新陈代谢。

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