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Physiological responses to hypoxia and anoxia in Balanus amphitrite (Cirripedia: Thoracica)

机译:蛇头草对缺氧和缺氧的生理反应(Cirripedia:Thoracica)

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The barnacle Balanus amphitrite Darwin is a dominant intertidal and major fouling organism. As its life cycle includes both sessile and pelagic phases, adaptation is a necessity to tolerate harsh conditions that are faced in the intertidal and pelagic environment. A downward trend in dissolved oxygen levels in coastal areas has been recently observed, which would have a more prominent effect on sessile organisms inhabiting the intertidal habitats. The effects of reduced dissolved oxygen levels (hypoxia) and no oxygen (anoxia) on B. amphitrite adults and nauplii was assessed. Their response was evaluated by estimating the levels of the antioxidant enzymes catalase and superoxide dismutase. The impact of desiccation on antioxidant enzymes in adult B. amphitrite collected from different tidal heights was also evaluated. When nauplii were starved, 100% mortality was observed after 64 h under hypoxia, and between 24 and 32 h under anoxia. However, when nauplii were exposed to hypoxia and anoxia along with food, their tolerance level increased. A decrease in naupliar feeding rate and oxygen consumption was observed when they were exposed to hypoxia and anoxia. A significant difference in the levels of antioxidant enzymes in adult B. amphitrite collected at different tidal levels was observed. Enzyme activity increased with increase in the duration of tidal exposure, suggesting a capability to adapt to stress in different niches. Nauplii showed antioxidant defense (increased enzyme activity) under hypoxia and anoxia. The magnitude of change in enzyme levels suggests that these enzymes could be potential biomarkers of stress.
机译:藤壶Balanus amphitrite达尔文是主要的潮间带和主要污垢生物。由于其生命周期包括固着和上层期,适应是容忍潮间带和中上层环境所面临的严酷条件的必要条件。最近已经观察到沿海地区溶解氧水平的下降趋势,这将对潮间带生境中的固着生物产生更显着的影响。评估了降低的溶解氧水平(缺氧)和无氧(缺氧)对双歧杆菌成虫和幼体的影响。通过估计抗氧化酶过氧化氢酶和超氧化物歧化酶的水平来评估其反应。还评估了干燥对从不同潮高收集的成年双歧杆菌抗氧化酶的影响。当无节幼体饥饿时,在缺氧下64小时后和缺氧下24至32小时之间观察到100%的死亡率。然而,当无节幼体与食物一起暴露于缺氧和缺氧时,其耐受性水平增加。当它们暴露于缺氧和缺氧状态时,观察到其无节幼食的摄食率和耗氧量均下降。观察到在不同潮汐水平下采集的成年双歧杆菌抗氧化酶水平存在显着差异。酶活性随着潮汐暴露持续时间的增加而增加,表明适应不同生态位胁迫的能力。 Nauplii在缺氧和缺氧条件下表现出抗氧化防御作用(酶活性增加)。酶水平变化的幅度表明,这些酶可能是应激的潜在生物标记。

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