首页> 美国卫生研究院文献>The Journal of Experimental Biology >Changes in protein expression in the salt marsh mussel Geukensia demissa: evidence for a shift from anaerobic to aerobic metabolism during prolonged aerial exposure
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Changes in protein expression in the salt marsh mussel Geukensia demissa: evidence for a shift from anaerobic to aerobic metabolism during prolonged aerial exposure

机译:盐沼贻贝Geukensia dismissa中蛋白质表达的变化:长时间暴露于空气中从无氧代谢转变为有氧代谢的证据

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摘要

During aerial exposure (emersion), most sessile intertidal invertebrates experience cellular stress caused by hypoxia, and the amount and types of hypoxia-induced stress will differ as exposure time increases, likely leading to altered metabolic responses. We examined proteomic responses to increasing emersion times and decreasing recovery (immersion) times in the mussel Geukensia demissa, which occurs in salt marshes along the east coast of North America. Individuals are found above mean tide level, and can be emersed for over 18 h during spring tides. We acclimated mussels to full immersion at 15°C for 4 weeks, and compared changes in gill protein expression between groups of mussels that were continually immersed (control), were emersed for 6 h and immersed during recovery for 18 h (6E/18R), were emersed for 12 h and recovered for 12 h (12E/12R), or were emersed for 18 h with a 6 h recovery (18E/6R). We found clear differences in protein expression patterns among the treatments. Proteins associated with anaerobic fermentation increased in abundance in 6E/18R but not in 12E/12R or 18E/6R. Increases in oxidative stress proteins were most apparent in 12E/12R, and in 18E/6R changes in cytoskeletal protein expression predominated. We conclude that G. demissa alters its strategy for coping with emersion stress over time, relying on anaerobic metabolism for short- to medium-duration exposure, but switching to an air-gaping strategy for long-term exposure, which reduces hypoxia stress but may cause structural damage to gill tissue.
机译:在空中暴露(出没)期间,大多数无柄潮间带无脊椎动物会经历由缺氧引起的细胞应激,随着缺氧时间的增加,缺氧引起的应激的数量和类型会有所不同,可能导致代谢反应改变。我们研究了蛋白质组学对贻贝Geukensia demissa中出现的时间增加和恢复(浸没)时间减少的反应,贻贝发生在北美东海岸的盐沼中。发现个体高于潮汐平均水平,并且在春季潮汐期间可能会出现超过18小时的时间。我们将贻贝在15°C的温度下完全浸泡4周,然后比较连续浸泡(对照组),出壳6小时并在恢复过程中浸泡18 h(6E / 18R)的贻贝之间g蛋白质表达的变化。 ,浸泡12小时并恢复12小时(12E / 12R),或浸泡6小时恢复18小时(18E / 6R)。我们发现治疗之间蛋白质表达模式的明显差异。与厌氧发酵相关的蛋白质在6E / 18R中大量增加,但在12E / 12R或18E / 6R中没有增加。氧化应激蛋白的增加在12E / 12R中最明显,而在18E / 6R中,细胞骨架蛋白表达的变化占主导。我们得出的结论是,随着时间的推移,G。demissa会改变其应对突发性应激的策略,依靠厌氧代谢来进行中短期暴露,但长期使用气隙策略可以减少缺氧应激,但可能对g组织造成结构性损害。

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