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首页> 外文期刊>Journal of Thermal Biology >The role of the heat shock proteins (HSP70 and sHSP) in the thermotolerance of freshwater amphipods from contrasting habitats
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The role of the heat shock proteins (HSP70 and sHSP) in the thermotolerance of freshwater amphipods from contrasting habitats

机译:热休克蛋白(HSP70和sHSP)在来自不同生境的淡水两栖动物的耐热性中的作用

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The aim of this study was to clarify the significance of HSP70 and sHSP for thermotolerance in freshwater amphipods. We compared four amphipod species from different freshwater habitats and biogeographical regions (Central Europe vs. Lake Baikal). Test individuals were exposed to thermal stress generated by a water temperature of 25 掳C. The thermotolerance of the species, determined by median lethal time (LT50), followed in decreasing order by Gmelinoides fasciatus, Echinogammarus berilloni, Gammarus pulex, Eulimnogammarus verrucosus. HSP70 and sHSP base level concentrations for the species were determined at control (i.e. non-stress) conditions. For HSP70, the base levels were positively correlated to the species' thermotolerances. For sHSP, however, only thermotolerant G. fasciatus showed a high level. Thermal stress at 25 掳C water temperature caused a deferred onset of HSP70 and sHSP expression followed by a subsequent offset, delineating a unimodal response curve. The time lag to the expression onset of HSP70 was shorter in the thermosensitive species, compared to thermotolerant ones. Conversely, the time span until the maximum level of HSP70 was variable, not showing a dependence on the thermotolerance properties of the species. The peak concentration in G. pulex was distinctly higher than in the other species, whereas E. verrucosus did not develop a well-defined response maximum at all. In sHSP, the temporal pattern of expression was even more variable than in HSP70. However, the thermosensitive species E. verrucosus showed a time lag of expression onset significantly shorter than the other species and thermotolerant G. fasciatus developed the most pronounced response maximum. Basing on these results, the cellular response to thermal stress in amphipods is more consistently reflected by HSP70, compared to sHSP.
机译:这项研究的目的是阐明HSP70和sHSP对淡水两栖类动物耐热性的重要性。我们比较了来自不同淡水生境和生物地理区域(中欧与贝加尔湖)的四种两栖纲物种。测试人员暴露于25°C的水温产生的热应力。该物种的耐热性由中值致死时间(LT50)决定,其后依次为G藜(Gmelinoides fasciatus),细棘棘棘E虫(Echinogammarus berilloni),短柄伽玛rus虫(Gammarus pulex),绿鳍金枪鱼(Eulimnogammarus verrucosus)。该物种的HSP70和sHSP碱水平浓度是在对照(即非胁迫)条件下测定的。对于HSP70,基本水平与该物种的耐热性呈正相关。但是,对于sHSP,只有耐热的Fas fasciatus表现出高水平。在25°C水温下的热应力导致HSP70和sHSP表达的推迟发生,随后出现随后的偏移,描绘出单峰响应曲线。与耐热性物种相比,热敏性物种中HSP70表达开始的时间延迟更短。相反,直到HSP70达到最大水平的时间跨度是可变的,没有显示出对物种耐热性的依赖性。 G. pulex中的峰值浓度明显高于其他物种,而Ver.cosruus根本没有形成明确定义的最大响应。在sHSP中,表达的时间模式比在HSP70中更易变。但是,热敏种疣疣大肠杆菌(E. verrucosus)的表达开始的时间滞后明显短于其他种,并且耐热性条盘菌(G. fasciatus)表现出最大的响应最大值。基于这些结果,与sHSP相比,HSP70更一致地反映了两栖动物对热应激的细胞反应。

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