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首页> 外文期刊>The Science of the Total Environment >Expression of the heat shock protein Hsp70 in chloride target cells of mayfly larvae from motorway retention pond: A biomarker of osmotic shock
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Expression of the heat shock protein Hsp70 in chloride target cells of mayfly larvae from motorway retention pond: A biomarker of osmotic shock

机译:热休克蛋白Hsp70在高速公路retention留池may幼体氯化物靶细胞中的表达:渗透压休克的生物标志物

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摘要

The aim of this work was to study, by an in toto immunohistochemical technique, the expression pattern of the heat shock protein, Hsp70, in the widely used bioindicator species Cloeon dipterum (Linnaeus 1761) (Ephemeroptera, Baetidae), living in a motorway retention pond. All sampling and measurements have been performed from March 2002 to March 2003. The water physicochemical analyses have revealed a large increase in Na+ and Cl- concentrations after the de-icing road surface in winter related to motorway maintenance that correspond to an osmotic shock (from 3.1 to 105.7 mg L-1 for Na+ and from 3.5 to 193.9 mg L-1 for Cl-). An expression of Hsp70 was observed in the chloride cells only during the osmotic shock. In contrast, the gill insertions were Hsp70 immunoreactive in specimens collected all along the year. For comparison, the expression of Hsp70 was investigated in specimens collected in a temporary pond. C. dipterum larvae living in this pond, not submitted to such osmotic shock, do not express Hsp70 neither in chloride cells nor in gill insertions. Likewise, the expression of Hsp70 was not detected in these structures during the drying period when the abiotic conditions become progressively stressful (elevation of temperature and anoxia). As chloride cells play a key role in osmoregulation, their functional integrity is crucial for the survival of the mayfly larvae in occasionally salty freshwaters. According to the well known protective role of the Hsp70 stress proteins, it is likely that the induction of Hsp70 may protect the chloride cells from osmotic shock injuries resulting from the increase in salinity. So, the Hsp70 induction in chloride cells is designed as a useful biomarker of osmotic shock. The in toto immunohistochemical detection of Hsp70 allows to characterize both the exposure situation and biological effects in target cells induced by stresses. This method could be used as a complementary qualitative approach in the biomarker actual concept. Finally, this investigation that combines this osmotic shock biomarker and this kind of bioindicator species would be a helpful tool for the monitoring of freshwater ecological systems. (c) 2006 Elsevier B.V. All rights reserved.
机译:这项工作的目的是通过一种免疫组织化学技术研究生活在机动车道内的广泛使用的生物指示物物种克隆双翅目(Cloeon dipterum(Linnaeus 1761)(Ephemeroptera,Baetidae)中的热休克蛋白Hsp70的表达模式。池塘。从2002年3月至2003年3月进行了所有采样和测量。水的理化分析表明,冬季除冰后的路面与高速公路维护有关,这与渗透压有关,Na +和Cl-浓度大幅增加(来自Na +为3.1至105.7 mg L-1,Cl-为3.5至193.9 mg L-1。仅在渗透性休克期间在氯化物细胞中观察到Hsp70的表达。相反,在全年收集的标本中,the插入物具有Hsp70免疫反应性。为了比较,在临时池塘收集的标本中研究了Hsp70的表达。生活在这个池塘中的梭状芽胞杆菌幼虫,没有经历过这种渗透性休克,在氯化物细胞和g插入物中均不表达Hsp70。同样,在非生物条件逐渐变得紧张(温度升高和缺氧)的干燥期间,在这些结构中也未检测到Hsp70的表达。由于氯化物细胞在渗透调​​节中起着关键作用,因此它们的功能完整性对于有时在咸淡水中的may蝇幼虫的存活至关重要。根据Hsp70应激蛋白的众所周知的保护作用,很可能Hsp70的诱导可以保护氯化物细胞免受盐度增加导致的渗透性休克伤害。因此,将氯化物细胞中的Hsp70诱导设计为渗透压休克的有用生物标记。 Hsp70的体内免疫组织化学检测可表征应激引起的靶细胞的暴露情况和生物学效应。该方法可用作生物标志物实际概念中的补充定性方法。最后,将这种渗透性休克生物标记物与这种生物指示剂种类结合起来的研究将是监测淡水生态系统的有用工具。 (c)2006 Elsevier B.V.保留所有权利。

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