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Regulation of expression of multixenobiotic resistance (MXR) genes by environmental factors in the blue mussel Mytilus edulis

机译:环境因素对蓝贻贝Mytilus edulis中多异生抗药性(MXR)基因表达的调节

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Marine organisms and especially those living in tidal zones are confronted with dramatic changes in their environment such as temperature fluctuations on a daily and/or seasonal basis. In the present study, we investigated whether these parameters affect expression of multixenobiotic resistance (MXR)-related genes that serve as a first line of defense against a broad spectrum of natural and man-made toxicants. Expression of MXR-related genes seems to be an appropriate biomarker to determine hazardous effects of chemicals in contaminated marine habitats. The interference of natural environmental factors in the expression of biomarkers is an important issue with respect to the use of biomarkers in monitoring biological effects of pollutants, making interpretations difficult. We studied the effects of temperature, salinity and oxygen supply (anaerobiosis) on expression of MXR-related genes in gills and digestive gland of the blue mussel Mytilus edulis in order to differentiate between pollution-induced stress and responses to natural environmental variations. We found changes in expression levels of P-glycoprotein (pgp), major vault protein (mvp), topoisomerase II (topoII), heat shock protein 70 (hsp70), but not of the multidrug resistance-related protein (mrp2) genes, in laboratory experiments in relation to high temperature, low salinity and anaerobiosis but not low temperature. These effects of environmental factors have to be considered in sampling strategies for monitoring programmes to prevent false interpretation of results.
机译:海洋生物,尤其是生活在潮汐带的海洋生物面临着环境的急剧变化,例如每天和/或季节性的温度波动。在本研究中,我们调查了这些参数是否影响多异生物抗性(MXR)相关基因的表达,这些基因充当了抵御各种天然和人造毒物的第一道防线。 MXR相关基因的表达似乎是确定化学物质在受污染的海洋生境中的有害影响的适当生物标记。就使用生物标志物监测污染物的生物效应而言,自然环境因素对生物标志物表达的干扰是一个重要问题,这使得解释变得困难。我们研究了温度,盐分和氧气供应(厌氧菌)对蓝贻贝贻贝的g和消化腺中MXR相关基因表达的影响,以便区分污染引起的压力和对自然环境变化的响应。我们发现P-糖蛋白(pgp),主要穹protein蛋白(mvp),拓扑异构酶II(topoII),热休克蛋白70(hsp70)的表达水平发生了变化,但与多药耐药相关蛋白(mrp2)基因没有变化。有关高温,低盐度和厌氧菌但不涉及低温的实验室实验。在监视程序的采样策略中必须考虑环境因素的这些影响,以防止错误解释结果。

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