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Season specific influence of projected ocean changes on the response to cadmium of stress-related genes in Mytilus galloprovincialis

机译:预计海洋变化对菌根血管科内脉络膜血管科内菌对应激相关基因镉的影响的特定影响

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Anthropogenic inputs of carbon dioxide in the atmosphere are driving ocean warming and acidification. The potential threat represented by these changes for marine species could be amplified in coastal areas, characterized by higher levels of pollutants. In addition, temperate organisms may exhibit a different seasonal tolerance to stressors influenced by fluctuations of environmental and physiological factors. In this study, Mediterranean mussels Mytilus galloprovincialis collected both in summer and winter were exposed to combinations of two temperatures (SST, seasonal surface temperature and SST+5 degrees C) and two levels of pH (8.20 and 7.40) in clean or cadmium contaminated seawater (20 mu g/L Cd). mRNA levels of genes related to metal-induced stress response were investigated, including metallothionein mt-20, heat-shock protein hsp70, superoxide dismutase Cu/Zn-sod, catalase cat, glutathione peroxidase gpx1 and glutathione S-transferase gst-pi. To further elucidate if tissues with different physiological roles could exhibit different responsiveness, such analyses were carried out in digestive gland and in gills of exposed mussels. mt-20 mRNA increase after Cd-exposure was higher in the digestive gland than in the gills, with few modulations by temperature or pH only in the latter. Acidification, alone or in combination with other stressors, increased hsp70 mRNA, with seasonaland tissue-specificities (higher in summer and in digestive gland). Among antioxidants, gpx1 mRNA was affected by Cd in both tissues and seasons, with further modulations due to pH and temperature variation tissueand season-specific; in winter the combination of Cd, warming and acidification affected Cu/Zn-sod both in digestive gland and gills and cat only in gills, while weak seasonal variations were observed for gst-pi transcripts only in digestive gland. The overall results highlighted the importance of considering seasonality and responsiveness of different tissues to predict the effects of sudden changes in environmental parameters on responsiveness to and toxicity of chemicals in marine coastal organisms.
机译:大气中二氧化碳的人为输入正在驱使海洋变暖和酸化。这些潜在威胁在沿海地区的沿海地区扩大,以较高水平的污染物为特征。此外,温带生物可能对受环境和生理因素波动影响的压力源表现出不同的季节性耐受性。在这项研究中,Mediterranean Mussels Mytilus Galloprovincialis在夏季和冬季收集,暴露于两个温度(SST,季节性表面温度和SST + 5摄氏度)的组合,以及在干净或镉污染海水中的两种pH(8.20和7.40) (20 mu g / l cd)。研究了与金属诱导的应力反应相关的基因的mRNA水平,包括金属硫蛋白MT-20,热冲击蛋白HSP70,超氧化物歧化酶Cu / Zn-SOD,过氧化氢酶猫,谷胱甘肽过氧化物酶GPX1和谷胱甘肽S-转移酶GST-PI。为了进一步阐明具有不同生理作用的组织可以表现出不同的反应性,这种分析是在消化腺和暴露贻贝的鳃中进行的。在消化腺中的消化腺下较高后,MT-20 mRNA增加比鳃在鳃中,在后者中仅通过温度或pH调节。酸化,单独或与其他压力源组合,增加HSP70 mRNA,季节性和组织特异性(夏季和消化腺中高)。在抗氧化剂中,GPX1 mRNA在两种组织和季节中受Cd的影响,由于pH和温度变化组织季节特异性,进一步调节;在冬季,CD,加热和酸化的组合仅在消化腺和鳃和猫中受影响的Cu / Zn-Sod,而仅在鳃中只观察到PS-PI转录物的弱季节变化。总体结果强调了考虑不同组织季节性和反应性的重要性,以预测环境参数突然变化对海洋沿海生物中化学品响应性和毒性的影响。

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