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四个欧洲斑马贻贝(Dreissena polymorpha)种群中基因表达水平与金属生物累积的关系:一项实地研究。

Variations in gene expression levels in four European zebra mussel, Dreissena polymorpha, populations in relation to metal bioaccumulation: A field study.

作者信息

Kerambrun E, Rioult D, Delahaut L, Evariste L, Pain-Devin S, Auffret M, Geffard A, David E

机构信息

Université de Reims Champagne-Ardenne, UMR-I 02 SEBIO (Stress Environnementaux et BIOsurveillance des milieux aquatiques), INERIS-URCA-ULH, France.

Université de Reims Champagne-Ardenne, UMR-I 02 SEBIO (Stress Environnementaux et BIOsurveillance des milieux aquatiques), INERIS-URCA-ULH, France; Université de Reims Champagne-Ardenne/INERIS, Plateau Technique mobile de cytométrie environnementale MOBICYTE, France.

出版信息

Ecotoxicol Environ Saf. 2016 Dec;134P1:53-63. doi: 10.1016/j.ecoenv.2016.08.018. Epub 2016 Aug 30.

DOI:10.1016/j.ecoenv.2016.08.018
PMID:27588554
Abstract

The present study was performed to validate the suitability of using gene expression in zebra mussels, Dreissena polymorpha, for biomonitoring of freshwater environment. Mussels were collected in four French rivers (Meuse, Moselle, Oise and Vilaine) in spring and autumn. Relative gene expression of 9 candidate genes involved in cellular metabolic activities (Cytochrome-c-oxidase - cox, and ATP synthase - atp), detoxification process (Metallothionein - mt and Glutathion-S-Transferase - gst), oxidative stress (Catalase - cat, Superoxyde Dismutase - sod and Glutathion peroxidase - gpx) and digestive functions (Amylase - amy and Cellulase - ghf) were measured in digestive gland. Metal bioaccumulation in tissues and morphometric parameters were also analyzed to interpret molecular responses. All our results are consistent with different physiological reactions to environmental condition between zebra mussel populations. In spring, the levels of mt, sod, gpx, cat, atp, amy and ghf relative expression were significantly higher in mussels with the lowest metal bioaccumulation (the Meuse) compared to at least one of the other sites. In autumn, this higher expression levels in Meuse River were still observed for gpx, cat, atp and amy. This study has also pointed out different sources of variability in gene expression (individual size, season, trophic resources and origin of mussels) which are inevitable in natural fluctuant environment. This underlines the importance to take them into account in field study to propose a correct interpretation of biomarker responses.

摘要

本研究旨在验证利用斑马贻贝(Dreissena polymorpha)的基因表达进行淡水环境生物监测的适用性。于春秋两季在法国的四条河流(默兹河、摩泽尔河、瓦兹河和维莱讷河)采集贻贝。测定了消化腺中参与细胞代谢活动(细胞色素c氧化酶 - cox和ATP合酶 - atp)、解毒过程(金属硫蛋白 - mt和谷胱甘肽 - S - 转移酶 - gst)、氧化应激(过氧化氢酶 - cat、超氧化物歧化酶 - sod和谷胱甘肽过氧化物酶 - gpx)以及消化功能(淀粉酶 - amy和纤维素酶 - ghf)的9个候选基因的相对基因表达。还分析了组织中的金属生物积累和形态测量参数,以解释分子反应。我们所有的结果都与斑马贻贝种群对环境条件的不同生理反应一致。春季,金属生物积累最低的贻贝(默兹河)中mt、sod、gpx、cat、atp、amy和ghf的相对表达水平显著高于至少一个其他地点。秋季,在默兹河中仍观察到gpx、cat、atp和amy的这种较高表达水平。本研究还指出了基因表达中不同的变异来源(个体大小、季节、营养资源和贻贝来源),这些在自然波动环境中是不可避免的。这突出了在实地研究中考虑这些因素以正确解释生物标志物反应的重要性。

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