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转录组对法国德罗讷河痕量金属污染的濒危淡水贻贝玛格丽特贻贝的反应。

Transcriptomic responses of the endangered freshwater mussel Margaritifera margaritifera to trace metal contamination in the Dronne River, France.

机构信息

Univ. Bordeaux, UMR EPOC CNRS 5805, 33615, Pessac, France.

Université de Brest, Institut Universitaire Européen de la Mer, Laboratoire des sciences de l'environnement marin (LEMAR UMR 6539 CNRS/UBO/IRD/Ifremer), 29280, Plouzané, France.

出版信息

Environ Sci Pollut Res Int. 2017 Dec;24(35):27145-27159. doi: 10.1007/s11356-017-0294-6. Epub 2017 Sep 30.

Abstract

The freshwater pearl mussel Margaritifera margaritifera is one of the most threatened freshwater bivalves worldwide. In this study, we aimed (i) to study the processes by which water quality might affect freshwater mussels in situ and (ii) to provide insights into the ecotoxicological significance of water pollution to natural populations in order to provide necessary information to enhance conservation strategies. M. margaritifera specimens were sampled in two close sites located upstream or downstream from an illegal dumping site. The renal transcriptome of these animals was assembled and gene transcription determined by RNA-seq. Correlations between transcription levels of each single transcript and the bioaccumulation of nine trace metals, age (estimated by sclerochronology), and condition index were determined in order to identify genes likely to respond to a specific factor. Amongst the studied metals, Cr, Zn, Cd, and Ni were the main factors correlated with transcription levels, with effects on translation, apoptosis, immune response, response to stimulus, and transport pathways. However, the main factor explaining changes in gene transcription appeared to be the age of individuals with a negative correlation with the transcription of retrotransposon-related genes. To investigate this effect further, mussels were classified into three age classes. In young, middle-aged and old animals, transcription levels were mainly explained by Cu, Zn and age, respectively. This suggests differences in the molecular responses of this species to metals during its lifetime that must be better assessed in future ecotoxicology studies.

摘要

淡水珍珠贻贝 Margaritifera margaritifera 是世界上受威胁最严重的淡水双壳类动物之一。在本研究中,我们旨在:(i) 研究水质可能如何影响现场淡水贻贝的过程;(ii) 深入了解水污染对自然种群的生态毒理学意义,以为增强保护策略提供必要信息。在两个紧邻的地点采集了这些动物的样本,这些地点位于一个非法倾倒场的上游或下游。通过 RNA-seq 对这些动物的肾脏转录组进行了组装,并确定了基因转录。为了确定可能对特定因素有反应的基因,确定了每个单独转录本的转录水平与九种痕量金属的生物积累、年龄(通过硬壳年历来估计)和状况指数之间的相关性。在所研究的金属中,Cr、Zn、Cd 和 Ni 是与转录水平最相关的主要因素,这些因素影响翻译、细胞凋亡、免疫反应、对刺激的反应和运输途径。然而,解释基因转录变化的主要因素似乎是个体年龄,与逆转录转座子相关基因的转录呈负相关。为了进一步研究这种影响,将贻贝分为三个年龄组。在年轻、中年和老年动物中,转录水平主要分别由 Cu、Zn 和年龄解释。这表明该物种在其一生中对金属的分子反应存在差异,在未来的生态毒理学研究中必须更好地评估这些差异。

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