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海洋硅藻假微型海链藻暴露于多环芳烃(PAHs)时的基因调控。

Gene regulation in the marine diatom Thalassiosira pseudonana upon exposure to polycyclic aromatic hydrocarbons (PAHs).

作者信息

Bopp Stephanie K, Lettieri Teresa

机构信息

European Commission -- DG Joint Research Centre, Institute for Environment and Sustainability, Rural, Water, and Ecosystem Resources Unit, T.P. 300, Via E. Fermi 1, 21020 Ispra (VA), Italy.

出版信息

Gene. 2007 Jul 15;396(2):293-302. doi: 10.1016/j.gene.2007.03.013. Epub 2007 Mar 30.

DOI:10.1016/j.gene.2007.03.013
PMID:17540515
Abstract

Diatoms are eukaryotic algae, which can be found worldwide in oceans and freshwaters. These organisms are ecologically relevant due to their key role in the global carbon cycle, contributing to about 25% to the global primary production [Falciatore, A., Bowler, C., 2002. Revealing the molecular secrets of marine diatoms. Annu. Rev. Plant Biol. 53, 109-130]. We investigated the effects of three polycyclic aromatic hydrocarbons (PAHs, pyrene, fluoranthene, and benzo[a]pyrene), either as single compound or as mixture, at molecular level. Dose-response curves for growth inhibition were determined and four concentrations eliciting from "no effect" up to a severe growth inhibition were chosen for further investigation to detect alterations at gene expression level by Real-Time PCR. Among the eight selected genes, two were strongly influenced by the PAH treatment. lacsA, which is involved in the fatty acid metabolism, was found to be strongly up-regulated by all single PAHs, as well as by the mixture. sil3, involved in the formation of the silica shell, was repressed by a factor up to three even at low PAH concentrations not eliciting any growth inhibition. For other genes, involved e.g. in photosynthesis, a slight down-regulation was detected. Based on the effects at gene expression level it can be assumed that PAHs impair the fatty acid metabolism and silica shell formation.

摘要

硅藻是真核藻类,在全球的海洋和淡水中均有发现。由于这些生物在全球碳循环中发挥着关键作用,对全球初级生产贡献约25%,因此它们在生态方面具有重要意义[Falciatore, A., Bowler, C., 2002.揭示海洋硅藻的分子秘密。植物生物学年度评论。53, 109 - 130]。我们在分子水平上研究了三种多环芳烃(PAHs,芘、荧蒽和苯并[a]芘)单独或混合存在时的影响。测定了生长抑制的剂量反应曲线,并选择了从“无影响”到严重生长抑制的四种浓度进行进一步研究,以通过实时PCR检测基因表达水平的变化。在所选的八个基因中,有两个受到PAH处理的强烈影响。参与脂肪酸代谢的lacsA被发现受到所有单一PAHs以及混合物的强烈上调。参与硅壳形成的sil3即使在未引起任何生长抑制的低PAH浓度下也被抑制了高达三倍的因子。对于其他例如参与光合作用的基因,检测到轻微下调。基于基因表达水平的影响,可以推测PAHs会损害脂肪酸代谢和硅壳形成。

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