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Meta-Analysis of Studies Using Suppression Subtractive Hybridization and Microarrays to Investigate the Effects of Environmental Stress on Gene Transcription in Oysters

机译:使用抑制消减杂交法和微阵列研究环境胁迫对牡蛎基因转录影响的研究的荟萃分析

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摘要

Many microarray and suppression subtractive hybridization (SSH) studies have analyzed the effects of environmental stress on gene transcription in marine species. However, there have been no unifying analyses of these data to identify common stress response pathways. To address this shortfall, we conducted a meta-analysis of 14 studies that investigated the effects of different environmental stressors on gene expression in oysters. The stressors tested included chemical contamination, hypoxia and infection, as well as extremes of temperature, pH and turbidity. We found that the expression of over 400 genes in a range of oyster species changed significantly after exposure to environmental stress. A repeating pattern was evident in these transcriptional responses, regardless of the type of stress applied. Many of the genes that responded to environmental stress encoded proteins involved in translation and protein processing (including molecular chaperones), the mitochondrial electron transport chain, anti-oxidant activity and the cytoskeleton. In light of these findings, we put forward a consensus model of sub-cellular stress responses in oysters.
机译:许多微阵列和抑制消减杂交(SSH)研究已经分析了环境胁迫对海洋物种基因转录的影响。但是,还没有对这些数据进行统一分析来确定常见的应激反应途径。为了解决这一不足,我们对14项研究进行了荟萃分析,研究了不同环境应激因素对牡蛎基因表达的影响。测试的压力源包括化学污染,缺氧和感染,以及极端温度,pH和浊度。我们发现,暴露于环境胁迫后,牡蛎种类中超过400个基因的表达发生了显着变化。无论施加何种压力,在这些转录反应中均存在重复模式。许多对环境压力有反应的基因编码参与翻译和蛋白质加工的蛋白质(包括分子伴侣),线粒体电子转运链,抗氧化活性和细胞骨架。根据这些发现,我们提出了牡蛎亚细胞应激反应的共识模型。

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