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Non-coding RNAs in marine Synechococcus and their regulation under environmentally relevant stress conditions

机译:海洋突触球菌中的非编码RNA及其在与环境有关的胁迫条件下的调控

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摘要

Regulatory small RNAs (sRNAs) have crucial roles in the adaptive responses of bacteria to changes in the environment. Thus far, potential regulatory RNAs have been studied mainly in marine picocyanobacteria in genetically intractable Prochlorococcus, rendering their molecular analysis difficult. Synechococcus sp. WH7803 is a model cyanobacterium, representative of the picocyanobacteria from the mesotrophic areas of the ocean. Similar to the closely related Prochlorococcus it possesses a relatively streamlined genome and a small number of genes, but is genetically tractable. Here, a comparative genome analysis was performed for this and four additional marine Synechococcus to identify the suite of possible sRNAs and other RNA elements. Based on the prediction and on complementary microarray profiling, we have identified several known as well as 32 novel sRNAs. Some sRNAs overlap adjacent coding regions, for instance for the central photosynthetic gene psbA. Several of these novel sRNAs responded specifically to environmentally relevant stress conditions. Among them are six sRNAs changing their accumulation level under cold stress, six responding to high light and two to iron limitation. Target predictions suggested genes encoding components of the light-harvesting apparatus as targets of sRNAs originating from genomic islands and that one of the iron-regulated sRNAs might be a functional homolog of RyhB. These data suggest that marine Synechococcus mount adaptive responses to these different stresses involving regulatory sRNAs.
机译:调节性小RNA(sRNA)在细菌对环境变化的适应性反应中起关键作用。迄今为止,主要在遗传难治的原球菌属的海洋微蓝细菌中研究了潜在的调节RNA,这使其分子分析变得困难。球菌WH7803是蓝藻的典范,代表来自海洋中营养区域的微蓝细菌。与密切相关的Prochlorococcus相似,它具有相对简化的基因组和少量基因,但在遗传上易处理。在这里,对此基因组和另外四个海洋Synechococcus进行了比较基因组分析,以鉴定可能的sRNA和其他RNA元素的组合。基于预测和互补微阵列分析,我们确定了几种已知的以及32种新颖的sRNA。一些sRNA与相邻的编码区重叠,例如中央光合基因psbA。这些新颖的sRNA中的几种对环境相关的应激条件具有特异性反应。其中有6种sRNA在冷胁迫下会改变其积累水平,其中6种对强光有反应,另外2种对铁的限制。靶标预测表明,编码光收集装置成分的基因作为源自基因组岛的sRNA的靶标,铁调控的sRNA之一可能是RyhB的功能同源物。这些数据表明,海洋突触球菌对涉及调节性sRNA的这些不同压力具有适应性响应。

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