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Comparative transcriptomics of two environmentally relevant cyanobacteria reveals unexpected transcriptome diversity

机译:两种与环境相关的蓝细菌的比较转录组学揭示了意外的转录组多样性

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摘要

Prochlorococcus is a genus of abundant and ecologically important marine cyanobacteria. Here, we present a comprehensive comparison of the structure and composition of the transcriptomes of two Prochlorococcus strains, which, despite their similarities, have adapted their gene pool to specific environmental constraints. We present genome-wide maps of transcriptional start sites (TSS) for both organisms, which are representatives of the two most diverse clades within the two major ecotypes adapted to high- and low-light conditions, respectively. Our data suggest antisense transcription for three-quarters of all genes, which is substantially more than that observed in other bacteria. We discovered hundreds of TSS within genes, most notably within 16 of the 29 prochlorosin genes, in strain MIT9313. A direct comparison revealed very little conservation in the location of TSS and the nature of non-coding transcripts between both strains. We detected extremely short 5′ untranslated regions with a median length of only 27 and 29 nt for MED4 and MIT9313, respectively, and for 8% of all protein-coding genes the median distance to the start codon is only 10 nt or even shorter. These findings and the absence of an obvious Shine–Dalgarno motif suggest that leaderless translation and ribosomal protein S1-dependent translation constitute alternative mechanisms for translation initiation in Prochlorococcus. We conclude that genome-wide antisense transcription is a major component of the transcriptional output from these relatively small genomes and that a hitherto unrecognized high degree of complexity and variability of gene expression exists in their transcriptional architecture.
机译:绿球菌属是丰富的且在生态上重要的海洋蓝细菌属。在这里,我们介绍了两个Prochlorococcus菌株的转录组的结构和组成的全面比较,尽管它们相似,但它们的基因库已适应特定的环境限制。我们介绍了这两种生物的转录起始位点(TSS)的全基因组图,它们分别是两种主要生态型中两种最多样化进化枝的代表,分别适应于高光和弱光条件。我们的数据表明所有基因中有四分之三的反义转录,远高于其他细菌中观察到的反义转录。我们在MIT9313菌株的基因中发现了数百个TSS,最值得注意的是在29个原氯霉素基因中的16个基因中。直接比较显示两种菌株之间在TSS位置和非编码转录本的性质方面几乎没有保守性。我们检测到极短的5'非翻译区,MED4和MIT9313的中位长度分别仅为27和29 nt,对于所有蛋白编码基因的8%,到起始密码子的中位距离仅10 nt或更短。这些发现和一个明显的Shine-Dalgarno基序的缺失表明无前导翻译和核糖体蛋白S1依赖性翻译构成了原球藻翻译起始的替代机制。我们得出的结论是,全基因组的反义转录是这些相对较小的基因组转录输出的主要组成部分,并且其转录结构中存在迄今无法识别的基因表达的高度复杂性和可变性。

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