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Experimental Identification of Small Non-Coding RNAs in the Model Marine Bacterium Ruegeria pomeroyi DSS-3

机译:模型海洋细菌中小型非编码RNA的实验鉴定<斜体> Ruegeria Pomeroyi DSS-3

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In oligotrophic ocean waters where bacteria are often subjected to chronic nutrient limitation, community transcriptome sequencing has pointed to the presence of highly abundant small RNAs (sRNAs). The role of sRNAs in regulating response to nutrient stress was investigated in a model heterotrophic marine bacterium Ruegeria pomeroyi grown in continuous culture under carbon (C) and nitrogen (N) limitation. RNAseq analysis identified 99 putative sRNAs. Sixty-nine were cis -encoded and located antisense to a presumed target gene. Thirty were trans -encoded and initial target prediction was performed computationally. The most prevalent functional roles of genes anti-sense to the cis -sRNAs were transport, cell-cell interactions, signal transduction, and transcriptional regulation. Most sRNAs were transcribed equally under both C and N limitation, and may be involved in a general stress response. However, 14 were regulated differentially between the C and N treatments and may respond to specific nutrient limitations. A network analysis of the predicted target genes of the R. pomeroyi cis -sRNAs indicated that they average fewer connections than typical protein-encoding genes, and appear to be more important in peripheral or niche-defining functions encoded in the pan genome.
机译:在寡替氏菌海水中,在细菌经常进行慢性营养限制的情况下,群落转录组测序已经指出了高度丰富的小RNA(SRNA)的存在。在碳(C)和氮(N)限制下,在连续培养的模型异养海洋细菌Ruegeria Pomeroyi中研究了SRNA在调节对营养应激反应的作用。 RNASEQ分析确定了99个推定的SRNA。六十九是CIS-ENDOODED并定位对假定靶基因的反义。三十是跨越逆变的,并且计算地执行初始目标预测。基因对顺式-SRNA的基因抗道的最普遍的功能作用是运输,细胞 - 细胞相互作用,信号转导和转录调节。大多数SRNA在C和N的限制下同样转录,并且可以参与一般的应力响应。然而,14在C和N治疗之间进行差异,并且可以响应特定的营养限制。 R.Pomeroyi CIS -SRNA预测靶基因的网络分析表明,它们平均比典型的蛋白质编码基因更少,并且在PAN基因组中编码的外周或Niche限定功能似乎更重要。

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