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首页> 外文期刊>Molecular Plant-Microbe Interactions >Small RNA Deep-Sequencing Analyses Reveal a New Regulator of Virulence in Agrobacterium fabrum C58
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Small RNA Deep-Sequencing Analyses Reveal a New Regulator of Virulence in Agrobacterium fabrum C58

机译:小RNA深度测序分析揭示了一种新的对农杆菌C58的毒力调节剂。

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Novel ways of regulating Ti plasmid functions were investigated by studying small RNAs (sRNAs) that are known to act as posttranscriptional regulators in plant pathogenic bacteria. sRNA-seq analyses of Agrobacterium fabrum C58 allowed us to identify 1,108 small transcripts expressed in several growth conditions that could be sRNAs. A quarter of them were confirmed by bioinformatics or by biological experiments. Antisense RNAs represent 24% of the candidates and they are over-represented on the pTi (with 62% of pTi sRNAs), suggesting differences in the regulatory mechanisms between the essential and accessory replicons. Moreover, a large number of these pTi antisense RNAs are transcribed opposite to those genes involved in virulence. Others are 5'- and 3'-untranslated region RNAs and trans-encoded RNAs. We have validated, by rapid amplification of cDNA ends polymerase chain reaction, the transcription of 14 trans-encoded RNAs, among which RNA1111 is expressed from the pTiC58. Its deletion decreased the aggressiveness of A. fabrum C58 on tomatoes, tobaccos, and kalanchoe, suggesting that this sRNA activates virulence. The identification of its putative target mRNAs (6b gene, virC2, virD3, and traA) suggests that this sRNA may coordinate two of the major pTi functions, the infection of plants and its dissemination among bacteria.
机译:通过研究已知在植物病原细菌中充当转录后调节子的小RNA(sRNA),研究了调节Ti质粒功能的新方法。农杆菌C58的sRNA-seq分析使我们能够鉴定在几种生长条件下表达的1,108个小转录本,这些转录本可能是sRNA。其中四分之一是通过生物信息学或生物学实验证实的。反义RNA占候选基因的24%,并且在pTi上的表达过多(pTi sRNA的62%),这表明基本复制子和辅助复制子之间的调节机制存在差异。而且,大量的这些pTi反义RNA被转录成与涉及毒力的那些基因相反。其他的是5'和3'非翻译区RNA和反编码RNA。我们已经通过快速扩增cDNA末端聚合酶链反应来验证14个反式编码RNA的转录,其中从pTiC58表达RNA1111。它的删除降低了A. fabrum C58对番茄,烟草和长寿菜的侵袭性,表明该sRNA激活了毒力。推定的靶标mRNA(6b基因,virC2,virD3和traA)的鉴定表明,该sRNA可以协调pTi的两个主要功能,即植物的感染及其在细菌中的传播。

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