State Key Laboratory for Conservation and Utilization of Subtropical Agro-bioresources, The Key Laboratory of Ministry of Education for Microbial and Plant Genetic Engineering, and College of Life Science and Technology, Guangxi University, Nanning Guangxi, China.
RNA Biol. 2011 Nov-Dec;8(6):947-53. doi: 10.4161/rna.8.6.16690. Epub 2011 Nov 1.
sRNA-Xcc1 is a trans-acting sRNA recently identified from the plant pathogenic bacterium Xanthomonas campestris pathovar campestris (Xcc). Here, the phylogenetic distribution, predicted secondary structure and regulation of expression of sRNA-Xcc1 were analyzed. The analysis showed (1) a total 81 sRNA-Xcc1 homologs that are found in some bacterial strains that are taxonomically unrelated, belonging to the α-, β-, γ- and δ-proteobacteria (2) that some sRNA-Xcc1 homologs are located in a plasmid-borne transposon or near a transposase coding gene, (3) that sRNA-Xcc1 is encoded by a integron gene cassette in Xcc and sRNA-Xcc1 homologs occur in integron gene cassettes of some uncultured bacteria and (4) that sRNA-Xcc1 homologs have a highly conserved sequence motif and a stable consensus secondary structure. These findings strongly support the idea that sRNA-Xcc1 represents a novel family of sRNAs which may be originally captured by integrons from natural environments and then spread among different bacterial species via horizontal gene transfer, possibly by means of transposons and plasmids. The expression analysis results demonstrated that the transcription of sRNA-Xcc1 is under the positive control of the key virulence regulators HrpG and HrpX, indicating that sRNA-Xcc1 may be involved in the virulence regulation of Xcc.
sRNA-Xcc1 是一种新近从植物病原菌黄单胞菌野油菜致病变种(Xcc)中鉴定出的反式作用 sRNA。在此,分析了 sRNA-Xcc1 的系统发育分布、预测二级结构和表达调控。分析表明:(1)总共发现了 81 种 sRNA-Xcc1 同源物,它们存在于一些分类上不相关的细菌菌株中,属于α-、β-、γ-和δ-变形菌;(2)一些 sRNA-Xcc1 同源物位于质粒携带的转座子或靠近转座酶编码基因附近;(3)sRNA-Xcc1 由 Xcc 中的整合子基因盒编码,sRNA-Xcc1 同源物存在于一些未培养细菌的整合子基因盒中;(4)sRNA-Xcc1 同源物具有高度保守的序列基序和稳定的保守二级结构。这些发现强烈支持这样一种观点,即 sRNA-Xcc1 代表了一类新的 sRNAs,它们可能最初是由整合子从自然环境中捕获的,然后通过水平基因转移(可能通过转座子和质粒)在不同的细菌物种中传播。表达分析结果表明,sRNA-Xcc1 的转录受关键毒力调控因子 HrpG 和 HrpX 的正调控,表明 sRNA-Xcc1 可能参与 Xcc 的毒力调控。