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A Novel RAYM_RS09735/RAYM_RS09740 Two-Component Signaling System Regulates Gene Expression and Virulence in Riemerella anatipestifer

机译:新型的RAYM_RS09735 / RAYM_RS09740两组分信号系统调节拟南氏拟杆菌(Riemerella anatipestifer)的基因表达和毒力

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摘要

The Gram-negative bacterium Riemerella anatipestifer is an important waterfowl pathogen, causing major economic losses to the duck-producing industry. However, little is known of the virulence factors that mediate pathogenesis during R. anatipestifer infection. In this study, RAYM_RS09735 and RAYM_RS09740 were predicted to form a two-component signaling system (TCS) through bioinformatics analysis. This TCS was highly conserved across the Flavobacteriaceae. A mutant YMΔRS09735/RS09740 strain was constructed to investigate the role of the RAYM_RS09735/RAYM_RS09740 TCS in R. anatipestifer virulence and gene regulation. The median lethal dose (LD50) of YMΔRS09735/RS09740 was found to be >1011 CFU, equivalent to that of avirulent bacterial strains. The bacterial abundances of the YMΔRS09735/RS09740 strain in the heart, brain, liver, blood, and spleen were significantly lower than that of the wild-type R. anatipestifer YM strain. Pathological analysis using hematoxylin and eosin staining showed that, compared to the wild-type, the mutant YMΔRS09735/RS09740 strain caused significantly less virulence in infected ducklings. RNAseq and real-time PCR analysis indicated that the RAYM_RS09735/RAYM_RS09740 TCS is a PhoP/PhoR system. This is a novel type of TCS for Gram-negative bacteria. The TCS was also found to be a global regulator of expression in R. anatipestifer, with 112 genes up-regulated and 693 genes down-regulated in the YMΔRS09735/RS09740 strain (~33% genes demonstrated differential expression). In summary, we have reported the first PhoP/PhoR TCS identified in a Gram-negative bacterium and demonstrated that it is involved in virulence and gene regulation in R. anatipestifer.
机译:革兰氏阴性菌Anatipestifer是一种重要的水禽病原体,给鸭生产业造成重大经济损失。但是,鲜有关于毒力因子介导厌氧性疟原虫感染过程中发病机理的了解。在这项研究中,通过生物信息学分析预测RAYM_RS09735和RAYM_RS09740会形成两组分信号系统(TCS)。该TCS在黄杆菌科中高度保守。构建了一个突变体YMΔRS09735/ RS09740菌株,以研究RAYM_RS09735 / RAYM_RS09740 TCS在R. anatipestifer毒力和基因调控中的作用。发现YMΔRS09735/ RS09740的平均致死剂量(LD50)> 10 11 CFU,与无毒细菌菌株相当。 YMΔRS09735/ RS09740菌株在心脏,大脑,肝脏,血液和脾脏中的细菌丰度明显低于野生型Anatipestifer YM菌株。使用苏木精和曙红染色的病理分析表明,与野生型相比,突变型YMΔRS09735/ RS09740菌株在感染小鸭中引起的毒力明显降低。 RNAseq和实时PCR分析表明RAYM_RS09735 / RAYM_RS09740 TCS是PhoP / PhoR系统。这是用于革兰氏阴性细菌的新型TCS。 TCS还被发现是在拟南芥中的一个整体表达调节剂,在YMΔRS09735/ RS09740菌株中有112个基因被上调,而693个基因被下调(〜33%的基因显示出差异表达)。总之,我们已经报道了在革兰氏阴性细菌中鉴定出的第一个PhoP / PhoR TCS,并证明它参与了拟南芥中的毒力和基因调控。

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