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水稻细菌性条斑病菌 Xanthomonas oryzae pv. oryzae 产生多种 DSF 家族信号来调节毒性因子的产生。

Rice bacterial blight pathogen Xanthomonas oryzae pv. oryzae produces multiple DSF-family signals in regulation of virulence factor production.

机构信息

Institute of Molecular and Cell Biology, Singapore.

出版信息

BMC Microbiol. 2010 Jul 9;10:187. doi: 10.1186/1471-2180-10-187.

Abstract

BACKGROUND

Xanthomonas oryzae pv. oryzae (Xoo) is the causal agent of rice bacterial blight disease. Xoo produces a range of virulence factors, including EPS, extracellular enzyme, iron-chelating siderophores, and type III-secretion dependent effectors, which are collectively essential for virulence. Genetic and genomics evidence suggest that Xoo might use the diffusible signal factor (DSF) type quorum sensing (QS) system to regulate the virulence factor production. However, little is known about the chemical structure of the DSF-like signal(s) produced by Xoo and the factors influencing the signal production.

RESULTS

Xoo genome harbours an rpf cluster comprising rpfB, rpfF, rpfC and rpfG. The proteins encoded by these genes are highly homologous to their counterparts in X. campestris pv. campestris (Xcc), suggesting that Xcc and Xoo might use similar mechanisms for DSF biosynthesis and autoregulation. Consistent with in silico analysis, the rpfF mutant was DSF-deficient and the rpfC mutant produced about 25 times higher DSF-like activity than the wild type Xoo strain KACC10331. From the supernatants of rpfC mutant, we purified three compounds showing strong DSF-like activity. Mass spectrometry and NMR analysis revealed that two of them were the previously characterized DSF and BDSF; the third one was a novel unsaturated fatty acid with 2 double bonds and was designated as CDSF in this study. Further analysis showed that all the three DSF-family signals were synthesized via the enzyme RpfF encoded by Xoo2868. DSF and BDSF at a final concentration of 3 microM to the rpfF mutant could fully restore its extracellular xylanase activity and EPS production to the wild type level, but CDSF was less active than DSF and BDSF in induction of EPS and xylanase. DSF and CDSF shared a similar cell density-dependent production time course with the maximum production being detected at 42 h after inoculation, whereas the maximum production of BDSF was observed at 36 h after inoculation. When grown in a rich medium such as YEB, LB, PSA, and NYG, Xoo produced all the three signals with the majority being DSF. Whereas in nutritionally poor XOLN medium Xoo only produced BDSF and DSF but the majority was BDSF.

CONCLUSIONS

This study demonstrates that Xoo and Xcc share the conserved mechanisms for DSF biosynthesis and autoregulation. Xoo produces DSF, BDSF and CDSF signals in rich media and CDSF is a novel signal in DSF-family with two double bonds. All the three DSF-family signals promote EPS production and xylanase activity in Xoo, but CDSF is less active than its analogues DSF and BDSF. The composition and ratio of the three DSF-family signals produced by Xoo are influenced by the composition of culture media.

摘要

背景

稻黄单胞菌(Xoo)是引起水稻细菌性条斑病的病原菌。Xoo 产生一系列毒力因子,包括 EPS、胞外酶、铁螯合铁载体和依赖 III 型分泌系统的效应子,这些因子共同构成了其毒力的基础。遗传和基因组学证据表明,Xoo 可能利用可扩散信号因子(DSF)型群体感应(QS)系统来调节毒力因子的产生。然而,关于 Xoo 产生的 DSF 样信号的化学结构以及影响信号产生的因素知之甚少。

结果

Xoo 基因组包含一个 rpf 簇,由 rpfB、rpfF、rpfC 和 rpfG 组成。这些基因编码的蛋白质与野油菜黄单胞菌 pv. campestris(Xcc)中的对应蛋白高度同源,表明 Xcc 和 Xoo 可能使用类似的机制来合成 DSF 和进行自身调控。与计算机分析一致,rpfF 突变体缺乏 DSF,而 rpfC 突变体产生的 DSF 样活性比野生型 Xoo 菌株 KACC10331 高约 25 倍。从 rpfC 突变体的上清液中,我们分离出三种具有强烈 DSF 样活性的化合物。质谱和 NMR 分析表明,其中两种是先前表征的 DSF 和 BDSF;第三种是一种具有 2 个双键的新型不饱和脂肪酸,在本研究中被命名为 CDSF。进一步的分析表明,所有三种 DSF 家族的信号都是由 Xoo2868 编码的酶 RpfF 合成的。终浓度为 3μM 的 DSF 和 BDSF 可使 rpfF 突变体的胞外木聚糖酶活性和 EPS 产量完全恢复到野生型水平,但 CDSF 的诱导 EPS 和木聚糖酶的活性比 DSF 和 BDSF 弱。DSF 和 CDSF 具有相似的细胞密度依赖性产生时间曲线,最大产量在接种后 42 小时检测到,而 BDSF 的最大产量在接种后 36 小时检测到。当在富含营养的 YEB、LB、PSA 和 NYG 等培养基中生长时,Xoo 产生了所有三种信号,其中大部分是 DSF。而在营养贫乏的 XOLN 培养基中,Xoo 只产生 BDSF 和 DSF,但大部分是 BDSF。

结论

本研究表明,Xoo 和 Xcc 共享 DSF 生物合成和自身调控的保守机制。Xoo 在富含营养的培养基中产生 DSF、BDSF 和 CDSF 信号,而 CDSF 是 DSF 家族中具有两个双键的新型信号。三种 DSF 家族的信号都能促进 Xoo 中 EPS 的产生和木聚糖酶的活性,但 CDSF 的活性比其类似物 DSF 和 BDSF 弱。Xoo 产生的三种 DSF 家族信号的组成和比例受培养基成分的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7aa5/2909994/39095d28046e/1471-2180-10-187-1.jpg

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