...
首页> 外文期刊>PLoS One >Investigation of the quorum-sensing regulon of the biocontrol bacterium Pseudomonas chlororaphis strain PA23
【24h】

Investigation of the quorum-sensing regulon of the biocontrol bacterium Pseudomonas chlororaphis strain PA23

机译:对生物防治细菌的批量传感调节突,氯吡咯菌菌株PA23

获取原文
           

摘要

Pseudomonas chlororaphis strain PA23 is a biocontrol agent capable of protecting canola from stem rot disease caused by the fungal pathogen Sclerotinia sclerotiorum . PA23 produces several inhibitory compounds that are under control of a complex regulatory network. Included in this cascade is the PhzRI quorum sensing (QS) system, which plays an essential role in PA23 biocontrol, as well as CsaRI and AurRI, which have not yet been characterized in PA23. The focus of the current study was to employ RNA sequencing to explore the spectrum of PA23 genes under QS control. In this work, we investigated genes under the control of the main QS transcriptional regulator, PhzR, as well as those differentially expressed in an AHL-deficient strain, PA23-6863, which constitutively expresses an AiiA lactonase, rendering the strain QS defective. Transcriptomic profiling revealed 545 differentially expressed genes (365 downregulated; 180 upregulated) in the phzR mutant and 534 genes (382 downregulated; 152 upregulated) in the AHL-deficient PA23-6863. In both strains, decreased expression of phenazine, pyrrolnitrin, and exoprotease biosynthetic genes was observed. We have previously reported that QS activates expression of these genes and their encoded products. In addition, elevated siderophore and decreased chitinase gene expression was observed in the QS-deficient stains, which was confirmed by phenotypic analysis. Inspection of the promoter regions revealed the presence of “ phz -box” sequences in only 58 of the 807 differentially expressed genes, suggesting that much of the QS regulon is indirectly regulated. Consistent with this notion, 41 transcriptional regulators displayed altered expression in one or both of the QS-deficient strains. Collectively, our findings indicate that QS governs expression of approximately 13% of the PA23 genome affecting diverse functions ranging from secondary metabolite production to general metabolism.
机译:假单胞菌氯吡咯菌株PA23是一种能够保护油菜免受真菌病原体Sclerotinia Sclerotumum引起的茎腐病的生物控制剂。 PA23产生几种抑制性化合物,其受到复杂的调节网络的控制。在本级组中包含的是PHZRI仲裁感应(QS)系统,它在PA23生物控制中起重要作用,以及尚未在PA23中表征的CSARI和Aurri。目前研究的重点是使用RNA测序来探讨QS控制下PA23基因的光谱。在这项工作中,我们在主Qs转录调节剂,PHZR的控制下研究了基因,以及在缺乏缺陷的菌株PA23-6863中差异表达的那些,其构成型表达AIIa酸菌素酶,使菌株QS有缺陷。转录组分析显示在PHZR突变体中的545个差异表达基因(365下调; 180上调),在AHL缺陷PA23-6863中,534个基因(382下调; 152上调)。在两种菌株中,观察到苯吡啶,吡咯嗪和外蛋白酶生物合成基因的表达减少。我们之前报道了QS激活这些基因的表达及其编码的产品。此外,在QS缺陷污渍中观察到升高的膀胱和降低的几丁质酶基因表达,其通过表型分析证实。检测启动子区域显示出在807个差异表达基因中仅58个“PHZ-轴”序列的存在,表明大部分QS调节件是间接调节的。与该观念一致,41个转录调节因子在缺乏缺陷型菌株中显示出改变的表达。统称,我们的研究结果表明,QS治理大约13%的PA23基因组的表达,影响从次级代谢产物生产到一般代谢的不同功能。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号