首页> 美国卫生研究院文献>Genes >Global Regulator PhoP is Necessary for Motility Biofilm Formation Exoenzyme Production and Virulence of Xanthomonas citri Subsp. citri on Citrus Plants
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Global Regulator PhoP is Necessary for Motility Biofilm Formation Exoenzyme Production and Virulence of Xanthomonas citri Subsp. citri on Citrus Plants

机译:全球性调节剂PhoP对于Xanthomonas citri Subsp的运动性生物膜形成外切酶产生和毒力是必不可少的。柑橘植物上的柠檬

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摘要

Citrus canker caused by Xanthomonas citri subsp. citri is one of the most important bacterial diseases of citrus, impacting both plant growth and fruit quality. Identifying and elucidating the roles of genes associated with pathogenesis has aided our understanding of the molecular basis of citrus-bacteria interactions. However, the complex virulence mechanisms of X. citri subsp. citri are still not well understood. In this study, we characterized the role of PhoP in X. citri subsp. citri using a phoP deletion mutant, ΔphoP. Compared with wild-type strain XHG3, ΔphoP showed reduced motility, biofilm formation, as well as decreased production of cellulase, amylase, and polygalacturonase. In addition, the virulence of ΔphoP on citrus leaves was significantly decreased. To further understand the virulence mechanisms of X. citri subsp. citri, high-throughput RNA sequencing technology (RNA-Seq) was used to compare the transcriptomes of the wild-type and mutant strains. Analysis revealed 1017 differentially-expressed genes (DEGs), of which 614 were up-regulated and 403 were down-regulated in ΔphoP. Gene ontology functional enrichment and Kyoto Encyclopedia of Genes and Genomes pathway analyses suggested that the DEGs were enriched in flagellar assembly, two-component systems, histidine metabolism, bacterial chemotaxis, ABC transporters, and bacterial secretion systems. Our results showed that PhoP activates the expression of a large set of virulence genes, including 22 type III secretion system genes and 15 type III secretion system effector genes, as well as several genes involved in chemotaxis, and flagellar and histidine biosynthesis. Two-step reverse-transcription polymerase chain reaction analysis targeting 17 genes was used to validate the RNA-seq data, and confirmed that the expression of all 17 genes, except for that of virB1, decreased significantly. Our results suggest that PhoP interacts with a global signaling network to co-ordinate the expression of multiple virulence factors involved in modification and adaption to the host environment during infection.
机译:Xanthomonas citri subsp引起的柑橘溃疡病。柠檬是柑橘最重要的细菌性疾病之一,影响植物生长和果实品质。鉴定和阐明与发病机理相关的基因的作用,有助于我们理解柑橘-细菌相互作用的分子基础。但是,复杂的毒力机制的柑橘柠檬亚种。柠檬酸仍然不是很了解。在这项研究中,我们表征了PhoP在X.citri亚种中的作用。使用phoP缺失突变体ΔphoP的柠檬。与野生型菌株XHG3相比,ΔphoP显示出降低的运动性,生物膜形成以及纤维素酶,淀粉酶和聚半乳糖醛酸酶的产生减少。另外,柑橘叶片上ΔphoP的毒力显着降低。为了进一步了解X.citri亚种的毒力机制。 citri高通量RNA测序技术(RNA-Seq)用于比较野生型和突变菌株的转录组。分析显示1017个差异表达基因(DEG),其中614个上调基因和403个下调了ΔphoP基因。基因本体功能丰富和《京都议定书》的基因和基因组百科全书路径分析表明,DEGs富含鞭毛装配,两组分系统,组氨酸代谢,细菌趋化性,ABC转运蛋白和细菌分泌系统。我们的结果表明,PhoP激活大量毒力基因的表达,包括22种III型分泌系统基因和15种III型分泌系统效应基因,以及涉及趋化性,鞭毛和组氨酸生物合成的几个基因。使用针对17个基因的两步逆转录聚合酶链反应分析来验证RNA-seq数据,并确认除virB1外,所有17个基因的表达均显着下降。我们的结果表明,PhoP与全球信号网络相互作用,以协调感染过程中参与修饰和适应宿主环境的多种毒力因子的表达。

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