首页> 美国卫生研究院文献>Journal of Bacteriology >KdgR an IClR Family Transcriptional Regulator Inhibits Virulence Mainly by Repression of hrp Genes in Xanthomonas oryzae pv. oryzae
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KdgR an IClR Family Transcriptional Regulator Inhibits Virulence Mainly by Repression of hrp Genes in Xanthomonas oryzae pv. oryzae

机译:KdgRIClR家族的转录调节因子主要是通过抑制水稻Xanthomonas oryzae pv中的hrp基因来抑制毒力。水稻

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摘要

KdgR has been reported to negatively regulate the genes involved in degradation and metabolization of pectic acid and other extracellular enzymes in soft-rotting Erwinia spp. through direct binding to their promoters. The possible involvement of a KdgR orthologue in virulence by affecting the expression of extracellular enzymes in Xanthomonas oryzae pv. oryzae, the causal agent of rice blight disease, was examined by comparing virulence and regulation of extracellular enzymes between the wild type (WT) and a strain carrying a mutation in putative kdgR (ΔXoo0310 mutant). This putative kdgR mutant of X. oryzae pv. oryzae showed increased pathogenicity on rice without affecting the regulation of extracellular enzymes, such as amylase, cellulase, xylanase, and protease. However, the mutant carrying a mutation in an ortholog of xpsL, which encodes the functional secretion machinery for the extracellular enzymes, showed a dramatic decrease in pathogenicity on rice. Both mutants of kdgR and of xpsL orthologs showed higher expression of two major hrp regulatory genes, hrpG and hrpX, and the genes in the hrp operons when grown in hrp-inducing medium. Thus, both genes were shown to be involved in repression of hrp genes. The kdgR ortholog was thought to suppress virulence mainly by repressing the expression of hrp genes without affecting the expression of extracellular enzymes, unlike findings for the kdgR gene in soft-rotting Erwinia spp. On the other hand, xpsL was confirmed to be involved in virulence by promoting the secretion of extracellular enzymes in spite of repressing the expression of the hrp genes.
机译:据报道,KdgR负调控与软腐烂欧文氏菌属中果胶酸和其他细胞外酶降解和代谢有关的基因。通过直接与其启动子结合。 KdgR直向同源物可能会通过影响稻草黄单胞菌pv中细胞外酶的表达而参与毒性。通过比较野生型(WT)与携带假定的kdgR突变的菌株(ΔXoo0310突变体)之间的毒力和细胞外酶的调控,研究了稻瘟病的病因。米曲霉PV的该推定的kdgR突变体。稻米显示出对水稻的致病性增加,而没有影响淀粉酶,纤维素酶,木聚糖酶和蛋白酶等细胞外酶的调控。但是,在xpsL直系同源物中携带突变的突变体,其编码胞外酶的功能性分泌机制,显示出对水稻致病性的显着降低。当在hrp诱导培养基中生长时,kdgR和xpsL直向同源物的两个突变体均显示出两个主要的hrp调节基因hrpG和hrpX以及hrp操纵子中的基因的更高表达。因此,两个基因均显示出与hrp基因的抑制有关。人们认为kdgR直系同源物主要通过抑制 hrp 基因的表达而抑制毒力,而不影响细胞外酶的表达,这与软腐烂 kdgR 基因的发现不同class =“ genus-species”> Erwinia spp。另一方面,尽管抑制了 hrp 基因的表达,但 xpsL 仍通过促进细胞外酶的分泌而参与了毒力的测定。

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