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Identification of seven Xanthomonas oryzae pv. oryzicola genes potentially involved in pathogenesis in rice

机译:鉴定七Xanthomonas oryzae pv。 Oryzicola基因可能涉及水稻中发病机制

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Xanthomonas oryzae pv. oryzicola (Xoc) causes bacterial leaf streak (BLS) in rice, an emerging and destructive disease worldwide. Identification of key virulence factors is a prerequisite for understanding the pathogenesis of Xoc. In this study, a Tn5-tagged mutant library of Xoc strain RS105 was screened on rice, and 27 Tn5 mutants were identified that were either non-pathogenic or showed reduced virulence in rice. Fourteen of the non-pathogenic mutants were also unable to elicit the hypersensitive response (HR) in tobacco and were designated Pth?/HR? mutants; 13 mutants showed attenuated virulence and were able to induce an HR (Vir?/HR+). Sequence analysis of the Tn5-tagged genes indicated that the 14 Pth?/HR? mutants included mutations in hrcC, hrcT, hrcV, hpaP, hrcQ, hrpF, hrpG and hrpX. The 13 Vir?/HR+ mutants included tal-C10c-like (a transcriptional activator-like TAL effector), rpfC (regulator of pathogenicity factors), oxyR (oxidative stress transcriptional regulator), dsbC (disulfide isomerase), opgH (glucan biosynthesis glucosyltransferase H), rfbA (glucose-1-phosphate thymidylyltransferase), amtR (aminotransferase), purF (amidophosphoribosyltransferase), thrC (threonine synthase), trpA (tryptophan synthase alpha subunit) and three genes encoding hypothetical proteins (Xoryp_02235, Xoryp_00885 and Xoryp_22910). Collectively, the 27 Tn5 insertions are located in 21 different open reading frames. Bacterial growth and in planta virulence assays demonstrated that opgH, purF, thrC, trpA, Xoryp_02235, Xoryp_00885 and Xoryp_22910 are candidate virulence genes involved in Xoc pathogenesis. Reduced virulence in 13 mutants was restored to wild-type levels when the cognate gene was introduced in trans. Expression profiles demonstrated that the seven candidate virulence genes were significantly induced in planta, although their roles in Xoc pathogenesis remain unclear.
机译:Xanthomonas oryzae pv。 Oryzicola(xoc)在全世界的稻米,新兴和破坏性疾病中导致细菌叶片条纹(BLS)。关键毒力因子的鉴定是理解XOC发病机制的先决条件。在该研究中,筛选XOC菌株RS105的TN5标记突变体文库在水稻上筛选,鉴定了27个TN5突变体,其在水稻中是非致病性的或表现出降低的毒力。十四个非致病突变体也不能引发烟草中的过敏反应(HR),并指定PTH?/ hr?突变体; 13个突变体显示出衰减的毒力,并且能够诱导HR(VIR?/ hr +)。 TN5标记基因的序列分析表明,14 pth?/ hr?突变体包括HRCC,HRCT,HRCV,HPAP,HRCQ,HRPF,HRPG和HRPX中的突变。 13个病毒?/ hr +突变体包括Tal-C10C样(转录活化剂样TAL效应器),RPFC(致病性因子调节因子),OxyR(氧化应激转录调节剂),DSBC(二硫化物异构酶),OPGH(葡聚糖生物合成葡萄糖酰转移酶H),RFBA(葡萄糖-1-磷酸脂肪酸脂肪酰转移酶),AMTR(氨基转移酶),pURF(酰氨酸亚基溶胶转移酶),THRC(苏氨酸合酶),TRPA(色氨酸合酶α亚基)和编码假想蛋白的三个基因(Xoryp_02235,Xoryp_00885和Xoryp_22910)。统称,27个TN5插入位于21个不同的开放阅读框架中。细菌生长和植物毒力测定证明了OPGH,PURF,THRC,TRPA,XoryP_02235,XoryP_00885和XoryP_22910是XOC发病机制中涉及的候选毒力基因。当在反式中引入同源基因时,将13个突变体中的毒力降低至野生型水平。表达谱证明了七种候选毒力基因在植物中显着诱导,尽管它们在XOC发病机制中的作用仍然不清楚。

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