首页> 外文期刊>Microbiological Research >Xanthomonas axonopodis pv. punicae depends on multiple non-TAL (Xop) T3SS effectors for its coveted growth inside the pomegranate plant through repressing the immune responses during bacterial blight development
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Xanthomonas axonopodis pv. punicae depends on multiple non-TAL (Xop) T3SS effectors for its coveted growth inside the pomegranate plant through repressing the immune responses during bacterial blight development

机译:Xanthomonas Axonopodis PV。 PUPICAE通过在细菌枯萎发育期间压制免疫应答,依赖于多个非TAL(XOP)T3SS的垂涎的生长效应,通过压制免疫应答

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摘要

Xanthomonas axonopodis pv. punicae (Xap), the bacterial blight pathogen of pomegranate, incurs substantial loss to yield and reduces export quality of this economically important fruit crop. During infection, the bacterium secretes six non-TAL (Xop) effectors into the pomegranate cells through a specialized type three secretion system (T3SS). Previously, we demonstrated the role of two key effectors, XopL and XopN in pathogenesis. Here, we investigate the role of rest effectors (XopC2, XopE1, XopQ and XopZ) on disease development. We generated null mutants for each individual effector and mutant bacterial suspension was infiltrated into pomegranate leaves. Compared to Xap wild, the mutant bacterial growth was reduced by 2.7-11.5 folds. The mutants produced lesser water-soaked lesions when infiltrated on leaves by 1.13-2.21 folds. Among the four effectors, XopC2 contributes highest for in planta bacterial growth and disease development. XopC2 efficiently suppressed the defense responses like callose deposition, reactive oxygen species (ROS) and the activation of immune responsive genes. Being a major contributor, we further characterize XopC2 for its subcellular localization, its protein structure and networking. XopC2 is localized to the plasma membrane of Nicotiana benthamiana like XopL and XopN. XopC2 is a 661 amino acids protein having 15 alpha and 17 beta helix. Our STRING and I-TASSER based analysis hinted that XopC2 interacts with multiple membrane localized plant proteins including transcription regulator of CCR4-NOT family, TTN of maintenance of chromosome family and serine/threonine-protein phosphatase 2A (PP2A) isoform. Based on the interaction it is predicted that XopC2 might involve in diverse functions like nuclear-transcribed mRNA catabolic process, maintenance of chromosome, hormone signaling and protein dephosphorylation activities and thereby suppress the plant immunity. Altogether, our study suggests that Xap largely depends on three non-TAL (Xop) effectors, including XopC2, XopL and XopN, to modulate pomegranate PTI for its unrestricted proliferation during bacterial blight development.
机译:Xanthomonas Axonopodis PV。 punicae(xap),石榴的细菌枯萎病原体,会产生大量的损失,从而降低了这种经济上重要的水果作物的出口质量。在感染期间,通过专用类型的三种分泌系统(T3SS)将六个非TAL(XOP)效应分泌到石榴细胞中。以前,我们证明了两个关键效应器,XOPL和XOPN在发病机制中的作用。在这里,我们调查休息效果(XOPC2,XOPE1,XOPQ和XOPZ)对疾病发展的作用。我们将每种效应器的Null突变体产生,突变细菌悬浮液被渗透到石榴叶中。与XAP野生相比,突变细菌生长减少了2.7-11.5倍。当在叶片上浸润1.13-2.21折叠时,突变体产生较小的水浸泡病变。在四种效应中,XOPC2在植物细菌生长和疾病发展中有助于最高。 XOPC2有效地抑制了胼舌,反应性氧物种(ROS)等防御反应和免疫应答基因的激活。作为主要的贡献者,我们进一步表征了XOPC2的亚细胞定位,其蛋白质结构和网络。 XOPC2局部地定位在XOPL和XOPN等尼古利亚纳·宾亚的血浆膜上。 XOPC2是具有15α和17β螺旋的661个氨基酸蛋白。我们的字符串和基于I-Tasser的分析暗示XOPC2与多个膜定位植物蛋白质相互作用,包括CCR4-NOT系列的转录调节剂,TTN的染色体家族和丝氨酸/苏氨酸 - 蛋白磷酸酶2a(pp2a)同种型。基于互动的基础,预测XOPC2可能涉及不同的功能,如核转录的mRNA分解代谢过程,染色体的维持,激素信号传导和蛋白质去磷酸化活性,从而抑制植物免疫力。我们的研究总共表明,XAP主要取决于三种非TAL(XOP)效应器,包括XOPC2,XOPL和XOPN,以调节石榴PTI在细菌枯萎的发育期间不受限制的增殖。

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