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Cytological and Transcriptional Dynamics Analysis of Host Plant Revealed Stage-Specific Biological Processes Related to Compatible Rice-Ustilaginoidea virens Interaction

机译:细胞和转录动力学分析的宿主植物揭示了与兼容水稻-稻瘟病菌相互作用的特定阶段生物过程

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摘要

Rice false smut, a fungal disease caused by Ustilaginoidea virens is becoming a severe detriment to rice production worldwide. However, little is known about the molecular response of rice to attacks by the smut pathogen. In this article, we define the initial infection process as having three stages: initial colonization on the pistil (stage 1, S1), amplification on the anther (stage 2, S2) and sporulation in the anther chambers (stage 3, S3). Based on the transcriptome of rice hosts in response to U. virens in two separate years, we identified 126, 204, and 580 specific regulated genes in their respective stages S1, S2, and S3, respectively, by excluding common expression patterns in other openly biotic/abiotic databases using bioinformatics. As the disease progresses, several stage-specific biological processes (BP) terms were distinctively enriched: “Phosphorylation” in stage S1, “PCD” in S2, and “Cell wall biogenesis” in S3, implying a concise signal cascade indicative of the tactics that smut pathogens use to control host rice cells during infection. 113 regulated genes were coexpressed among the three stages. They shared highly conserved promoter cis-element in the promoters in response to the regulation of WRKY and Myb for up-regulation, and ABA and Ca2+ for down regulation, indicating their potentially critical roles in signal transduction during rice-U. virens interaction. We further analyzed seven highly regulated unique genes; four were specific to pollen development, implying that pollen-related genes play critical roles in the establishment of rice susceptibility to U. virens. To my knowledge, this is the first report about probing of molecular response of rice to smut pathogen infection, which will greatly expand our understanding of the molecular events surrounding infection by rice false smut.
机译:稻曲丝病是由Ustilaginoidea virens引起的一种真菌病,正在严重危害全世界的稻米生产。但是,关于水稻对黑曲病病原菌侵袭的分子反应知之甚少。在本文中,我们将初始感染过程定义为三个阶段:在雌蕊上进行初始定居(第1阶段,S1),在花药上扩增(第2阶段,S2)和在花药室中形成孢子(第3阶段,S3)。基于水稻宿主在两个不同年份中对U. virens的应答的转录组,我们通过公开排除其他共同表达模式,分别鉴定了分别在S1,S2和S3阶段的126、204和580个特定调控基因。使用生物信息学的生物/非生物数据库。随着疾病的进展,几个阶段特定的生物过程(BP)术语得到了明显丰富:S1阶段为“磷酸化”,S2为“ PCD”,S3为“细胞壁生物发生”,这暗示了该策略的简洁信号级联黑曲病病原体在感染过程中用来控制宿主水稻细胞。在这三个阶段中共表达了113个调控基因。他们在启动子中共享高度保守的启动子顺式元件,以响应对WRKY和Myb的调节,从而上调,而ABA和Ca 2 + 的调节,表明其在信号转导中的潜在关键作用在饭U期间。处女互动。我们进一步分析了七个高度调控的独特基因。有四个是花粉发育特有的,这表明与花粉相关的基因在确定水稻对U. virens的敏感性中起关键作用。据我所知,这是关于水稻对黑穗病病原体感染的分子反应探测的第一份报道,这将大大扩大我们对水稻假黑穗病感染周围分子事件的了解。

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