首页> 外文期刊>Molecular Plant-Microbe Interactions >Genius Architect or Clever Thief-How Plasmodiophora brassicae Reprograms Host Development to Establish a Pathogen-Oriented Physiological Sink
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Genius Architect or Clever Thief-How Plasmodiophora brassicae Reprograms Host Development to Establish a Pathogen-Oriented Physiological Sink

机译:Genius建筑师或聪明的窃贼 - 如何重新编程主持人发展,以建立一种病原体导向的生理汇

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When plants are infected by Plasmodiophora brassicae, their developmental programs are subjected to extensive changes and the resultant clubroot disease is associated with formation of large galls on underground tissue. The pathogen's need to build an efficient feeding site as the disease progresses drives these changes, ensuring successful production of resting spores. This developmental reprogramming is an outcome of interactions between the pathogen and the infected host. During disease progression, we can observe alteration of growth regulator dynamics, patterns of cell proliferation and differentiation, increased cell expansion, and eventual cell wall degradation as well as the redirection of nutrients toward the pathogen. Recently, detailed studies of anatomical changes occurring during infection and studies profiling transcriptional responses have come together to provide a clearer understanding of the sequence of events and processes underlying clubroot disease. Additionally, genome sequencing projects have revealed P. brassicae's potential for the production of signaling molecules and effectors as well as its requirements and capacities with respect to taking up host nutrients. Integration of these new findings together with physiological studies can significantly advance our understanding of how P. brassicae brings about reprogramming of host development. This article summarizes the current state of knowledge on cellular changes induced by P. brassicae infection and aims to explain their impact and importance for both the host and the pathogen.
机译:当植物受到疟原虫的感染时,它们的发育方案受到广泛的变化,所得的脱气疾病与地下组织上的大胆形成相关。由于疾病的进展,病原体需要构建有效的饲养场,这确保了成功生产休息的孢子。这种发展重编程是病原体和感染宿主之间的相互作用的结果。在疾病进展期间,我们可以观察到生长调节剂动力学的改变,细胞增殖模式和分化,增加细胞膨胀,以及最终细胞壁降解以及营养素对病原体的重定向。最近,在感染期间发生的解剖变化和研究分析转录反应的详细研究已经融合在一起,以便更清楚地了解潜在的干药疾病的事件序列和过程。此外,基因组测序项目揭示了P. Brassicae对产生信号分子和效应器的潜力以及其对占宿主营养素的要求和能力。这些新发现与生理学研究的整合可以显着推进我们对P. Brassicae如何带来宿主发展的重新编程的理解。本文总结了目前关于P. Brassicae感染诱导的细胞变化的知识状态,并旨在解释其对宿主和病原体的影响和重要性。

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