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首页> 外文期刊>Frontiers in Plant Science >Arabidopsis thaliana: A Model Host Plant to Study Plant–Pathogen Interaction Using Rice False Smut Isolates of Ustilaginoidea virens
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Arabidopsis thaliana: A Model Host Plant to Study Plant–Pathogen Interaction Using Rice False Smut Isolates of Ustilaginoidea virens

机译:<斜视>拟南芥:模型宿主植物,用于使用水稻假SUT分离株

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摘要

Rice false smut fungus which is a biotrophic fungal pathogen causes an important rice disease and brings a severe damage where rice is cultivated. We established a new fungal-plant pathosystem where Ustilaginoidea virens was able to interact compatibly with the model plant Arabidopsis thaliana . Disease symptoms were apparent on the leaves of the plants after 6 days of post inoculation in the form of chlorosis. Cytological studies showed that U. virens caused a heavy infestation inside the cells of the chlorotic tissues. Development and colonization of aerial mycelia in association with floral organ, particularly on anther and stigma of the flowers after 3 weeks of post inoculation was evident which finally caused infection on the developing seeds and pod tissues. The fungus adopts a uniquely biotrophic infection strategy in roots and spreads without causing a loss of host cell viability. We have also demonstrated that U. virens isolates infect Arabidopsis and the plant subsequently activates different defense response mechanisms which are witnessed by the expression of pathogenesis-related genes, PR-1, PR-2, PR-5, PDF1.1 , and PDF1.2 . The established A. thaliana – U. virens pathosystem will now permit various follow-up molecular genetics and gene expression experiments to be performed to identify the defense signals and responses that restrict fungal hyphae colonization in planta and also provide initial evidence for tissue-adapted fungal infection strategies.
机译:水稻假缝泥菌是一种生物养殖真菌病原体导致重要的水稻疾病,并在培养水稻的严重损坏。我们建立了一种新的真菌植物疾病,乌斯蒂尔加里亚肽病毒能够与模型植物拟南芥拟合互相互动。在植物后6天以萎黄的形式接种后,植物的叶子在植物的叶子上显而易见。细胞学研究表明,美国病毒在氯化组织的细胞内引起了重的侵扰。在接种后3周后3周后花器官的空中菌丝菌菌丝病的发展和定殖,特别是在接种后3周后的花药和柱头,最终对显影种子和豆荚组织感染感染。真菌在根系中采用独特的生物养化策略,并在不导致宿主细胞活力丧失的情况下蔓延。我们还证明了美国弗吉斯分离有感染拟南芥,并且该工厂随后激活不同的防御响应机制,该机制通过表达相关基因的表达,PR-1,PR-2,PR-5,PDF1.1和PDF1目睹.2。建立的A. Thaliana - U. Vistens Pathosystem将允许进行各种随访的分子遗传学和基因表达实验,以确定限制Planta中真菌菌丝殖民化的防御信号和反应,并为组织适应的真菌提供初始证据感染策略。

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