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The Moss Physcomitrella patens as a Model System to Study Interactions between Plants and Phytopathogenic Fungi and Oomycetes

机译:苔藓小藓作为模型系统研究植物与植物致病真菌和卵菌之间的相互作用

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摘要

The moss Physcomitrella patens has a great potential as a model system to perform functional studies of plant interacting with microbial pathogens. P. patens is susceptible to fungal and oomycete infection, which colonize and multiply in plant tissues generating disease symptoms. In response to infection, P. patens activates defense mechanisms similar to those induced in flowering plants, including the accumulation of reactive oxygen species, cell death with hallmarks of programmed cell death, cell wall fortification, and induction of defense-related genes like PAL, LOX, CHS, and PR-1. Functional analysis of genes with possible roles in defense can be performed due to the high rate of homologous recombination present in this plant that enables targeted gene disruption. This paper reviews the current knowledge of defense responses activated in P. patens after pathogen assault and analyzes the advantages of using this plant to gain further insight into plant defense strategies.
机译:苔藓小立碗藓作为模型系统,具有进行植物与微生物病原体相互作用的功能研究的巨大潜力。 P. patens对真菌和卵菌很敏感,它们会在植物组织中定殖并繁殖,从而产生疾病症状。响应感染,P。patens会激活与开花植物中诱导的防御机制相似的防御机制,包括活性氧的积累,具有程序性细胞死亡特征的细胞死亡,细胞壁强化以及与防御相关的基因(如PAL)的诱导, LOX,CHS和PR-1。由于存在于该植物中的高同源重组率能够实现靶向基因破坏,因此可以对可能具有防御作用的基因进行功能分析。本文回顾了病原菌侵袭后在彭定康中激活的防御反应的当前知识,并分析了使用该植物的优势以进一步了解植物防御策略。

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