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首页> 外文期刊>European Journal of Plant Pathology >Diversity of defence mechanisms in plant-oomycete interactions: a case study of Lactuca spp. and Bremia lactucae
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Diversity of defence mechanisms in plant-oomycete interactions: a case study of Lactuca spp. and Bremia lactucae

机译:植物与卵菌体相互作用中防御机制的多样性:以乳杆菌属为例。和乳杆菌

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摘要

Plant pathogenic oomycetes, including biotrophic downy mildews and hemibiotrophsecrotrophs such as Phytophthora and Pythium, cause enormous economic losses on cultivated crops. Lettuce breeders and growers face the threat of Bremia lactucae, the causal agent of lettuce downy mildew. This pathogen damages leaf tissues and lettuce heads and is also frequent on wild Asteraceae plants. The interactions of Lactuca spp. with B. lactucae (abbr. lettuce-Bremia) display extreme variability, due to a long co-evolutionary history. For this reason, during the last 30 years, the lettuce-Bremia pathosystem has been used as a model for many studies at the population, individual, organ, tissue, cellular, physiological and molecular levels, as well as on genetic variability and the genetics of host-parasite interactions. The first part of this review summarizes recent data on host-parasite specificity, host variability, resistance mechanisms and genetics of lettuce-Bremia interactions. The second part focuses on the development infection structures. Phenotypic expression of infection, behaviour of B. lactucae on leaf surfaces, the process of penetration, development of primary infection structures, hyphae and haustoria are discussed in relation to different resistance mechanisms. In the third part, the components of host resistance and the variability of defence responses are analysed. The role of reactive oxygen species (ROS), antioxidant enzymes, nitric oxide (NO), phenolic compounds, reorganization of cytoskeleton, electrolyte leakage, membrane damage, cell wall disruption, hypersensitive reaction and plant energetics are discussed in relation to defence responses. In general, the extreme variability of interactions between lettuce and Bremia, and their phenotypic expression, results from diversity of the genetic background. Different mechanisms of resistance are conditioned by an orchestra of defence responses at the tissue, cell, and molecular levels. The various events responsible for defence involve a complex interaction of the processes and reactions mentioned above. This review also provides an overview on the timing of pathogen development, host pathological anatomy, cytology and physiology of lettuce-Bremia associations. The significance of these factors on the expression of different resistance mechanisms (non-host and host resistance, race-specific and race non-specific resistance, field resistance) is discussed.
机译:植物病原性卵菌包括生物营养型霜霉病和半生物营养型/枯萎病菌(如疫霉菌和腐霉菌),对种植作物造成巨大的经济损失。生菜育种者和种植者面临着Bremia lactucae(生菜霜霉病的病原体)的威胁。这种病原体损害叶片组织和莴苣头,并且在野生菊科植物上也很常见。 Lactuca spp的相互作用。由于长期的共同进化史,与乳酸双歧杆菌(B.lactusuce-Bremia)结合使用具有极大的变异性。因此,在过去的30年中,莴苣-Bremia病理系统已被用作许多在人群,个体,器官,组织,细胞,生理和分子水平以及遗传变异性和遗传学研究的模型。宿主-寄生虫相互作用。本综述的第一部分总结了有关寄主-寄生虫特异性,寄主变异性,抗性机制和生菜-Bremia相互作用的遗传学的最新数据。第二部分着重于发展感染的结构。讨论了感染的表型表达,乳酸双歧杆菌在叶片表面的行为,渗透过程,初级感染结构的发育,菌丝和抽油器,它们与不同的抗性机制相关。第三部分分析了宿主抗性的组成和防御反应的变异性。讨论了与防御反应有关的活性氧(ROS),抗氧化酶,一氧化氮(NO),酚类化合物,细胞骨架重组,电解质泄漏,膜损伤,细胞壁破坏,超敏反应和植物能量的作用。通常,生菜和布鲁米亚之间的相互作用及其表型表达的极端变异性是遗传背景的多样性造成的。抵抗力的不同机制受组织,细胞和分子水平的防御反应乐团的制约。负责防御的各种事件涉及上述过程和反应的复杂相互作用。这篇综述还概述了病原体发展的时机,宿主病理解剖学,生菜-Bremia协会的细胞学和生理学。讨论了这些因素对不同抗性机制(非宿主和宿主抗性,种族特异性和种族非特异性抗性,田间抗性)表达的重要性。

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