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Towards the Identification of Type III Effectors Associated with Ralstonia solanacearum Virulence on Tomato and Eggplant

机译:鉴定与番茄和茄子上青枯雷尔氏菌致病力相关的III型效应子

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摘要

For the development of pathogen-informed breeding strategies, identifying the microbial genes involved in interactions with the plant is a critical step. To identify type III effector (T3E) repertoires associated with virulence of the bacterial wilt pathogen Ralstonia solanacearum on Solanaceous crops, we used an original association genetics approach combining DNA microarray data and pathogenicity data on resistant eggplant, pepper, and tomato accessions. From this first screen, 25 T3Es were further full-length polymerase chain reaction-amplified within a 35-strain field collection, to assess their distribution and allelic diversity. Six T3E repertoire groups were identified, within which 11 representative strains were chosen to challenge the bacterial wilt-resistant eggplants 'Dingras multiple Purple' and 'AG91-25', and tomato Hawaii7996. The virulence or avirulence phenotypes could not be explained by specific T3E repertoires, but rather by individual T3E genes. We identified seven highly avirulence-associated genes, among which ripP2, primarily referenced as conferring avirulence to Arabidopsis thaliana. Interestingly, no T3E was associated with avirulence to both eggplants. Highly virulence-associated genes were also identified: ripA5_2, rip U, and ripV2. This study should be regarded as a first step toward investigating both avirulence and virulence function of the highlighted genes, but also their evolutionary dynamics in natural R. solanacearum populations.
机译:对于病原体育种策略的发展,确定与植物相互作用涉及的微生物基因是关键的一步。为了鉴定与茄科农作物上的细菌枯萎病原体青枯雷尔氏菌的毒力相关的III型效应子(T3E)组成,我们使用了一种原始的关联遗传学方法,结合了DNA芯片数据和抗性茄子,辣椒和番茄的病原性数据。从第一个筛选中,将25个T3Es进一步在35个菌株的现场收集物中扩增全长聚合酶链反应,以评估它们的分布和等位基因多样性。确定了6个T3E组合库组,其中选择了11个代表性菌株来挑战细菌抗枯萎的茄子“ Dingras Multiple Purple”和“ AG91-25”,以及番茄Hawaii7996。毒力或无毒力表型不能通过特定的T3E谱系来解释,而可以通过单个T3E基因来解释。我们鉴定了七个高度无毒力相关基因,其中ripP2主要被赋予拟南芥无毒力。有趣的是,没有T3E与两种茄子的无毒力有关。还确定了高度毒力相关的基因:ripA5_2,rip U和ripV2。这项研究应被视为研究突出基因的无毒力和毒力功能的第一步,也是研究其在自然茄科青枯菌种群中的进化动力学的第一步。

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