首页> 外文期刊>Journal of general plant pathology >Flood inoculation of seedlings on culture medium to study interactions between Pseudomonas syringae pv. actinidiae and kiwifruit
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Flood inoculation of seedlings on culture medium to study interactions between Pseudomonas syringae pv. actinidiae and kiwifruit

机译:洪水在培养基上接种幼苗,研究假单胞菌皂苷PV的相互作用。 Actinidiae和Kiwifruit.

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摘要

Bacterial canker of kiwifruit caused by Pseudomonas syringae pv. actinidiae (Psa) is a serious threat to kiwifruit production. Highly virulent strains of Psa biovar3 (Psa3) have spread rapidly to kiwifruit production areas worldwide. Therefore, there is an urgent need to develop critical management strategies for bacterial canker based on dissecting the interactions between Psa and kiwifruit. Here, we developed a rapid and reliable flood-inoculation method using kiwifruit seedlings grown on Murashige and Skoog medium. This method has several advantages over inoculation of conventional soil-grown plants. We demonstrated the utility of a kiwifruit seedling assay to study the virulence of Psa biovars and Psa3 virulence factors, including the type III secretion system (T3SS). Kiwifruit seedlings inoculated with Psa3 developed severe necrosis within 1 week, whereas those inoculated with a T3SS-deficient hrcN mutant of Psa3 did not. This method was also useful for analyzing expression profiles of genes involved in Psa3 virulence during infection, and revealed that the expression of genes encoding the T3SS and type III secreted effectors were strongly induced in planta. Our results indicate that the T3SS has an important role in Psa3 virulence, and the flood-inoculation assay using kiwifruit seedling is suitable for analyzing Psa and kiwifruit interactions.
机译:由Pseudomonas syringae pv引起的猕猴桃细菌溃疡。 Actinidiae(PSA)对Kiwifruit生产的严重威胁。高度毒性的PSA Biovar3(PSA3)迅速蔓延到全球猕猴桃生产区域。因此,迫切需要为基于解剖PSA和Kiwifruit之间的相互作用,为细菌溃疡进行关键管理策略。在这里,我们开发了一种利用Murashige和Skoog培养基种植的猕猴桃幼苗的快速可靠的洪水接种方法。该方法对接种传统的土壤生长植物具有若干优点。我们证明了猕猴桃幼苗测定的效用,研究了PSA Biovars和PSA3毒力因子的毒力,包括III型分泌系统(T3S)。随着PSA3接种的Kiwifruit幼苗在1周内发育严重的坏死,而用T3SS缺陷的PSA3接种的幼苗没有。该方法对于在感染期间分析参与PSA3毒力的基因的表达谱也是有用的,并且揭示了编码T3S和III型分泌效应的基因的表达被强烈诱导在Planta中。我们的结果表明,T3SS在PSA3毒力中具有重要作用,使用猕猴桃幼苗的洪水接种测定适用于分析PSA和猕猴桃相互作用。

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