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Early changes in apoplast composition associated with defence and disease in interactions between Phaseolus vulgaris and the halo blight pathogen Pseudomonas syringae pv. phaseolicola

机译:菜豆和晕疫病原体丁香假单胞菌PV之间相互作用中与防御和疾病相关的质外体组成的早期变化。菜豆

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摘要

The apoplast is the arena in which endophytic pathogens such as Pseudomonas syringae grow and interact with plant cells. Using metabolomic and ion analysis techniques, this study shows how the composition of Phaseolus vulgaris leaf apoplastic fluid changes during the first six hours of compatible and incompatible interactions with two strains of Pseudomonas syringae pv. phaseolicola (Pph) that differ in the presence of the genomic island PPHGI-1. Leaf inoculation with the avirulent island-carrying strain Pph 1302A elicited effector-triggered immunity (ETI) and resulted in specific changes in apoplast composition, including increases in conductivity, pH, citrate, γ-aminobutyrate (GABA) and K+, that are linked to the onset of plant defence responses. Other apoplastic changes, including increases in Ca2+, Fe2/3+ Mg2+, sucrose, β-cyanoalanine and several amino acids, occurred to a relatively similar extent in interactions with both Pph 1302A and the virulent, island-less strain Pph RJ3. Metabolic footprinting experiments established that Pph preferentially metabolizes malate, glucose and glutamate, but excludes certain other abundant apoplastic metabolites, including citrate and GABA, until preferred metabolites are depleted. These results demonstrate that Pph is well-adapted to the leaf apoplast metabolic environment and that loss of PPHGI-1 enables Pph to avoid changes in apoplast composition linked to plant defences.
机译:质外体是内生病原体,例如丁香假单胞菌在其中生长并与植物细胞相互作用的场所。使用代谢组学和离子分析技术,这项研究显示了菜豆叶脱质液的组成在与两种丁香假单胞菌pv菌株相容性和不相容性相互作用的前六个小时内如何变化。在基因岛PPHGI-1的存在上有所不同的菜豆(Pph)。用无毒岛携带菌株Pph 1302A接种叶片可引发效应触发的免疫(ETI),并导致质外体组成发生特定变化,包括电导率,pH,柠檬酸,γ-氨基丁酸(GABA)和K +的增加,与植物防御反应的开始。与Pph 1302A和有毒的无岛菌株Pph RJ3相互作用时,其他质外性变化(包括Ca2 +,Fe2 / 3 + Mg2 +,蔗糖,β-氰丙氨酸和几种氨基酸的增加)发生的程度相对相似。代谢足迹实验表明,Pph优先代谢苹果酸,葡萄糖和谷氨酸,但不包括某些其他丰富的质外性代谢物,包括柠檬酸盐和GABA,直到首选代谢物被耗尽。这些结果表明,Pph很好地适应了叶片的质外体代谢环境,而PPHGI-1的丢失使Pph能够避免与植物防御相关的质外体组成的变化。

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