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Cryptococcus laurentii controls gray mold of cherry tomato fruit via modulation of ethylene-associated immune responses

机译:劳氏隐球菌通过调节乙烯相关的免疫应答来控制樱桃番茄果实的灰霉病

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This research aimed to investigate the roles of phytohormone ethylene in cherry tomato fruit immune response against gray mold caused by Botrytis cinerea. Pretreatment with antagonistic yeast Cryptococcus laurentii resulted in a significantly decreased disease incidence of B. cinerea infection, and accompanied by a burst of ethylene production in the whole fruit. Blocking the ethylene perception by adding 1-MCP (5 mu L L-1 or greater) remarkably weaken the protection ability of fruit itself and suppressed the C. laurentii-stimulated host immune response. 5 mu L L-1 1-MCP prefumigation decreased the expression of ethylene biosynthesis and perception related genes SlACO1, SlACS2, SlERF1, SlPti5 and SlMPK3, and ethylene production in C. laurentii treated fruit. Consequently, the expressions of SlCHI9, SlGlub, SlPAL3, SlPR1 and SlPR5 up-regulated by the yeast were all impaired to different degrees by the 1-MCP prefumigation. These findings demonstrate that ethylene contributes to fruit immunity and C. laurentii-mediated immune responses of cherry tomato.
机译:本研究旨在探讨植物激素乙烯在樱桃番茄果实对灰霉病引起的灰霉病免疫应答中的作用。用拮抗酵母劳伦隐球菌预处理可大大降低灰葡萄芽孢杆菌感染的发病率,并伴随整个果实中乙烯产量的爆发。通过添加1-MCP(5μL L-1或更高)来阻止乙烯的感知,会显着削弱水果本身的保护能力,并抑制劳伦梭菌刺激的宿主免疫反应。 5μL L-1 1-MCP预熏蒸降低了劳氏梭状芽孢杆菌处理过的果实中乙烯生物合成和感知相关基因SlaCO1,SlACS2,SlERF1,SlPti5和SlMPK3的表达,并降低了乙烯的产量。因此,被酵母上调的SlCHI9,SlGlub,SlPAL3,SlPR1和SlPR5的表达均通过1-MCP预熏蒸在不同程度上受损。这些发现表明乙烯有助于樱桃番茄的水果免疫和劳伦梭菌介导的免疫反应。

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