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根癌农杆菌 Phytofirmans PsJN 通过诱导抗性激活保护拟南芥抵御丁香假单胞菌强毒株。

Paraburkholderia phytofirmans PsJN Protects Arabidopsis thaliana Against a Virulent Strain of Pseudomonas syringae Through the Activation of Induced Resistance.

机构信息

1 Laboratorio de Bioingeniería, Facultad de Ingeniería y Ciencias, Universidad Adolfo Ibáñez, Santiago, Chile.

3 Millennium Nucleus Center for Plant Systems and Synthetic Biology, Santiago, Chile; and.

出版信息

Mol Plant Microbe Interact. 2017 Mar;30(3):215-230. doi: 10.1094/MPMI-09-16-0192-R. Epub 2017 Mar 16.

Abstract

Paraburkholderia phytofirmans PsJN is a plant growth-promoting rhizobacterium (PGPR) that stimulates plant growth and improves tolerance to abiotic stresses. This study analyzed whether strain PsJN can reduce plant disease severity and proliferation of the virulent strain Pseudomonas syringae pv. tomato DC3000, in Arabidopsis plants, through the activation of induced resistance. Arabidopsis plants previously exposed to strain PsJN showed a reduction in disease severity and pathogen proliferation in leaves compared with noninoculated, infected plants. The plant defense-related genes WRKY54, PR1, ERF1, and PDF1.2 demonstrated increased and more rapid expression in strain PsJN-treated plants compared with noninoculated, infected plants. Transcriptional analyses and functional analysis using signaling mutant plants suggested that resistance to infection by DC3000 in plants treated with strain PsJN involves salicylic acid-, jasmonate-, and ethylene-signaling pathways to activate defense genes. Additionally, activation occurs through a specific PGPR-host recognition, being a necessary metabolically active state of the bacterium to trigger the resistance in Arabidopsis, with a strain PsJN-associated molecular pattern only partially involved in the resistance response. This study provides the first report on the mechanism used by the PGPR P. phytofirmans PsJN to protect A. thaliana against a widespread virulent pathogenic bacterium.

摘要

柏油假单胞菌 PsJN 是一种促进植物生长的根际细菌 (PGPR),它能刺激植物生长并提高植物对非生物胁迫的耐受性。本研究分析了菌株 PsJN 是否能通过诱导抗性来降低拟南芥植物的病害严重程度和毒性菌株丁香假单胞菌 pv。番茄 DC3000 的增殖。与未接种、感染的植物相比,先前接触过菌株 PsJN 的拟南芥植物叶片中的病害严重程度和病原体增殖均有所降低。与未接种、感染的植物相比,植物防御相关基因 WRKY54、PR1、ERF1 和 PDF1.2 在菌株 PsJN 处理的植物中表达增加且更为迅速。转录分析和利用信号突变体植物的功能分析表明,在菌株 PsJN 处理的植物中,对 DC3000 的感染具有抗性,涉及水杨酸、茉莉酸和乙烯信号通路来激活防御基因。此外,这种激活是通过特定的 PGPR-宿主识别来实现的,这是细菌触发拟南芥抗性所必需的代谢活跃状态,而菌株 PsJN 相关的分子模式仅部分参与了抗性反应。本研究首次报道了 PGPR 柏油假单胞菌 PsJN 用于保护拟南芥免受广泛流行的毒性病原菌侵害的机制。

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