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苯乙酸是坚强芽孢杆菌IAGS162产生的综合应激反应(ISR)决定因素,它涉及番茄代谢组学的广泛重新调节以抵御枯萎病。

Phenylacetic Acid Is ISR Determinant Produced by Bacillus fortis IAGS162, Which Involves Extensive Re-modulation in Metabolomics of Tomato to Protect against Fusarium Wilt.

作者信息

Akram Waheed, Anjum Tehmina, Ali Basharat

机构信息

Institute of Molecular Biology and Biotechnology, University of Lahore Lahore, Pakistan.

Institute of Agricultural Sciences, University of the Punjab Lahore, Pakistan.

出版信息

Front Plant Sci. 2016 Apr 19;7:498. doi: 10.3389/fpls.2016.00498. eCollection 2016.

Abstract

Bacillus fortis IAGS162 has been previously shown to induce systemic resistance in tomato plants against Fusarium wilt disease. In the first phase of current study, the ISR determinant was isolated from extracellular metabolites of this bacterium. ISR bioassays combined with solvent extraction, column chromatography and GC/MS analysis proved that phenylacetic acid (PAA) was the potential ISR determinant that significantly ameliorated Fusarium wilt disease of tomato at concentrations of 0.1 and 1 mM. In the second phase, the biochemical basis of the induced systemic resistance (ISR) under influence of PAA was elucidated by performing non-targeted whole metabolomics through GC/MS analysis. Tomato plants were treated with PAA and fungal pathogen in various combinations. Exposure to PAA and subsequent pathogen challenge extensively re-modulated tomato metabolic networks along with defense related pathways. In addition, various phenylpropanoid precursors were significantly up-regulated in treatments receiving PAA. This work suggests that ISR elicitor released from B. fortis IAGS162 contributes to resistance against fungal pathogens through dynamic reprogramming of plant pathways that are functionally correlated with defense responses.

摘要

坚强芽孢杆菌IAGS162先前已被证明可诱导番茄植株对枯萎病产生系统抗性。在当前研究的第一阶段,从该细菌的细胞外代谢产物中分离出了诱导系统抗性的决定因素。通过溶剂萃取、柱色谱和气相色谱/质谱分析相结合的诱导系统抗性生物测定法证明,苯乙酸(PAA)是潜在的诱导系统抗性决定因素,在浓度为0.1和1 mM时可显著减轻番茄枯萎病。在第二阶段,通过气相色谱/质谱分析进行非靶向全代谢组学研究,阐明了在PAA影响下诱导系统抗性(ISR)的生化基础。番茄植株用PAA和真菌病原体进行了各种组合处理。暴露于PAA及随后的病原体攻击广泛地重新调节了番茄的代谢网络以及与防御相关的途径。此外,在接受PAA处理的植株中,各种苯丙烷类前体物质显著上调。这项工作表明,坚强芽孢杆菌IAGS162释放的诱导系统抗性激发子通过对与防御反应功能相关的植物途径进行动态重编程,有助于抵抗真菌病原体。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b39b/4835451/11cb435481f2/fpls-07-00498-g001.jpg

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