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Protection of Pepper Plants from Drought by Microbacterium sp. 3J1 by Modulation of the Plants Glutamine and α-ketoglutarate Content: A Comparative Metabolomics Approach

机译:辣椒对辣椒植物的抗性。通过调节植物谷氨酰胺和α-酮戊二酸含量的3J1:比较代谢组学方法

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摘要

Drought tolerance of plants such as tomato or pepper can be improved by their inoculation with rhizobacteria such as Microbacterium sp. 3J1. This interaction depends on the production of trehalose by the microorganisms that in turn modulate the phyto-hormone profile of the plant. In this work we describe the characterization of metabolic changes during the interaction of pepper plants with Microbacterium sp. 3J1 and of the microorganism alone over a period of drought. Our main findings include the observation that the plant responds to the presence of the microorganism by changing the C and N metabolism based on its glutamine and α-ketoglutarate content, these changes contribute to major changes in the concentration of molecules involved in the balance of the osmotic pressure. These include sugars and amino-acids; the concentration of antioxidant molecules, of metabolites involved in the production of phytohormones like ethylene, and of substrates used for lignin production such as ferulic and sinapic acids. Most of the altered metabolites of the plant when inoculated with Microbacterium sp. 3J1 in response to drought coincided with the profile of altered metabolites in the microorganism alone when subjected to drought, pointing to a response by which the plant relies on the microbe for the production of such metabolites. To our knowledge this is the first comparative study of the microbe colonized-plant and microbe alone metabolomes under drought stress.
机译:番茄或辣椒等植物的抗旱性可通过接种根际细菌(如Microbacterium sp。)来提高。 3J1。这种相互作用取决于微生物的海藻糖产生,而微生物又调节植物的植物激素特性。在这项工作中,我们描述了辣椒植物与微细菌菌种相互作用期间代谢变化的特征。 3J1和单独的微生物在干旱期间。我们的主要发现包括观察到植物通过基于谷氨酰胺和α-酮戊二酸的含量改变碳和氮代谢来响应微生物的存在,这些变化导致参与平衡的分子的浓度发生重大变化。渗透压。这些包括糖和氨基酸;抗氧化剂分子,参与生产植物激素(如乙烯)的代谢物以及用于木质素生产的底物(如阿魏酸和芥子酸)的浓度。接种Microbacterium sp。的植物中大多数改变的代谢产物。响应干旱的3J1与微生物在遭受干旱时仅在微生物中改变的代谢产物的分布相吻合,表明植物依赖微生物产生此类代谢产物的响应。据我们所知,这是干旱胁迫下微生物定植的植物和单独的微生物代谢组的首次比较研究。

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