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A Cross-Metabolomic Approach Shows that Wheat Interferes with Fluorescent

机译:交叉代谢方法表明小麦干扰了荧光灯

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摘要

Roots contain a wide variety of secondary metabolites. Some of them are exudated in the rhizosphere, where they are able to attract and/or control a large diversity of microbial species. In return, the rhizomicrobiota can promote plant health and development. Some rhizobacteria belonging to the Pseudomonas genus are known to produce a wide diversity of secondary metabolites that can exert a biological activity on the host plant and on other soil microorganisms. Nevertheless, the impact of the host plant on the production of bioactive metabolites by Pseudomonas is still poorly understood. To characterize the impact of plants on the secondary metabolism of Pseudomonas, a cross-metabolomic approach has been developed. Five different fluorescent Pseudomonas strains were thus cultivated in the presence of a low concentration of wheat root extracts recovered from three wheat genotypes. Analysis of our metabolomic workflow revealed that the production of several Pseudomonas secondary metabolites was significantly modulated when bacteria were cultivated with root extracts, including metabolites involved in plant-beneficial properties.
机译:根含有各种各样的次生代谢物。其中一些在根际被渗出,它们能够吸引和/或控制大的多样性微生物物种。作为回报,Rhizomicrobiota可以促进植物健康和发展。已知一些属于假单胞菌属的根瘤菌,产生广泛的多样性二次代谢物,可以在宿主植物和其他土壤微生物上发挥生物活性。然而,宿主植物对伪霉菌生物活性代谢物的影响仍然很差。为了表征植物对假单胞菌次级代谢的影响,已经开发了一种交叉代谢方法。因此在从三个小麦基因型中回收的低浓度的小麦根提取物存在下培养五种不同的荧光假单胞菌菌株。当用根提取物培养细菌时,我们的代谢物工作流程分析显示,当用根提取物培养细菌时,显着调节了几种副代谢物,包括参与植物有益特性的代谢物。

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