Vacheron Jordan, Moënne-Loccoz Yvan, Dubost Audrey, Gonçalves-Martins Maximilien, Muller Daniel, Prigent-Combaret Claire
Université de LyonLyon, France; Université Lyon 1Villeurbanne, France; CNRS, UMR5557, Ecologie MicrobienneVilleurbanne, France; INRA, UMR1418Villeurbanne, France.
Front Plant Sci. 2016 Aug 25;7:1212. doi: 10.3389/fpls.2016.01212. eCollection 2016.
Plant Growth-Promoting Rhizobacteria (PGPR) enhance plant health and growth using a variety of traits. Effective PGPR strains typically exhibit multiple plant-beneficial properties, but whether they are better adapted to the rhizosphere than PGPR strains with fewer plant-beneficial properties is unknown. Here, we tested the hypothesis that strains with higher numbers of plant-beneficial properties would be preferentially selected by plant roots. To this end, the co-occurrence of 18 properties involved in enhanced plant nutrition, plant hormone modulation, or pathogen inhibition was analyzed by molecular and biochemical methods in a collection of maize rhizosphere and bulk soil isolates of fluorescent Pseudomonas. Twelve plant-beneficial properties were found among the 698 isolates. Contrarily to expectation, maize preferentially selected pseudomonads with low numbers of plant-beneficial properties (up to five). This selection was not due to the predominance of strains with specific assortments of these properties, or with specific taxonomic status. Therefore, the occurrence of only few plant-beneficial properties appeared favorable for root colonization by pseudomonads.
植物促生根际细菌(PGPR)通过多种特性促进植物健康和生长。有效的PGPR菌株通常表现出多种对植物有益的特性,但与具有较少植物有益特性的PGPR菌株相比,它们是否更适应根际环境尚不清楚。在此,我们检验了一个假设,即具有更多植物有益特性的菌株会被植物根系优先选择。为此,我们通过分子和生化方法,分析了从玉米根际和根际外土壤中分离得到的荧光假单胞菌菌株集合中,18种与增强植物营养、调节植物激素或抑制病原体有关的特性的共存情况。在698个分离菌株中发现了12种对植物有益的特性。与预期相反,玉米优先选择了具有较少植物有益特性(最多五种)的假单胞菌。这种选择并非由于具有这些特性特定组合或特定分类地位的菌株占优势。因此,仅出现少数植物有益特性似乎有利于假单胞菌在根部定殖。