首页> 外文期刊>Molecular Plant-Microbe Interactions >Combination of Fluorescent Reporters for Simultaneous Monitoring of Root Colonization and Antifungal Gene Expression by a Biocontrol Pseudomonad on Cereals with Flow Cytometry
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Combination of Fluorescent Reporters for Simultaneous Monitoring of Root Colonization and Antifungal Gene Expression by a Biocontrol Pseudomonad on Cereals with Flow Cytometry

机译:流式细胞术联用荧光报告基因同时监测谷物中生物控制假单胞菌对根定殖和抗真菌基因表达的影响

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Some root-associated pseudomonads sustain plant growth by suppressing root diseases caused by pathogenic fungi. We investigated to which extent select cereal cultivars influence expression of relevant biocontrol traits (i.e., root colonization efficacy and antifungal activity) in Pseudomonas fluorescens CHA0. In this representative plant-beneficial bacterium, the antifungal metabolites 2,4-diacetylphloroglucinol (DAPG), pyrrolnitrin (PRN), pyoluteorin (PLT), and hydrogen cyanide (HCN) are required for biocontrol. To monitor host plant effects on the expression of biosynthetic genes for these compounds on roots, we developed fluorescent dual-color reporters suited for flow cytometric analysis using fluorescence-activated cell sorting (FACS). In the dual-label strains, the constitutively expressed red fluorescent protein mCherry served as a cell tag and marker for root colonization, whereas reporter fusions based on the green fluorescent protein allowed simultaneous recording of antifungal gene expression within the same cell. FACS analysis revealed that expression of DAPG and PRN biosynthetic genes was promoted in a cereal rhizosphere, whereas expression of PLT and HCN biosynthetic genes was markedly less sustained. When analyzing the response of the bacterial reporters on roots of a selection of wheat, spelt, and triticale cultivars, we were able to detect subtle species- and cultivar-dependent differences in colonization and DAPG and HCN gene expression levels. The expression of these biocontrol traits was particularly favored on roots of one spelt cultivar, suggesting that a careful choice of pseudomonad–cereal combinations might be beneficial to biocontrol. Our approach may be useful for selective single-cell level analysis of plant effects in other bacteria–root interactions.
机译:一些与根相关的假单胞菌通过抑制由致病性真菌引起的根部疾病来维持植物的生长。我们调查了选择的谷物品种在荧光假单胞菌CHA0中影响相关生物防治性状(即根定植功效和抗真菌活性)表达的程度。在这种具有代表性的植物有益细菌中,抗微生物代谢产物2,4-二乙酰基间苯三酚(DAPG),吡咯硝菌素(PRN),焦黄素(PLT)和氰化氢(HCN)是必需的。为了监测宿主植物对这些化合物在根上的生物合成基因表达的影响,我们开发了适用于使用荧光激活细胞分选(FACS)进行流式细胞术分析的荧光双色报告基因。在双标签菌株中,组成型表达的红色荧光蛋白mCherry用作根定植的细胞标签和标志物,而基于绿色荧光蛋白的报告基因融合蛋白可在同一细胞内同时记录抗真菌基因的表达。 FACS分析表明,在谷物根际中,DAPG和PRN生物合成基因的表达得到促进,而PLT和HCN生物合成基因的表达则明显较不持久。当分析细菌报告基因对选择的小麦,斯佩尔特小麦和黑小麦品种根部的反应时,我们能够检测到定居和DAPG和HCN基因表达水平的细微物种和品种依赖性。这些生物控制性状的表达在一个拼写品种的根部特别受青睐,这表明谨慎选择假单胞菌-谷物组合可能对生物控制有益。我们的方法可能对其他细菌-根系相互作用中植物效应的选择性单细胞水平分析有用。

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