Andreote Fernando Dini, de Araújo Welington L, de Azevedo João L, van Elsas Jan Dirk, da Rocha Ulisses Nunes, van Overbeek Leonard S
Plant Research International B.V., Wageningen, The Netherlands.
Appl Environ Microbiol. 2009 Jun;75(11):3396-406. doi: 10.1128/AEM.00491-09. Epub 2009 Mar 27.
Pseudomonas putida strain P9 is a novel competent endophyte from potato. P9 causes cultivar-dependent suppression of Phytophthora infestans. Colonization of the rhizoplane and endosphere of potato plants by P9 and its rifampin-resistant derivative P9R was studied. The purposes of this work were to follow the fate of P9 inside growing potato plants and to establish its effect on associated microbial communities. The effects of P9 and P9R inoculation were studied in two separate experiments. The roots of transplants of three different cultivars of potato were dipped in suspensions of P9 or P9R cells, and the plants were planted in soil. The fate of both strains was followed by examining colony growth and by performing PCR-denaturing gradient gel electrophoresis (PCR-DGGE). Colonies of both strains were recovered from rhizoplane and endosphere samples of all three cultivars at two growth stages. A conspicuous band, representing P9 and P9R, was found in all Pseudomonas PCR-DGGE fingerprints for treated plants. The numbers of P9R CFU and the P9R-specific band intensities for the different replicate samples were positively correlated, as determined by linear regression analysis. The effects of plant growth stage, genotype, and the presence of P9R on associated microbial communities were examined by multivariate and unweighted-pair group method with arithmetic mean cluster analyses of PCR-DGGE fingerprints. The presence of strain P9R had an effect on bacterial groups identified as Pseudomonas azotoformans, Pseudomonas veronii, and Pseudomonas syringae. In conclusion, strain P9 is an avid colonizer of potato plants, competing with microbial populations indigenous to the potato phytosphere. Bacterization with a biocontrol agent has an important and previously unexplored effect on plant-associated communities.
恶臭假单胞菌P9菌株是一种来自马铃薯的新型内生菌。P9会导致对致病疫霉的品种依赖性抑制。研究了P9及其利福平抗性衍生物P9R在马铃薯植株根际和内生菌中的定殖情况。这项工作的目的是追踪P9在生长中的马铃薯植株内的命运,并确定其对相关微生物群落的影响。在两个独立的实验中研究了P9和P9R接种的效果。将三种不同马铃薯品种的移栽苗根部浸入P9或P9R细胞悬液中,然后将植株种植在土壤中。通过检查菌落生长和进行PCR-变性梯度凝胶电泳(PCR-DGGE)来追踪两种菌株的命运。在两个生长阶段,从所有三个品种的根际和内生菌样本中都分离出了两种菌株的菌落。在处理过的植株的所有假单胞菌PCR-DGGE指纹图谱中都发现了一条代表P9和P9R的明显条带。通过线性回归分析确定,不同重复样本的P9R CFU数量和P9R特异性条带强度呈正相关。通过对PCR-DGGE指纹图谱进行多变量和算术平均非加权配对组法聚类分析,研究了植物生长阶段、基因型和P9R的存在对相关微生物群落的影响。菌株P9R的存在对被鉴定为氮假单胞菌、维罗纳假单胞菌和丁香假单胞菌的细菌群体有影响。总之,菌株P9是马铃薯植株的积极定殖者,与马铃薯根际微生物种群竞争。用生物防治剂进行细菌处理对植物相关群落有重要且以前未被探索的影响。