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A Framework for the Selection of Plant Growth-Promoting Rhizobacteria Based on Bacterial Competence Mechanisms

机译:基于细菌能力机制选择植物生长促进无根杆菌的框架

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The use of plant growth-promoting rhizobacteria (PGPR) is increasingly meaningful for the development of more environmentally friendly agricultural practices. However, often the PGPR strains selected in the laboratory fail to confer the expected beneficial effects when evaluated in plant experiments. Insufficient rhizosphere colonization is pointed out as one of the causes. With the aim of minimizing this inconsistency, we propose that besides studying plant growth promotion traits (PGP), the screening strategy should include evaluation of the microbial phenotypes required for colonization and persistence. As a model, we carried out this strategy in three Rhizobium sp. strains that showed phosphorus solubilization ability and production of siderophores. All strains displayed colonization phenotypes like surface spreading, resistance to hydrogen peroxide, and formed biofilms. Regarding their ability to persist, biofilm formation was observed to be influenced by pH and the phosphorus nutrient provided in the growth media. Differences in the competence of the strains to use several carbon substrates were also detected. As part of our framework, we compared the phenotypic characteristics of the strains in a quantitative manner. The data analysis was integrated using a multicriteria decision analysis (MCDA). All our results were scored, weighted, and grouped as relevant for PGP, colonization, or persistence. MCDA demonstrated that, when the phenotypes related to PGP and colonization are weighted over those for persistence, strain B02 performs better than the other two Rhizobium sp. strains. The use of our framework could assist the selection of more competent strains to be tested in greenhouse and field trials.IMPORTANCE Numerous plant growth-promoting rhizobacteria (PGPR) have been inoculated into the soil with the aim of improving the supply of nutrients to crop plants and decreasing the requirement of chemical fertilizers. However, sometimes these microbes fail to competitively colonize the plant roots and rhizosphere. Hence, the plant growth promotion effect is not observed. Here, we describe a new screening strategy aiming at the selection of more competent PGPR. We evaluated bacterial phenotypes related to plant growth promotion, colonization, and persistence. Our results demonstrated that despite the fact that our Rhizobium sp. strains successfully solubilized phosphorus and produced siderophores, their abilities to spread over surfaces, resist hydrogen peroxide, and form biofilms varied. Additionally, a multicriteria decision analysis was used to analyze the data that originated from bacterial physiological characterizations. This analysis allowed us to innovatively evaluate each strain as a whole and compare the performances of the strains under hypothetical scenarios of bacterial-trait requirements.
机译:使用植物生长促进的根瘤菌(PGPR)对开发更环保的农业实践越来越意义。然而,通常在实验室中选择的PGPR菌株未能在植物实验中评估时赋予预期的有益效果。根际殖民化不足是指出的作为原因之一。目的是最小化这种不一致,我们提出除了研究植物生长促进特征(PGP)外,筛查策略应包括评估殖民化和持续性所需的微生物表型。作为一种模型,我们在三个根瘤馆SP中进行了这种策略。显示出磷溶解能力和施工的菌株的菌株。所有菌株都显示出殖民化表型,如表面扩散,耐过氧化氢,形成生物膜。关于它们持续的能力,观察到生物膜形成受到pH的影响和生长介质中提供的磷营养素。还检测了使用多种碳基材的菌株能力的差异。作为我们框架的一部分,我们将菌株的表型特性以定量的方式进行了比较。使用多标语决策分析(MCDA)集成了数据分析。我们的所有结果都被评分,加权,与PGP,殖民化或持久性相关。 MCDA证明,当与PGP和殖民相关的表型加权时,菌株B02比其他两个Rhizobium SP更好。菌株。我们的框架使用可以帮助选择温室和田间试验中的更有态度的菌株。分析众多植物生长促进的流脉(PGPR)被接种到土壤中,目的是改善作物植物的营养素供应并降低化肥的要求。然而,有时这些微生物不能竞争地竞争植物根系和根际。因此,未观察到植物生长促进效果。在这里,我们描述了一种新的筛选策略,旨在选择更能力的PGPR。我们评估了与植物生长促进,殖民化和持久性有关的细菌表型。我们的结果表明,尽管我们的Rhizobium sp是这样的事实。菌株成功地溶解磷并产生了散发体,它们在表面上传播的能力,抗蚀于过氧化氢,并形成生物膜变化。另外,使用多标语决策分析来分析源自细菌生理特征的数据。该分析使我们可以创新地评估每个菌株的整体,并在细菌性状要求的假设场景下比较菌株的性能。

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