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In vitro antagonistic activity plant growth promoting traits and phylogenetic affiliation of rhizobacteria associated with wild plants grown in arid soil

机译:与在干旱土壤中生长的野生植物相关的根际细菌的体外拮抗活性促进植物生长的性状和系统发生亲缘关系

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摘要

The role of plant growth-promoting rhizobacteria (PGPR) in adaptation of plants in extreme environments is not yet completely understood. For this study native bacteria were isolated from rhizospeheric arid soils and evaluated for both growth-promoting abilities and antagonistic potential against phytopathogenic fungi and nematodes. The phylogentic affiliation of these representative isolates was also characterized. Rhizobacteria associated with 11 wild plant species from the arid soil of Almadinah Almunawarah, Kingdom of Saudi Arabia (KSA) were investigated. From a total of 531 isolates, only 66 bacterial isolates were selected based on their ability to inhibit Fusarium oxysporum, and Sclerotinia sclerotiorum. The selected isolates were screened in vitro for activities related to plant nutrition and plant growth regulation as well as for antifungal and nematicidal traits. Isolated bacteria were found to exhibit capabilities in fix atmospheric nitrogen, produce ammonia, indoleacetic acid (IAA), siderophores, solubilize phosphate and zinc, and showed an antagonistic potential against some phytopathogenic fungi and one nematode species (Meloidogyne incognita) to various extent. Isolates were ranked by their potential ability to function as PGPR. The 66 isolates were genotyped using amplified rDNA restriction analysis (ARDRA) and 16S rRNA gene sequence analysis. The taxonomic composition of the representative genotypes from both rhizosphere and rhizoplane comprised Bacillus, Enterobacter and Pseudomonas. Out of the 10 genotypes, three strains designated as PHP03, CCP05, and TAP02 might be regarded as novel strains based on their low similarity percentages and high bootstrap values. The present study clearly identified specific traits in the isolated rhizobacteria, which make them good candidates as PGPR and might contribute to plant adaption to arid environments. Application of such results in agricultural fields may improve and enhance plant growth in arid soils.
机译:尚未完全了解促进植物生长的根际细菌(PGPR)在植物适应极端环境中的作用。在本研究中,从根茎类干旱土壤中分离出天然细菌,并评估了其对植物致病真菌和线虫的生长促进能力和拮抗潜力。这些代表性分离株的系统亲缘关系也进行了表征。调查了与沙特阿拉伯王国(Alterinah Almunawarah)干旱土壤中11种野生植物物种相关的根际细菌(KSA)。从总共531株分离物中,仅根据其抑制尖孢镰刀菌和核盘菌的能力选择了66种细菌。在体外筛选所选择的分离物与植物营养和植物生长调节有关的活性以及抗真菌和杀线虫性状。发现分离出的细菌具有固定大气氮,生产氨,吲哚乙酸(IAA),铁载体,溶解磷酸盐和锌的能力,并在不同程度上显示出对某些植物病原真菌和一种线虫物种(Meloidogyne incognita)的拮抗潜力。隔离株按其作为PGPR的潜在能力进行排名。使用扩增的rDNA限制分析(ARDRA)和16S rRNA基因序列分析对66个分离株进行基因分型。来自根际和根际平面的代表性基因型的分类学组成包括芽孢杆菌,肠杆菌和假单胞菌。在这10个基因型中,基于它们的低相似百分比和高自举值,可以将三个命名为PHP03,CCP05和TAP02的菌株视为新菌株。本研究清楚地确定了分离的根际细菌的特定性状,使其成为PGPR的良好候选者,并可能有助于植物适应干旱环境。在农业领域中应用此类结果可能会改善和增强干旱土壤中的植物生长。

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