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Genetic Diversity and Characterization of Symbiotic Bacteria Isolated from Endemic Phaseolus Cultivars Located in Contrasting Agroecosystems in Venezuela

机译:在委内瑞拉造影樟脑体内生殖中分离的共生细菌的遗传多样性与表征

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摘要

Phaseolus vulgaris is a grain cultivated in vast areas of different countries. It is an excellent alternative to the other legumes in the Venezuelan diet and is of great agronomic interest due to its resistance to soil acidity, drought, and high temperatures. Phaseolus establishes symbiosis primarily with Rhizobium and Ensifer species in most countries, and this rhizobia-legume interaction has been studied in Asia, Africa, and the Americas. However, there is currently no evidence to show that rhizobia nodulate the endemic cultivars of P. vulgaris in Venezuela. Therefore, we herein investigated the phylogenetic diversity of plant growth-promoting and N2-fixing nodulating bacteria isolated from the root nodules of P. vulgaris cultivars in a different agroecosystem in Venezuela. In comparisons with other countries, higher diversity was found in isolates from P. vulgaris nodules, ranging from α- and β-proteobacteria. Some isolates belonging to several new phylogenetic lineages within Bradyrhizobium, Ensifer, and Mesorhizobium species were also specifically isolated at some topographical regions. Additionally, some isolates exhibited tolerance to high temperature, acidity, alkaline pH, salinity stress, and high Al levels; some of these characteristics may be related to the origin of the isolates. Some isolates showed high tolerance to Al toxicity as well as strong plant growth-promoting and antifungal activities, thereby providing a promising agricultural resource for inoculating crops.
机译:Pumploolus Ventgaris是一种在不同国家的广阔地区种植的谷物。它是委内瑞拉饮食中其他豆类的一个很好的替代方案,并且由于其对土壤酸度,干旱和高温的抵抗力而具有巨大的农艺兴趣。随着大多数国家,主要用根茎和Ensifer种类建立了共生,并在亚洲,非洲和美洲研究了这种根瘤菌豆类互动。然而,目前没有证据表明,根治病在委内瑞拉在寻常品种的文字品种。因此,我们在本文中研究了植物生长促进和N 2固定的促进委内瑞斯在委内瑞拉的不同农产品中的植物生长促进和N2固定的结节细菌的系统发育多样性。在与其他国家的比较方面,从P.Vulgaris Nodules的分离物中发现了更高的多样性,从α-和β-植物间体外发现。某些属于诸如在某些地形区域中的特异性分离出在Bradyrhizobium,Ensifer和Mesorhizobium物种中的几种新的系统发育谱系的分离物。另外,一些分离物表现出高温,酸度,碱性pH,盐度应力和高Al水平的耐受性;其中一些特征可能与分离物的起源有关。一些分离物对Al毒性以及强大的植物生长促进和抗真菌活动表现出高耐受性,从而提供了一种用于接种作物的有前途的农业资源。

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