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Phylogenetic Analysis of Symbiotic Bacteria Associated with Two Vigna Species under Different Agro-Ecological Conditions in Venezuela

机译:委内瑞拉不同农业生态条件下与两种豇豆物种相关的共生细菌的系统发育分析

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摘要

Vigna is a genus of legumes cultivated in specific areas of tropical countries. Species in this genus are important crops worldwide. Vigna species are of great agronomic interest in Venezuela because Vigna beans are an excellent alternative to other legumes. However, this type of crop has some cultivation issues due to sensitivity to acidic soils, high temperatures, and salinity stress, which are common in Venezuela. Vigna species establish symbioses mainly with Bradyrhizobium and Ensifer, and Vigna-rhizobia interactions have been examined in Asia, Africa, and America. However, the identities of the rhizobia associated with V. radiata and V. unguiculata in Venezuela remain unknown. In the present study, we isolated Venezuelan symbiotic rhizobia associated with Vigna species from soils with contrasting agroecosystems or from fields in Venezuela. Several types of soils were used for bacterial isolation and nodules were sampled from environments characterized by abiotic stressors, such as high temperatures, high concentrations of NaCl, and acidic or alkaline pH. Venezuelan Vigna-rhizobia were mainly fast-growing. Sequencing of several housekeeping genes showed that in contrast to other continents, Venezuelan Vigna species were nodulated by rhizobia genus including Burkholderia, containing bacteria from several new phylogenetic lineages within the genus Bradyrhizobium. Some Rhizobium and Bradyrhizobium isolates were tolerant of high salinity and Al toxicity. The stress tolerance of strains was dependent on the type of rhizobia, soil origin, and cultivation history. An isolate classified as R. phaseoli showed the highest plant biomass, nitrogen fixation, and excellent abiotic stress response, suggesting a novel promising inoculant for Vigna cultivation in Venezuela.
机译:Vigna是在热带国家的特定地区种植的豆类属。该属的物种是全球重要的作物。 Vigna物种在委内瑞拉的巨大农艺兴趣,因为Vigna Beans是对其他豆类的绝佳替代品。然而,这种类型的作物由于对酸性土壤,高温和盐度应力的敏感性而具有一些培养问题,这在委内瑞拉常见。 Vigna物种主要与Bradyrhizobium和Ensifer建立了Symbioss,并且在亚洲,非洲和美国审查了Vigna-Rhizobia互动。然而,与V.Radiata和V. venezuela的varguiculata相关的根瘤菌的身份仍然未知。在本研究中,我们分离委内瑞拉共生无根瘤菌与豇豆物种相关的,来自土壤的土壤,含有造成造影yloecosystems或委内瑞拉的田地。使用几种类型的土壤用于细菌分离,并从表征的环境中取样结节,例如高温,高浓度的NaCl和酸性或碱性pH值。委内瑞拉·瓦尼亚 - 根唑主要是快速增长。若干家政基因的测序表明,与其他大陆相比,委内瑞拉豇豆物种被伯克德列尔(Burkowneria)在内的根瘤菌组织,含有来自Bradyrhizobium属的几种新的系统发育谱系的细菌。一些根序和布拉德希粒子分离株具有高盐度和Al毒性的耐受性。菌株的应力耐受性取决于根瘤菌,土壤来源和培养史的类型。分类为R. pumplyoli的分离物显示出最高的植物生物质,氮固定和优异的非生物应激反应,这表明委内瑞拉的豇豆种植有前景占融化。

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