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Bacterial Microbiota of Rice Roots: 16S-Based Taxonomic Profiling of Endophytic and Rhizospheric Diversity, Endophytes Isolation and Simplified Endophytic Community

机译:水稻根部细菌群落:基于16S的内生和根际多样性分类学,内生菌分离和简化的内生群落

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Rice is currently the most important food crop in the world and we are only just beginning to study the bacterial associated microbiome. It is of importance to perform screenings of the core rice microbiota and also to develop new plant-microbe models and simplified communities for increasing our understanding about the formation and function of its microbiome. In order to begin to address this aspect, we have performed a 16S rDNA taxonomic bacterial profiling of the rhizosphere and endorhizosphere of two high-yield rice cultivars—Pionero 2010 FL and DANAC SD20A—extensively grown in Venezuela in 2014. Fifteen putative bacterial endophytes were then isolated from surface-sterilized roots and further studied in vitro and in planta . We have then performed inoculation of rice seedlings with a simplified community composed by 10 of the isolates and we have tracked them in the course of 30 days in greenhouse cultivation. The results obtained suggest that a set was able to significantly colonize together the rice endorhizospheres, indicating possible cooperation and the ability to form a stable multispecies community. This approach can be useful in the development of microbial solutions for a more sustainable rice production.
机译:水稻目前是世界上最重要的粮食作物,我们才刚刚开始研究细菌相关的微生物组。重要的是进行核心水稻微生物群的筛选,并开发新的植物-微生物模型和简化的群落,以增进我们对其微生物组的形成和功能的了解。为了解决这个问题,我们对2014年在委内瑞拉广泛种植的两个高产水稻品种Pionero 2010 FL和DANAC SD20A的根际和根际进行了16S rDNA分类细菌分析。然后从表面灭菌的根中分离出来,并在体外和植物中进行进一步研究。然后,我们用由10个分离株组成的简化群落对水稻幼苗进行了接种,并在温室栽培30天的过程中对其进行了跟踪。所获得的结果表明,一套能够将水稻的根际内球明显地定居在一起,表明可能的合作和形成稳定的多物种群落的能力。这种方法可用于开发微生物解决方案以实现更可持续的水稻生产。

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