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Diversity analysis of the rhizospheric and endophytic bacterial communities of Senecio vulgaris L. (Asteraceae) in an invasive range

机译:入侵范围内千里光(Senecio vulgaris L.(Asteraceae))根际和内生细菌群落的多样性分析

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摘要

Increasing evidence has confirmed the importance of plant-associated bacteria for plant growth and productivity, and thus it is hypothesized that interactions between bacteria and alien plants might play an important role in plant invasions. However, the diversity of the bacterial communities associated with invasive plants is poorly understood. We therefore investigated the diversity of rhizospheric and endophytic bacteria associated with the invasive annual plant Senecio vulgaris L. (Asteraceae) based on 16S rRNA gene data obtained from 57 samples of four Senecio vulgaris populations in a subtropical mountainous area in central China. Significant differences in diversity were observed between plant compartments. Specifically, the rhizosphere harbored many more bacterial operational taxonomic units and showed higher alpha diversity than the leaf and root endospheres. The relative abundance profiles of the bacterial community composition differed substantially between the compartments and populations, especially at the phylum and family levels. However, the top five phyla (Proteobacteria, Firmicutes, Bacteroidetes, Actinobacteria, and Acidobacteria) accounted for more than 90% of all the bacterial communities. Moreover, similar endophytic communities with a shared core set of bacteria were observed from different Senecio vulgaris populations. Heavy-metal-resistant, phosphate-solubilizing bacteria (Brevundimonas diminuta), nitrogen-fixing bacteria (Rhizobium leguminosarum), and cold-resistant bacteria (Exiguobacterium sibiricum) were present in the endosphere at relatively high abundance. This study, which reveals the structure of bacterial communities and their putative function in invasive Senecio vulgaris plants, is the first step in investigating the role of plant–bacteria interactions in the invasion of this species in China.
机译:越来越多的证据证实了植物相关细菌对植物生长和生产力的重要性,因此可以推测细菌与外来植物之间的相互作用可能在植物入侵中起重要作用。然而,与入侵植物有关的细菌群落的多样性了解甚少。因此,我们基于从中部亚热带山区的四个千里光寻常型种群的57个样本中获得的16S rRNA基因数据,研究了与一年生入侵植物千里光寻常型(菊科)相关的根际和内生细菌的多样性。在植物区室之间观察到多样性的显着差异。具体而言,根际比叶和根内球体拥有更多的细菌操作分类单位,并表现出更高的α多样性。细菌群落组成的相对丰度分布在各区室和种群之间存在显着差异,特别是在门和家庭水平上。但是,前五个门(变形杆菌,硬毛菌,拟杆菌,放线菌和酸性菌)占所有细菌群落的90%以上。此外,在不同的千里光寻常型种群中观察到相似的内生细菌群落,它们具有一组共同的细菌核心。耐重金属的磷酸盐增溶细菌(Brevundimonas diminuta),固氮细菌(豆根瘤菌)和抗寒细菌(Exiguobacterium sibiricum)以相对较高的丰度存在于内层球体内。这项研究揭示了入侵千里光寻常型植物中细菌群落的结构及其推定功能,是研究植物与细菌相互作用在中国入侵该物种中的作用的第一步。

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