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首页> 外文期刊>Microbial Ecology: An International Journal >Culture-independent assessment of rhizobiales-related alphaproteobacteria and the diversity of methylobacterium in the rhizosphere and rhizoplane of transgenic eucalyptus
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Culture-independent assessment of rhizobiales-related alphaproteobacteria and the diversity of methylobacterium in the rhizosphere and rhizoplane of transgenic eucalyptus

机译:转基因桉树根际和根际平面中与根瘤菌有关的α变形杆菌的细菌培养无关性和甲基细菌多样性的评估

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摘要

The rhizosphere is an ecosystem exploited by a variety of organisms involved in plant health and environmental sustainability. Abiotic factors influence microorganism-plant interactions, but the microbial community is also affected by expression of heterologous genes from host plants. In the present work, we assessed the community shifts of Alphaproteobacteria phylogenetically related to the Rhizobiales order (Rhizobiales-like community) in rhizoplane and rhizosphere soils of wild-type and transgenic eucalyptus. A greenhouse experiment was performed and the bacterial communities associated with two wild-type (WT17 and WT18) and four transgenic (TR-9, TR-15, TR-22, and TR-23) eucalyptus plant lines were evaluated. The culture-independent approach consisted of the quantification, by real-time polymerase chain reaction (PCR), of a targeted subset of Alphaproteobacteria and the assessment of its diversity using PCR-denaturing gradient gel electrophoresis (DGGE) and 16S rRNA gene clone libraries. Real-time quantification revealed a lesser density of the targeted community in TR-9 and TR-15 plants and diversity analysis by principal components analysis, based on PCR-DGGE, revealed differences between bacterial communities, not only between transgenic and nontransgenic plants, but also among wild-type plants. The comparison between clone libraries obtained from the transgenic plant TR-15 and wild-type WT17 revealed distinct bacterial communities associated with these plants. In addition, a culturable approach was used to quantify the Methylobacterium spp. in the samples where the identification of isolates, based on 16S rRNA gene sequences, showed similarities to the species Methylobacterium nodulans, Methylobacterium isbiliense, Methylobacterium variable, Methylobacterium fujisawaense, and Methylobacterium radiotolerans. Colonies classified into this genus were not isolated from the rhizosphere but brought in culture from rhizoplane samples, except for one line of the transgenic plants (TR-15). In general, the data suggested that, in most cases, shifts in bacterial communities due to cultivation of transgenic plants are similar to those observed when different wild-type cultivars are compared, although shifts directly correlated to transgenic plant cultivation may be found.
机译:根际是一个生态系统,被参与植物健康和环境可持续发展的多种生物利用。非生物因素影响微生物与植物的相互作用,但微生物群落也受到宿主植物异源基因表达的影响。在目前的工作中,我们评估了野生型和转基因桉树的根际和根际土壤中与根瘤菌顺序(根瘤菌样群落)系统发育相关的阿尔法变形杆菌的群落迁移。进行了温室实验,并评估了与两种野生型(WT17和WT18)和四种转基因(TR-9,TR-15,TR-22和TR-23)桉树植物系相关的细菌群落。与培养无关的方法包括通过实时聚合酶链反应(PCR)对Alphaproteobacteria的目标子集进行定量,并使用PCR变性梯度凝胶电泳(DGGE)和16S rRNA基因克隆文库评估其多样性。实时定量分析揭示了TR-9和TR-15植物中目标群体的密度较低,并且基于PCR-DGGE的主成分分析多样性分析揭示了细菌群落之间的差异,不仅是转基因植物与非转基因植物之间,而且在野生型植物中也是如此。从转基因植物TR-15和野生型WT17获得的克隆文库之间的比较揭示了与这些植物相关的独特细菌群落。另外,使用可培养的方法来量化甲基杆菌属。在样品中,根据16S rRNA基因序列进行的分离株鉴定显示与结节甲基杆菌,isbiliense甲基杆菌,可变甲基菌,藤泽甲基杆菌和耐辐射甲基杆菌物种相似。属于该属的菌落不是从根际分离的,而是从根际平面样品中培养出来的,只是一系转基因植物(TR-15)。通常,数据表明,尽管可以发现与转基因植物栽培直接相关的变化,但在大多数情况下,由于转基因植物的栽培引起的细菌群落的变化与比较不同野生型品种时观察到的相似。

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