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首页> 外文期刊>Microbial Ecology: An International Journal >The Microbiome of Eucalyptus Roots under Different Management Conditions and Its Potential for Biological Nitrogen Fixation
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The Microbiome of Eucalyptus Roots under Different Management Conditions and Its Potential for Biological Nitrogen Fixation

机译:不同管理条件下桉树根部的微生物组及其生物氮固定的潜力

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摘要

Eucalyptus plantations offer a cost-effective and renewable source of raw material. There is substantial interest in improving forestry production, especially through sustainable strategies such as the use of plant growth-promoting bacteria. However, little is known about Eucalyptus microbiology. In this study, the endophytic bacterial community was assessed in Eucalyptus urograndis roots using culture-dependent and culture-independent techniques with plants grown under different conditions. Three phyla accounted for approximately 95% of the community, with Actinobacteria corresponding to approximately 59%. This contrasts with previous studies in which Actinobacteria accounted for only 5 to 10%. Our data also revealed a high diversity of bacteria, with 359 different genera but a high level of dominance. Six genera, Mycobacterium, Bradyrhizobium, Streptomyces, Bacillus, Actinospica, and Burkholderia, accounted for more than 50% of the classified sequences. We observed a significant influence of the treatments on some genera, causing changes in the bacterial community structure. The obtained data also suggest that Eucalyptus may benefit from biological nitrogen fixation, with many abundant genera being closely related to nitrogen-fixing bacteria. Using N-depleted media, we also cultured 95 bacterial isolates, of which 24 tested positive for the nifH gene and were able to maintain growth without any N source in the medium.
机译:桉树种植园提供了一种成本效益和可再生原料来源。有兴趣改善林业生产,特别是通过可持续策略,如植物生长促进细菌的使用。然而,关于桉树微生物学知之甚少。在这项研究中,使用培养依赖性和培养型技术在不同条件下生长的植物的植物进行评估内生细菌群落。三种植物占社区的约95%,肌动菌物相当约59%。这种对比以前的研究,其中肌动菌菌仅占5%至10%。我们的数据还揭示了细菌的高多样性,359种不同的属,但优势较高。六属,分枝杆菌,布拉德罗希苏,链霉菌,芽孢杆菌,肌动菌,和伯克德利亚,占分类序列的50%以上。我们观察到治疗对某些属性的重大影响,导致细菌群落结构的变化。所获得的数据还表明,桉树可能受益于生物氮固定,许多丰富的属于氮固定细菌密切相关。使用N-耗尽的培养基,我们还培养了95个细菌分离株,其中24对于NiFH基因进行了阳性,并且能够在培养基中没有任何n个源的没有任何n个源的生长。

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