首页> 外文OA文献 >Bacteriome from Pinus arizonica and P. durangensis: Diversity, Comparison of Assemblages, and Overlapping Degree with the Gut Bacterial Community of a Bark Beetle That Kills Pines
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Bacteriome from Pinus arizonica and P. durangensis: Diversity, Comparison of Assemblages, and Overlapping Degree with the Gut Bacterial Community of a Bark Beetle That Kills Pines

机译:来自Pinus arizonica和P. durangensis的细菌组:多样性,组合的比较,以及杀死松树的树皮甲虫的肠道细菌群体的重叠程度

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摘要

Symbioses between plants and microorganims have been fundamental in the evolution of both groups. The endophytic bacteria associated with conifers have been poorly studied in terms of diversity, ecology, and function. Coniferous trees of the genera Larix, Pseudotsugae, Picea and mainly Pinus, are hosts of many insects, including bark beetles and especially the Dendroctonus species. These insects colonize and kill these trees during their life cycle. Several bacteria detected in the gut and cuticle of these insects have been identified as endophytes in conifers. In this study, we characterized and compared the endophytic bacterial diversity in roots, phloem and bark of non-attacked saplings of Pinus arizonica and P. durangensis using 16S rRNA gene pyrosequencing. In addition, we evaluated the degree of taxonomic relatedness, and the association of metabolic function profiles of communities of endophytic bacteria and previously reported gut bacterial communities of D. rhizophagus; a specialized bark beetle that colonizes and kills saplings of these pine species. Our results showed that both pine species share a similar endophytic community. A total of seven bacterial phyla, 14 classes, 26 orders, 43 families, and 51 genera were identified. Enterobacteriaceae was the most abundant family across all samples, followed by Acetobacteraceae and Acidobacteriaceae, which agree with previous studies performed in other pines and conifers. Endophytic communities and that of the insect gut were significantly different, however, the taxonomic relatedness of certain bacterial genera of pines and insect assemblages suggested that some bacteria from pine tissues might be the same as those in the insect gut. Lastly, the metabolic profile using PICRUSt showed there to be a positive association between communities of both pines and insect gut. This study represents the baseline into the knowledge of the endophytic bacterial communities of two of the major hosts affected by D. rhizophagus.
机译:植物和microorganims之间的共生关系已经在这两个群体的进化了根本。与针叶树相关的内生细菌已经研究甚少多样性,生态和功能方面。该属落叶松,Pseudotsugae,云杉,松为主的针叶林,有许多昆虫,包括小蠹虫,尤其是大小蠹种类的主机。这些昆虫在其生命周期定居并杀死这些树。在这些昆虫的肠道和角质层检测几种细菌已被确定为针叶树内生菌。在这项研究中,我们的特点和比较,根,韧皮部和松arizonica和P的非攻击幼树树皮内生细菌多样性durangensis采用16S rRNA基因焦磷酸测序。此外,我们评估分类关联度,以及内生细菌群落的代谢功能配置文件的关联和之前报道的肠道D. rhizophagus的细菌群落;一个专门的小蠹虫,定殖并杀死这些松树的树苗。我们的研究结果表明,两种松树有着类似的内生社区。总共有7个细菌门,14类,26个目,43个科,和51个属的鉴定。肠杆菌科细菌是最丰富的家庭在所有样品中,随后Acetobacteraceae和Acidobacteriaceae,其中同意以前的研究在其他松树和针叶树进行。内生社区和昆虫肠道的那名显著不同,但是,松树和昆虫组合的某些细菌属的分类学亲缘关系表明,从松树组织中的一些细菌可能是同那些在昆虫肠道。最后,使用PICRUSt代谢图谱表明那里是松树和昆虫肠道社区之间的正相关关系。这项研究是基线到两个受D. rhizophagus主要主机的内生细菌群落的知识。

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