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Rhizobiales as functional and endosymbiontic members in the lichen symbiosis of Lobaria pulmonaria L.

机译:根瘤菌在肺小球菌的地衣共生中是功能性的和共生的成员。

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摘要

Rhizobiales (Alphaproteobacteria) are well-known beneficial partners in plant-microbe interactions. Less is known about the occurrence and function of Rhizobiales in the lichen symbiosis, although it has previously been shown that Alphaproteobacteria are the dominating group in growing lichen thalli. We have analyzed the taxonomic structure and assigned functions to Rhizobiales within a metagenomic dataset of the lung lichen Lobaria pulmonaria L. One third (32.2%) of the overall bacteria belong to the Rhizobiales, in particular to the families Methylobacteriaceae, Bradyrhizobiaceae, and Rhizobiaceae. About 20% of our metagenomic assignments could not be placed in any of the Rhizobiales lineages, which indicates a yet undescribed bacterial diversity. SEED-based functional analysis focused on Rhizobiales and revealed functions supporting the symbiosis, including auxin and vitamin production, nitrogen fixation and stress protection. We also have used a specifically developed probe to localize Rhizobiales by confocal laser scanning microscopy after fluorescence in situ hybridization (FISH-CLSM). Bacteria preferentially colonized fungal surfaces, but there is clear evidence that members of the Rhizobiales are able to intrude at varying depths into the interhyphal gelatinous matrix of the upper lichen cortical layer and that at least occasionally some bacteria also are capable to colonize the interior of the fungal hyphae. Interestingly, the gradual development of an endosymbiotic bacterial life was found for lichen- as well as for fungal- and plant-associated bacteria. The new tools to study Rhizobiales, FISH microscopy and comparative metagenomics, suggest a similar beneficial role for lichens than for plants and will help to better understand the Rhizobiales-host interaction and their biotechnological potential.
机译:根瘤菌(Alphaproteobacteria)是植物-微生物相互作用中众所周知的有益伙伴。关于根瘤菌在地衣共生中的发生和功能的了解甚少,尽管以前已经证明,变形杆菌是生长中的地衣藻的主要组成部分。我们已经分析了肺地衣肺孢子菌L的宏基因组数据集中的根瘤菌的分类结构和功能。总体细菌的三分之一(32.2%)属于根瘤菌,尤其是甲基细菌科,缓生根瘤菌科和根瘤菌科。我们约有20%的宏基因组分配无法放在任何根瘤菌谱系中,这表明细菌多样性尚未得到描述。基于SEED的功能分析着重于根瘤菌,揭示了支持共生的功能,包括生长素和维生素的产生,固氮和压力保护。在荧光原位杂交(FISH-CLSM)后,我们还使用了专门开发的探针通过共聚焦激光扫描显微镜对根瘤菌进行定位。细菌优先定居在真菌表面,但是有明确的证据表明,根瘤菌的成员能够以不同的深度侵入上层地衣皮质层的菌丝间凝胶状基质中,并且至少偶尔一些细菌也能够定殖在真菌的内部。真菌菌丝。有趣的是,发现地衣细菌以及真菌和植物相关细菌的共生细菌生命逐渐发展。研究根瘤菌,FISH显微镜和比较宏基因组学的新工具表明,地衣比植物具有相似的有益作用,并将有助于更好地了解根瘤菌与宿主的相互作用及其生物技术潜力。

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