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      Symbiotic Interplay of Fungi, Algae, and Bacteria within the Lung Lichen Lobaria pulmonaria L. Hoffm. as Assessed by State-of-the-Art Metaproteomics.

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          Abstract

          Lichens are recognized by macroscopic structures formed by a heterotrophic fungus, the mycobiont, which hosts internal autotrophic photosynthetic algal and/or cyanobacterial partners, referred to as the photobiont. We analyzed the structure and functionality of the entire lung lichen Lobaria pulmonaria L. Hoffm. collected from two different sites by state-of-the-art metaproteomics. In addition to the green algae and the ascomycetous fungus, a lichenicolous fungus as well as a complex prokaryotic community (different from the cyanobacteria) was found, the latter dominated by methanotrophic Rhizobiales. Various partner-specific proteins could be assigned to the different lichen symbionts, for example, fungal proteins involved in vesicle transport, algal proteins functioning in photosynthesis, cyanobacterial nitrogenase and GOGAT involved in nitrogen fixation, and bacterial enzymes responsible for methanol/C1-compound metabolism as well as CO-detoxification. Structural and functional information on proteins expressed by the lichen community complemented and extended our recent symbiosis model depicting the functional multiplayer network of single holobiont partners.1 Our new metaproteome analysis strongly supports the hypothesis (i) that interactions within the self-supporting association are multifaceted and (ii) that the strategy of functional diversification within the single lichen partners may support the longevity of L. pulmonaria under certain ecological conditions.

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          Author and article information

          Journal
          J. Proteome Res.
          Journal of proteome research
          American Chemical Society (ACS)
          1535-3907
          1535-3893
          May 04 2017
          Affiliations
          [1 ] Institute of Microbiology, Ernst-Moritz-Arndt-University Greifswald , DE-17487 Greifswald, Germany.
          [2 ] Blücherstraße 71, DE-18055 Rostock, Germany.
          [3 ] Institute of Environmental Biotechnology, Graz University of Technology , A-8010 Graz, Austria.
          [4 ] Institute of Plant Sciences, University of Graz , A-8010 Graz, Austria.
          Article
          10.1021/acs.jproteome.6b00974
          28290203
          8c116312-f08a-4ec8-9c18-ebe0f48d5b76
          History

          Lobaria pulmonaria,bacterial microbiome,lichens,metaproteomics,microbial ecology

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