Abstract
The intra- and interdomain phyllosphere microbiome features of Quercus ilex L. in a Mediterranean context is reported. We hypothesized that the main driver of the phyllosphere microbiome might be the season and that atmospheric pollutants might have a co-effect. Hence, we investigated the composition of epiphytic bacteria and fungi of leaves sampled in urban and natural areas (in Southern Italy) in summer and winter, using microscopy and metagenomic analysis. To assess possible co-effects on the composition of the phyllosphere microbiome, concentrations of particulate matter and polycyclic aromatic hydrocarbons (PAHs) were determined from sampled leaves. We found that environmental factors had a significative influence on the phyllosphere biodiversity, altering the taxa relative abundances. Ascomycota and Firmicutes were higher in summer and in urban areas, whereas a significant increase in Proteobacteria was observed in the winter season, with higher abundance in natural areas. Network analysis suggested that OTUs belonging to Acidobacteria, Cytophagia, unkn. Firmicutes(p), Actinobacteria are keystone of the Q. ilex phyllosphere microbiome. In addition, 83 genes coding for 5 enzymes involved in PAH degradation pathways were identified. Given that the phyllosphere microbiome can be considered an extension of the ecosystem services offered by trees, our results can be exploited in the framework of Next-Generation Biomonitoring.
Subject
Plant Science,Ecology,Ecology, Evolution, Behavior and Systematics
Reference89 articles.
1. Population sizes, immigration, and growth of epiphytic bacteria on leaves of different ages and positions of field-grown endive (Cichorium endivia var. latifolia);Jacques;Appl. Environ. Microbiol.,1995
2. Microbial life in the phyllosphere;Vorholt;Nat. Rev. Microbiol.,2012
3. Lindow, S.E., Hecht-Poinar, E.I., and Elliot, V. (2002). Phyllosphere Microbiology, APS Press.
4. Phyllosphere microbiology: At the interface between microbial individuals and the plant host;Schlechter;New Phytol.,2018
5. Plant surface properties in chemical ecology;Riederer;J. Chem. Ecol.,2005
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