The phyllosphere harbours a diverse and specific bacterial community, which influences plant health and ecosystem functioning. In this study, we investigated the impact of urban green areas connectivity and size on the composition and diversity of phyllosphere bacterial communities. Hereto, we evaluated the diversity and composition of phyllosphere bacterial communities of 233 Platanus x acerifolia and Acer pseudoplatanus trees in 77 urban green areas throughout 6 European cities. The community composition and diversity significantly differed between cities but only to a limited extent between tree species. We could show that urban intensity correlated significantly with the community composition of phyllosphere bacteria. In particular, a s...
Trees in urban areas face harsh environmental conditions. Ectomycorrhizal fungi (EcM) form a symbios...
Urban green areas are highly valued by citizens for their contribution to the quality of life in cit...
Bacteria are found in almost all environments on earth, including on the surface of other living thi...
Studies on microbial communities associated with foliage in natural ecosystems have grown in number ...
The aerial surfaces of plants harbor diverse communities of microorganisms. The rising awareness con...
Urban greenspace (UGS) is recognized to confer significant societal benefits, but few studies explor...
Trees in cities confer health and psychological benefits to the city\u27s inhabitants, so the urban ...
Microbiota in urban green spaces underpin ecosystem services that are essential to environmental hea...
Microorganisms in urban greenspaces play key roles in ecosystem service provision and potentially in...
The intra- and interdomain phyllosphere microbiome features of Quercus ilex L. in a Mediterranean co...
The phylloplane is an integrated part of green infrastructure which interacts with plant health. Tax...
The structure and function of the soil microbiome of urban greenspaces remain largely undetermined. ...
International audienceGreen infrastructures play a key role in the functionality and resilience of u...
Trees in urban areas face harsh environmental conditions. Ectomycorrhizal fungi (EcM) form a symbios...
Urban green areas are highly valued by citizens for their contribution to the quality of life in cit...
Bacteria are found in almost all environments on earth, including on the surface of other living thi...
Studies on microbial communities associated with foliage in natural ecosystems have grown in number ...
The aerial surfaces of plants harbor diverse communities of microorganisms. The rising awareness con...
Urban greenspace (UGS) is recognized to confer significant societal benefits, but few studies explor...
Trees in cities confer health and psychological benefits to the city\u27s inhabitants, so the urban ...
Microbiota in urban green spaces underpin ecosystem services that are essential to environmental hea...
Microorganisms in urban greenspaces play key roles in ecosystem service provision and potentially in...
The intra- and interdomain phyllosphere microbiome features of Quercus ilex L. in a Mediterranean co...
The phylloplane is an integrated part of green infrastructure which interacts with plant health. Tax...
The structure and function of the soil microbiome of urban greenspaces remain largely undetermined. ...
International audienceGreen infrastructures play a key role in the functionality and resilience of u...
Trees in urban areas face harsh environmental conditions. Ectomycorrhizal fungi (EcM) form a symbios...
Urban green areas are highly valued by citizens for their contribution to the quality of life in cit...
Bacteria are found in almost all environments on earth, including on the surface of other living thi...