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  5. Are Urban Communities in Successional Stasis? A Case Study on Epiphytic Lichen Communities

Are Urban Communities in Successional Stasis? A Case Study on Epiphytic Lichen Communities

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Resource type
Journal article
Creator (person)
Llewellyn, Theo
ORCIDORCID logo
Gaya, Ester
Murrell, David J.
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Date published
August 29, 2020
Abstract
Urban areas may contain a wide range of potential habitats and environmental gradients and, given the many benefits to human health and well-being, there is a growing interest in maximizing their biodiversity potential. However, the ecological patterns and processes in urban areas are poorly understood. Using a widely applicable ecological survey method, we sampled epiphytic lichen communities, important bioindicators of atmospheric pollution, on host Quercus trees in urban parks of London, UK, to test if common patterns relating to lichen diversity are mirrored in urban green spaces. We found lichen diversity to be dependent on host species identity, and negatively related to local tree crowding. In addition, we found a strong negative effect of tree size on lichen diversity, leaving large trees as unexploited niches. A novel network analysis revealed the presence of only pioneer communities, showing the lichen communities are being held in successional stasis, likely due to the heritage effects of SO2 emissions and current nitrogen pollution and particulate emissions. Our study highlights that jointly assessing species richness, community structure and the successional stage can be key to understanding diversity patterns in urban ecosystems. Subsequently, this may help best determine the optimum conditions that will facilitate biodiversity increase within cities.
Funder
Funder nameAwards
Natural Environment Research Council
NE/S007415/1
Journal title
Diversity
Volume
12
Issue
9
Publisher
MDPI AG
eISSN
1424-2818
Official URL
http://dx.doi.org/10.3390/d12090330
Rights statement
In Copyright
Licence
https://creativecommons.org/licenses/by/4.0/
DOI
10.3390/d12090330
Keywords
empty niches
bioindicators
pollution
lichenized fungi
community ecology
urban ecosystems
epiphytes
fungal diversity
species co-occurrence
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