Urbanisation, plant traits and the composition of urban floras

Given the increasing prevalence of cities, a better mechanistic and functional understanding of plant responses to urbanisation will assist biodiversity conservation and the provision of ecosystem services. Plant functional traits offer an opportunity to do this. To explore the relationship between...

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Published inPerspectives in plant ecology, evolution and systematics Vol. 17; no. 1; pp. 78 - 86
Main Authors Williams, Nicholas S.G., Hahs, Amy K., Vesk, Peter A.
Format Journal Article
LanguageEnglish
Published Elsevier GmbH 01.02.2015
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Abstract Given the increasing prevalence of cities, a better mechanistic and functional understanding of plant responses to urbanisation will assist biodiversity conservation and the provision of ecosystem services. Plant functional traits offer an opportunity to do this. To explore the relationship between plant traits and the urban environment, we synthesised the results of 29 studies that specifically examined plant traits or niche indicators (e.g. Ellenberg numbers) of urban floras. Niche indicators for nutrients, temperature and alkalinity were found to consistently increase across many studies. Some plant traits (e.g. woodiness, seed mass and height) tended to increase in response to urbanisation, while other traits have mixed responses and many other traits are understudied. We propose that variability in the observed responses is linked to the consistency and strength of urban stressors acting on those traits, and the importance of local factors. Our synthesis highlights the complexity of urban plant–environment interactions with many traits influenced by multiple abiotic, biotic and disturbance effects of urbanisation. Multiple stressors make it difficult to detect trends in urban plant trait signatures unless one urban stressor drives a particularly strong response or multiple stressors act on the response in the same direction. While our review has developed a better understanding of how urbanisation may assemble urban floras, further advances can be gained through studies that focus on specific urbanisation processes, measurable morphological traits and data curation and analyses that facilitate meta-analysis.
AbstractList Given the increasing prevalence of cities, a better mechanistic and functional understanding of plant responses to urbanisation will assist biodiversity conservation and the provision of ecosystem services. Plant functional traits offer an opportunity to do this. To explore the relationship between plant traits and the urban environment, we synthesised the results of 29 studies that specifically examined plant traits or niche indicators (e.g. Ellenberg numbers) of urban floras. Niche indicators for nutrients, temperature and alkalinity were found to consistently increase across many studies. Some plant traits (e.g. woodiness, seed mass and height) tended to increase in response to urbanisation, while other traits have mixed responses and many other traits are understudied. We propose that variability in the observed responses is linked to the consistency and strength of urban stressors acting on those traits, and the importance of local factors. Our synthesis highlights the complexity of urban plant–environment interactions with many traits influenced by multiple abiotic, biotic and disturbance effects of urbanisation. Multiple stressors make it difficult to detect trends in urban plant trait signatures unless one urban stressor drives a particularly strong response or multiple stressors act on the response in the same direction. While our review has developed a better understanding of how urbanisation may assemble urban floras, further advances can be gained through studies that focus on specific urbanisation processes, measurable morphological traits and data curation and analyses that facilitate meta-analysis.
Author Williams, Nicholas S.G.
Hahs, Amy K.
Vesk, Peter A.
Author_xml – sequence: 1
  givenname: Nicholas S.G.
  surname: Williams
  fullname: Williams, Nicholas S.G.
  email: nsw@unimelb.edu.au
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  givenname: Amy K.
  surname: Hahs
  fullname: Hahs, Amy K.
  email: hahsa@unimelb.edu.au
  organization: Australian Research Centre for Urban Ecology, Royal Botanic Gardens, Melbourne, Australia
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  givenname: Peter A.
  surname: Vesk
  fullname: Vesk, Peter A.
  email: pvesk@unimelb.edu.au
  organization: School of Botany, The University of Melbourne, Australia
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Snippet Given the increasing prevalence of cities, a better mechanistic and functional understanding of plant responses to urbanisation will assist biodiversity...
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SubjectTerms alkalinity
Biodiversity
cities
Disturbances
Ecology
ecosystem services
Ecosystems
Functional types
Indicators
meta-analysis
Niche indicators
Nutrients
Plant functional traits
plant response
Plants (organisms)
Reproductive traits
Review
Signatures
temperature
urban areas
Urban environments
Urban vegetation
urbanization
Vegetative traits
Title Urbanisation, plant traits and the composition of urban floras
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