Abstract
Increasing human populations have resulted in aggressive water development in arid regions. This development typically results in altered stream flow regimes, reduced annual flow volumes, changes in fluvial disturbance regimes, changes in groundwater levels, and subsequent shifts in ecological patterns and processes. Balancing human demands for water with environmental requirements to maintain functioning ecosystems requires quantitative linkages between water in streams and ecosystem attributes. Streams in the Sonoran Desert provide important habitat for vertebrate species, including resident and migratory birds. Habitat structure, food, and nest-building materials, which are concentrated in riparian areas, are provided directly or indirectly by vegetation. We measured riparian vegetation, groundwater and surface water, habitat structure, and bird occurrence along Cherry Creek, a perennial tributary of the Salt River in central Arizona, USA. The purpose of this work was to develop an integrated model of groundwater-vegetation-habitat structure and bird occurrence by: (1) characterizing structural and provisioning attributes of riparian vegetation through developing a bird habitat index (BHI), (2) validating the utility of our BHI through relating it to measured bird community composition, (3) determining the riparian plant species that best explain the variability in BHI, (4) developing predictive models that link important riparian species to fluvial disturbance and groundwater availability along an arid-land stream, and (5) simulating the effects of changes in flow regime and groundwater levels and determining their consequences for riparian bird communities. Riparian forest and shrubland vegetation cover types were correctly classified in 83% of observations as a function of fluvial disturbance and depth to water table. Groundwater decline and decreased magnitude of fluvial disturbance caused significant shifts in riparian cover types from riparian forest to shrublands. Variability in the BHI was best explained by the cover of deciduous riparian tree species, primarily Populus fremontii, Platanus wrightii, and Salix gooddingii. The distributions of these plant species were well explained by the depth to groundwater and magnitude of fluvial disturbance along the stream. Bird species diversity and richness were significantly higher in sites with higher habitat indices. This quantitative linkage between surface and groundwater, plant species composition, habitat complexity, and bird communities has implications for water management and in determining environmental flows.
Original language | English (US) |
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Pages (from-to) | 1973-1988 |
Number of pages | 16 |
Journal | Ecological Applications |
Volume | 22 |
Issue number | 7 |
DOIs | |
State | Published - Oct 2012 |
Keywords
- Avian
- Bird
- Environmental flows
- Groundwater
- Habitat index
- Instream flow
- Populus fremontii
- Riparian
- Stream
- Stream flow
- Tamarix ramosissima
ASJC Scopus subject areas
- Ecology
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Appendix C. Correlation matrix for vegetation variables considered for the bird habitat index.
Merritt, D. M. (Creator) & Bateman, H. L. (Creator), Wiley, 2016
DOI: 10.6084/m9.figshare.3517745, https://wiley.figshare.com/articles/dataset/Appendix_C_Correlation_matrix_for_vegetation_variables_considered_for_the_bird_habitat_index_/3517745
Dataset
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Appendix C. Correlation matrix for vegetation variables considered for the bird habitat index.
Merritt, D. M. (Creator) & Bateman, H. L. (Creator), figshare Academic Research System, 2016
DOI: 10.6084/m9.figshare.3517745.v1, https://wiley.figshare.com/articles/dataset/Appendix_C_Correlation_matrix_for_vegetation_variables_considered_for_the_bird_habitat_index_/3517745/1
Dataset
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Appendix B. The configuration of 95 113-m2 vegetation plots along Cherry Creek, Arizona, USA.
Merritt, D. M. (Creator) & Bateman, H. L. (Creator), Wiley, 2016
DOI: 10.6084/m9.figshare.3517748.v1, https://wiley.figshare.com/articles/dataset/Appendix_B_The_configuration_of_95_113-m2_vegetation_plots_along_Cherry_Creek_Arizona_USA_/3517748/1
Dataset