Patterns in bird and pollinator occupancy and richness in a mosaic of urban office parks across scales and seasons

被引:1
|
作者
Iknayan, Kelly J. [1 ]
Heath, Sacha K. [1 ]
Terrill, Scott B. [2 ]
Wenny, Daniel G. [3 ]
Panlasigui, Stephanie [1 ]
Wang, Yiwei [3 ]
Beller, Erin E. [4 ]
Spotswood, Erica N. [1 ,5 ]
机构
[1] San Francisco Estuary Inst, 4911 Cent Ave, Richmond, CA 94804 USA
[2] HT Harvey & Associates, Los Gatos, CA USA
[3] San Francisco Bay Bird Observ, Milpitas, CA USA
[4] Google Inc, Real Estate & Workplace Serv Sustainabil Team, Mountain View, CA USA
[5] Second Nat, Oakland, CA USA
来源
ECOLOGY AND EVOLUTION | 2024年 / 14卷 / 03期
关键词
cities; landscape; local; multi-species occupancy; neighborhood; species richness; CONSERVATION VALUE; TEMPORAL DYNAMICS; LANDSCAPE ECOLOGY; SPECIES RICHNESS; WOODLAND BIRDS; LAND-COVER; BIODIVERSITY; HABITAT; MIGRATION; URBANIZATION;
D O I
10.1002/ece3.10958
中图分类号
Q14 [生态学(生物生态学)];
学科分类号
071012 ; 0713 ;
摘要
Urbanization is a leading cause of global biodiversity loss, yet cities can provide resources required by many species throughout the year. In recognition of this, cities around the world are adopting strategies to increase biodiversity. These efforts would benefit from a robust understanding of how natural and enhanced features in urbanized areas influence various taxa. We explored seasonal and spatial patterns in occupancy and taxonomic richness of birds and pollinators among office parks in Santa Clara County, California, USA, where natural features and commercial landscaping have generated variation in conditions across scales. We surveyed birds and insect pollinators, estimated multi-species occupancy and species richness, and found that spatial scale (local, neighborhood, and landscape scale), season, and urban sensitivity were all important for understanding how communities occupied sites. Features at the landscape (distance to streams or baylands) and local scale (tree canopy, shrub, or impervious cover) were the strongest predictors of avian occupancy in all seasons. Pollinator richness was influenced by local tree canopy and impervious cover in spring, and distance to baylands in early and late summer. We then predicted the relative contributions of different spatial scales to annual bird species richness by simulating "good" and "poor" quality sites based on influential covariates returned by the previous models. Shifting from poor to good quality conditions locally increased annual avian richness by up to 6.8 species with no predicted effect on the quality of the neighborhood. Conversely, sites of poor local and neighborhood scale quality in good-quality landscapes were predicted to harbor 11.5 more species than sites of good local- and neighborhood-scale quality in poor-quality landscapes. Finally, more urban-sensitive bird species were gained at good quality sites relative to urban tolerant species, suggesting that urban natural features at the local and landscape scales disproportionately benefited them. We explored seasonal and spatial patterns in bird and pollinator communities among urban office parks in Santa Clara County, California, USA, where natural features, and commercial landscaping aimed at biodiversity enhancement, have generated variation in conditions across scales. We surveyed birds and insect pollinators, estimated multi-species occupancy and species richness, and found that spatial scale, season, and urban sensitivity were all important for understanding how communities occupied sites. Our results imply that both top-down approaches that plan for biodiversity enhancements at the landscape-scale as well as bottom-up approaches that improve conditions at the local scale can work together to support birds and pollinators in cities.image
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页数:17
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