Effects of Meteorological Factors on Waterbird Functional Diversity and Community Composition in Liaohe Estuary, China
Xiuzhong Li,
Qing Zeng,
Guangchun Lei and
Gongqi Sun
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Xiuzhong Li: School of Ecology and Nature Conservation, Beijing Forestry University, Beijing 100083, China
Qing Zeng: School of Ecology and Nature Conservation, Beijing Forestry University, Beijing 100083, China
Guangchun Lei: School of Ecology and Nature Conservation, Beijing Forestry University, Beijing 100083, China
Gongqi Sun: Academy of Inventory and Planning National Forestry and Grassland Administration, Beijing 100020, China
IJERPH, 2022, vol. 19, issue 9, 1-19
Abstract:
Functional trait diversity represents ecological differences among species, and the structure of waterbird communities is an important aspect of biodiversity. To understand the effect of meteorological changes on the waterbird functional diversity and provide suggestions for management and conservation, we selected a study area (726 km 2 ) in Liaohe Estuary, located in northeast China. We explored the trends of the waterbird functional diversity changes in response to meteorological factors using fourth corner analysis. Our study demonstrated that temperature was a key factor that impacted waterbird functional diversity in spring, while precipitation had a greater impact in autumn. The population size of goose and duck was positively associated with temperature and negatively with precipitation, while that of the waders (Charadriiformes) showed opposite association trends. Herbivores and species nesting on the bare ground exhibited responses to meteorological factors similar to those of geese and ducks, while benthivores and waterbirds nesting under grass/shrubs exhibited trends similar to those of waterbirds. Waterbirds with smaller bodies, shorter feathers, and lower reproductive rates preferred higher temperatures and less precipitation than other waterbirds. In addition, we observed seasonal variations in waterbird functional diversity. In spring, we should pay attention to waders, herbivores, and waterbirds nesting on the bare ground when the temperature is low. In autumn, waders, benthivores, and omnivores need more attention under extreme precipitation. As the global climate warms in this study area, waterbird functional diversity is expected to decline, and community composition would become simpler, with overlapping niches. Biodiversity management should involve protecting intertidal habitats, supporting benthic macrofaunal communities, preparing bare breeding fields for waterbirds favoring high temperatures to meet their requirements for population increase, and preventing the population decline of geese and ducks, herbivores, and species nesting under grass/shrubs. The findings of our study can aid in developing accurate guidelines for waterbird biodiversity management and conservation.
Keywords: waterbird functional diversity; temporal dynamics; climate changes; fourth corner analysis (search for similar items in EconPapers)
JEL-codes: I I1 I3 Q Q5 (search for similar items in EconPapers)
Date: 2022
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