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Winter coexistence in herbivorous waterbirds: Niche differentiation in a floodplain,Poyang Lake,China
Authors:Junpeng Bai  Huan Zhang  Hongkang Zhou  Shu Li  Bin Gao  Peng Chen  Long Ma  Zhifeng Xu  Zhen Zhang  Changxin Xu  Luzhang Ruan  Gang Ge
Institution:1. School of Life Sciences, Key Laboratory of Poyang Lake Environment and Resource Utilization, Ministry of Education, Nanchang University, Nanchang China ; 2. Ministry of Ecology and Environment, Nanjing Institute of Environmental Sciences, Nanjing China ; 3. Institute of Life Science and School of Life Sciences, Jiangxi Province Key Laboratory of Watershed Ecosystem Change and Biodiversity, Center for Watershed Ecology, Nanchang University, Nanchang China
Abstract:The classical niche theory supports the idea that stable coexistence requires ecological differences between closely related species. However, information on waterbirds coexistence in the entirely landlocked freshwater system of Poyang Lake is not well understood, especially when the available biomass of their food in the area decreases. In this study, we tested the ecological segregation mechanisms in the 2015/2016 and 2016/2017 wintering periods among eight herbivorous waterbirds (including the Siberian crane Grus leucogeranus, hooded crane Grus monacha, white‐naped crane Grus vipio, common crane Grus grus, greater white‐fronted goose Anser albifrons, bean goose Anser fabalis, swan goose Anser cygnoides, and tundra swan Cygnus columbianus) at Poyang Lake. Using field observations and species niche and foraging habitat selection models, we investigated the abundance, distribution, and food sources of these eight waterbird species to quantify and compare their habitat use and ecological niches. Our results showed that niche segregation among the waterbirds, with respect to food types, time, and spatial location, allow them to coexist and use similar resources. The water level gradually receded in the sub‐lakes of the Poyang Lake, which could provide food sources and various habitats for wintering herbivorous waterbirds to coexist. We demonstrated that the differences in habitat use could mitigate interspecific competition, which may explain the mechanism whereby waterbirds of Poyang Lake coexist during the wintering period, despite considerable overlap in the dietary niches of herbivorous waterbirds.
Keywords:conservation measures  endangered species  food abundance  foraging habitats  hydrological fluctuations
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