亚洲AⅤ综合在线欧美一区,国产的欧美一区二区三区,蜜臀亚洲AV无码精品国产午夜,国产精品一国产精品亚洲

2019

Behavioural plasticity and trophic niche shift How wintering geese respond to habitat alteration

作者: 本站 來源: 本站 時(shí)間:2021年05月10日
  Lei, J., Jia, Y., Wang, Y., Lei, G., Lu, C., Saintilan, N. and Wen, L., 2019. Behavioural plasticity and trophic niche shift: How wintering geese respond to habitat alteration. Freshwater Biology, 64(6), pp.1183-1195.(22g)
  The accelerated rate of human‐induced environmental change poses a significant challenge for wildlife. The ability of wild animals to adapt to environmental changes has important consequences for their fitness, survival, and reproduction. Behavioural flexibility, an immediate adjustment of behaviour in response to environmental variability, may be particularly important for coping with anthropogenic change. The main aim of this study was to quantify the response of two wintering goose species (bean goose Anser fabalis and lesser white‐fronted goose Anser erythropus) to poor habitat condition at population level by studying foraging behaviour. In addition, we tested whether behavioural plasticity could alter trophic niche. We characterised foraging behaviours and calculated daily home range (HR) of the geese using global positioning system tracking data. We calculated standard ellipse areas to quantify niche width using the δ13C and δ15N values of individual geese. We linked behavioural plasticity with habitat quality using ANCOVA (analysis of covariance) models. We also tested the correlation between standard ellipse areas and HR using ANCOVA model. We found significant differences in geese foraging behaviours between years in their daily foraging area, travel distance and speed, and turning angle. Specifically, the birds increased their foraging area to satisfy their daily energy intake requirement in response to poor habitat conditions. They flew more sinuously and travelled faster and longer distances on a daily basis. For the endangered lesser white‐fronted goose, all behaviour variables were associated with habitat quality. For bean goose, only HR and turning angle were correlated with habitat quality. The birds, especially the lesser white‐fronted goose, may have had a higher trophic position under poor conditions. Our findings indicate that wintering geese showed a high degree of behavioural plasticity. However, more active foraging behaviours under poor habitat condition did not lead to a broader trophic niche. Habitat availability could be responsible to the divergent responses of foraging HR and isotopic niche to human‐induced environmental change. Therefore, maintaining natural hydrological regimes during the critical period (i.e. September–November) to ensure that quality food resources are available is central to the future of populations of geese within the East Asian–Australasian Flyway.
電話
  • 咨詢熱線
  • 073185568037
二維碼
  • 手機(jī)二維碼

贵溪市| 池州市| 鹤峰县| 龙口市| 土默特左旗| 凤城市| 承德县| 乐至县| 安康市| 桂林市| 桐城市| 中宁县| 肇庆市| 新民市| 长寿区| 台州市| 尼木县| 昆山市| 教育| 蓬莱市| 米脂县| 射阳县| 上林县| 共和县| 三明市| 镇远县| 平乡县| 偃师市| 墨玉县| 鸡西市| 绥德县| 涿州市| 凌海市| 西乌珠穆沁旗| 富民县| 基隆市| 永顺县| 江北区| 蓬安县| 合水县| 辛集市|