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Understanding arid‐region waterbird community dynamics during lake dry‐downs

机译:在Drow-Downs湖中了解干旱地区水鸟群落动态

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The community dynamics of organisms that exhibit multi‐scale responses to habitat change are poorly understood. We quantified changes in species diversity and the functional composition of a waterbird community over two iterations of a repeated transition, the annual drying‐down of arid‐region Lake Ngami, Botswana. We used our data to test three theoretical predictions: simplification of the bird community over time due to a reduction in habitat area and concurrent niche loss; large fluctuations in densities of mobile, opportunistic species; and high variance in predator and prey abundance. Despite temporal variance in species accumulation, we observed no obvious simplification and distinct but consistent groupings of abundance and composition across transitional stages. There were some rapid shifts in functional composition, such as loss of deepwater foragers; winners and losers also occurred within foraging guilds. We conclude that understanding community‐level trends during transitional periods will require stronger theoretical frameworks that more effectively integrate unique species traits and functional groups. For conservation managers, our study offers a cautionary tale of the importance of understanding connectivity, trajectories of change, and the potential for large fluctuations in animal communities independent of management actions during periods of ecological transition.
机译:对栖息地变化的多规模反应表现出多规模反应的社区动态很差。我们在两次重复过渡的两次迭代中量化物种多样性的变化和水鸟社区的功能组成,博茨瓦纳干旱地区的年度干燥。我们利用我们的数据来测试三个理论预测:由于栖息地区域和并发的利基损失,随着时间的推移简化鸟类社区;移动,机会性物种的密度大波动;捕食者和猎物丰富的高方差。尽管物种积累的时间差异,但我们在过渡阶段观察到没有明显的简化和明显但一致的丰富和组合的分组。功能组合物中有一些快速变化,如深水损失器;赢家和失败者也发生在觅食行情范围内。我们得出结论,了解过渡期间的社区趋势将需要更强的理论框架,更有效地整合独特的物种特征和功能群体。对于保护经理,我们的研究提供了理解连接,变革轨迹的重要性的警告故事,以及在生态转型期间独立于管理行动的动物社区的大波动的可能性。

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