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Land Cover and Rainfall Interact to Shape Waterbird Community Composition

机译:土地覆盖和降雨相互作用影响水鸟群落组成

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摘要

Human land cover can degrade estuaries directly through habitat loss and fragmentation or indirectly through nutrient inputs that reduce water quality. Strong precipitation events are occurring more frequently, causing greater hydrological connectivity between watersheds and estuaries. Nutrient enrichment and dissolved oxygen depletion that occur following these events are known to limit populations of benthic macroinvertebrates and commercially harvested species, but the consequences for top consumers such as birds remain largely unknown. We used non-metric multidimensional scaling (MDS) and structural equation modeling (SEM) to understand how land cover and annual variation in rainfall interact to shape waterbird community composition in Chesapeake Bay, USA. The MDS ordination indicated that urban subestuaries shifted from a mixed generalist-specialist community in 2002, a year of severe drought, to generalist-dominated community in 2003, of year of high rainfall. The SEM revealed that this change was concurrent with a sixfold increase in nitrate-N concentration in subestuaries. In the drought year of 2002, waterbird community composition depended only on the direct effect of urban development in watersheds. In the wet year of 2003, community composition depended both on this direct effect and on indirect effects associated with high nitrate-N inputs to northern parts of the Bay, particularly in urban subestuaries. Our findings suggest that increased runoff during periods of high rainfall can depress water quality enough to alter the composition of estuarine waterbird communities, and that this effect is compounded in subestuaries dominated by urban development. Estuarine restoration programs often chart progress by monitoring stressors and indicators, but rarely assess multivariate relationships among them. Estuarine management planning could be improved by tracking the structure of relationships among land cover, water quality, and waterbirds. Unraveling these complex relationships may help managers identify and mitigate ecological thresholds that occur with increasing human land cover.
机译:人类的土地覆盖可以通过栖息地的丧失和破碎直接导致河口的退化,或者通过降低水质的养分输入而间接地使河口退化。强降水事件的发生频率更高,导致流域和河口之间的水文联系更加紧密。这些事件后发生的营养富集和溶解氧耗竭限制了底栖大型无脊椎动物和商业化捕捞物种的数量,但对诸如鸟类等顶级消费者的后果仍然未知。我们使用非度量多维标度(MDS)和结构方程模型(SEM)来了解美国切塞皮克湾的土地覆盖和降雨的年变化如何影响水鸟群落组成。 MDS排序表明,城市河口从2002年干旱严重的普通专家社区混合型转变为2003年雨量丰富的普通社区主导型社区。扫描电镜显示,这种变化与河床中硝酸盐氮的浓度增加了六倍。在2002年干旱的年份,水鸟群落的组成仅取决于流域中城市发展的直接影响。在2003年的潮湿年份,社区构成既取决于这种直接影响,也取决于与向海湾北部(尤其是在城市河口以下)大量输入硝酸盐-氮相关的间接影响。我们的研究结果表明,在高降雨期间径流增加会严重降低水质,从而改变河口水鸟群落的组成,而且这种影响在以城市发展为主导的河口中更为严重。河口恢复计划通常通过监测压力源和指标来绘制进度图,但很少评估它们之间的多元关系。通过跟踪土地覆盖,水质和水鸟之间的关系结构,可以改善河口管理规划。弄清这些复杂的关系可能有助于管理者识别和缓解随着人类土地覆盖率的增加而出现的生态阈值。

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