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DOI10.1111/fwb.13302
Beaver-created successional gradients increase beta-diversity of invertebrates by turnover in stream-wetland complexes
Bush, Bryana M.1; Stenert, Cristina2; Maltchik, Leonardo3; Batzer, Darold P.1
发表日期2019
ISSN0046-5070
EISSN1365-2427
卷号64期号:7页码:1265-1274
英文摘要

Beavers are ecosystem engineers known to modify the environment primarily via dam building. Beaver wetlands are complexes of newly created, mature, and abandoned beaver constructions within a stream network. Invertebrate dynamics across all habitats derived from these successional stages remains poorly explored. Here, we test how this natural successional gradient created by beaver affects invertebrate beta-diversity and its components (turnover and nestedness). Invertebrates were sampled in the Piedmont region of Georgia (U.S.A.) in two seasons (autumn and spring) in each of four stages of habitat succession: natural stream channels, forested wetlands created by newly formed beaver dams, mature open wetland marshes, and abandoned wetland meadows. In autumn, invertebrate communities were different among successional stages, apart from new versus abandoned wetlands and new versus mature wetlands, which were only marginally different, and streams versus abandoned wetlands. In spring, only the mature beaver wetland communities were unique, differing from both streams and from newly formed or abandoned wetlands. Beta-diversity was nearly twice as high for the overall study-system than any individual successional stage, which all had similar diversity. Additionally, turnover was significantly higher than nestedness in all stages. Community differences combined with high turnover among successional stages indicates that beaver wetland communities are not merely a subset of more stable mature wetlands or streams; instead, each stage has a different taxonomic make-up. Our results strengthen the idea that beaver activity can be an important conservation tool by contributing substantially to diversity in areas where they are present. Beaver wetlands have the potential to help stabilise beta- and regional diversity in the face of wetland loss from climate change and other human impacts.


WOS研究方向Environmental Sciences & Ecology ; Marine & Freshwater Biology
来源期刊FRESHWATER BIOLOGY
文献类型期刊论文
条目标识符http://gcip.llas.ac.cn/handle/2XKMVOVA/100030
作者单位1.Univ Georgia, Dept Entomol, Athens, GA 30602 USA;
2.Univ Vale Rio dos Sinos, Lab Ecol & Monitoring Aquat Invertebrates, Sao Leopoldo, Brazil;
3.Univ Vale Rio dos Sinos, Lab Ecol & Conservat Aquat Ecosyst, Sao Leopoldo, Brazil
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GB/T 7714
Bush, Bryana M.,Stenert, Cristina,Maltchik, Leonardo,et al. Beaver-created successional gradients increase beta-diversity of invertebrates by turnover in stream-wetland complexes[J],2019,64(7):1265-1274.
APA Bush, Bryana M.,Stenert, Cristina,Maltchik, Leonardo,&Batzer, Darold P..(2019).Beaver-created successional gradients increase beta-diversity of invertebrates by turnover in stream-wetland complexes.FRESHWATER BIOLOGY,64(7),1265-1274.
MLA Bush, Bryana M.,et al."Beaver-created successional gradients increase beta-diversity of invertebrates by turnover in stream-wetland complexes".FRESHWATER BIOLOGY 64.7(2019):1265-1274.
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