Mapping of arthropod alpha and beta diversity in heterogeneous arctic-alpine ecosystems

被引:5
|
作者
Hein, Nils [1 ,4 ]
Loeffler, Joerg [1 ]
Feilhauer, Hannes [2 ,3 ]
机构
[1] Univ Bonn, Dept Geog, Meckenheimer Allee 166, D-53115 Bonn, Germany
[2] FAU Erlangen Nurnberg Inst Geog, Wetterkreuz 15, D-91058 Erlangen, Germany
[3] FU Berlin, Inst Geog Sci, Malteserstr 74-100, D-12249 Berlin, Germany
[4] Ilia State Univ, Sch Nat Sci & Engn, 3-5 Choloqashvili Ave, Tbilisi 0162, Georgia
关键词
Digital elevation model (DEM); Predictive mapping; Remote sensing; Sentinel-2; Araneae; Tundra; CLIMATE-CHANGE; ELEVATIONAL GRADIENTS; WOLF-SPIDER; MANAGED REALIGNMENT; SPECIES-RICHNESS; SOIL-MOISTURE; SPATIAL SCALE; SNOW COVER; BIODIVERSITY; VEGETATION;
D O I
10.1016/j.ecoinf.2019.101007
中图分类号
Q14 [生态学(生物生态学)];
学科分类号
071012 ; 0713 ;
摘要
Assessing biodiversity in arctic-alpine ecosystems is a costly task. We test in the current study whether we can map the spatial patterns of spider alpha and beta diversity using remotely-sensed surface reflectance and topography in a heterogeneous alpine environment in Central Norway. This proof-of-concept study may provide a tool for an assessment of arthropod communities in remote study areas. Data on arthropod species distribution and richness were collected through pitfall trapping and subjected to a detrended correspondence analysis (DCA) to extract the main species composition gradients. The DCA axis scores as indicators of species composition as well as trap species richness were regressed against a combined data set of surface reflectance as measured by the Sentinel-2 satellite and topographical parameters extracted from a digital elevation model. The models were subsequently applied to the spatial data set to achieve a pixel-wise prediction of both species richness and position in the DCA space. The spatial variation in the modelled DCA scores was used to draw conclusions regarding spider beta-diversity. The species composition was described with two DCA axes that were characterized by post hoc-defined indicator species, which showed a typical annidation in the arctic-alpine environment under study. The fits of the regression models for the DCA axes and species richness ranged from R-2 = 0.25 up to R-2 = 0.62. The resulting maps show strong gradients in alpha and beta diversity across the study area. Our results indicate that the diversity patterns of spiders can at least partially be explained by means of remotely sensed data. Our approach would likely benefit from the additional use of high resolution aerial photography and LiDAR data and may help to improve conservation strategies in arctic-alpine ecosystems.
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页数:9
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