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Concordance in wetland physicochemical conditions, vegetation, and surrounding land cover is robust to data extraction approach

机译:湿地理化条件,植被和周围土地覆盖的一致性对于数据提取方法是很可靠的

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摘要

Concordance among wetland physicochemical conditions, vegetation, and surrounding land cover may result from the influence of land cover on the sources of plant propagules, on physicochemical conditions, and their subsequent determination of growing conditions. Alternatively, concordance may result if differences in climate, soils, and species pools are spatially confounded with differences in human population density and land conversion. Further, we expect that land cover within catchment boundaries will be more predictive than land cover in symmetrical buffers if runoff is a major pathway. We measured concordance between land cover, wetland vegetation and physicochemical conditions in 48 prairie pothole wetlands, controlling for inter-wetland distance. We contrasted land-cover data collected over a four-year period by multiple extraction approaches including topographically-delineated catchments and nested 30 m to 5,000 m radius buffers. After factoring out inter-wetland distance, physiochemical conditions were significantly concordant with land cover. Vegetation was not significantly concordant with land cover, though it was strongly and significantly concordant with physicochemical conditions. More, concordance was as strong when land cover was extracted from buffers <500 m in radius as from catchments, indicating the mechanism responsible is not topographically constrained. We conclude that local landscape structure does not directly influence wetland vegetation composition, but rather that vegetation depends on 1) physicochemical conditions in the wetland that are affected by surrounding land cover and on 2) regional factors such as the vegetation species pool and geographic gradients in climate, soil type, and land use.
机译:湿地理化条件,植被和周围土地覆盖之间的一致性可能是由于土地覆盖对植物繁殖体的来源,理化条件及其对生长条件的后续确定的影响所致。或者,如果气候,土壤和物种库的差异在空间上与人口密度和土地转换的差异混淆,则可能会导致一致性。此外,如果径流是主要途径,我们预计流域边界内的土地覆盖比对称缓冲区内的土地覆盖更具预测性。我们测量了48个草原坑洼地湿地的土地覆盖率,湿地植被和理化条件之间的一致性,并控制了湿地之间的距离。我们通过多种提取方法(包括在地形上划定的集水区和嵌套的30 m至5,000 m半径缓冲区)对比了四年期间收集的土地覆盖数据。排除湿地距离后,理化条件与土地覆盖率显着一致。尽管植被与理化条件强烈且显着一致,但植被与土地覆盖并没有显着一致。此外,当从半径小于500 m的缓冲区提取土地覆盖物时,与从集水区中提取土地覆盖物一样,一致性很强,这表明负责的机制没有受到地形的限制。我们得出的结论是,当地的景观结构并不直接影响湿地植被的组成,而是取决于植被:1)受周围土地覆盖影响的湿地的理化条件,以及2)植被物种库和地理梯度等区域性因素。气候,土壤类型和土地利用。

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