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首页> 外文期刊>Biodiversity and Conservation >A new approach to diversity indices - modeling and mapping plant biodiversity of Nallihan (A3-Ankara/Turkey) forest ecosystem in frame of geographic information systems.
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A new approach to diversity indices - modeling and mapping plant biodiversity of Nallihan (A3-Ankara/Turkey) forest ecosystem in frame of geographic information systems.

机译:多样性指数的一种新方法-在地理信息系统的框架中对纳利汉(A3-安卡拉/土耳其)森林生态系统的植物生物多样性进行建模和绘图。

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摘要

Modelling and mapping possibilities of Shannon-Wiener, Simpson, and number of species (NS) indices were researched using geographic information systems (GIS) and remote sensing (RS) tools in Nallihan forest ecosystem of Turkey. The relationships between the indices and a number of independent variables such as topography, geology, soil, climate, normalized difference vegetation index (NDVI), and land cover were investigated to understand relationships between plant diversity and ecosystem. Georeferenced field data from the established 56 quadrats (50x20 m) were used to calculate the indices. Principle component analysis (PCA) and multiple regression were employed for data reduction and model development, respectively. Three diversity maps were produced using the developed models. Residual maps and logical interpretations in ecological point of view were used to test the validity of the models. Elevation and climatic factors formed the most important components that are effective determinants of plant species diversity, but geological formations, soil, land cover and land-use characteristics also influenced plant diversity. Considering the different responses of the models, Shannon-Wiener (SWI) and NS models were found suitable for rare cover types, while Simpson (SIMP) model might be appropriate for single dominant land covers in the study area..
机译:在土耳其的纳里汉森林生态系统中,使用地理信息系统(GIS)和遥感(RS)工具研究了Shannon-Wiener,Simpson和物种数量(NS)指数的建模和制图可能性。为了了解植物多样性与生态系统之间的关系,研究了这些指标与许多自变量之间的关系,如地形,地质,土壤,气候,归一化植被指数(NDVI)和土地覆盖率。来自已建立的56个样方(50x20 m)的地理参考现场数据用于计算指标。主成分分析(PCA)和多元回归分别用于数据约简和模型开发。使用开发的模型制作了三个多样性图。生态学观点的残差图和逻辑解释被用来检验模型的有效性。海拔和气候因素是决定植物物种多样性的最重要因素,但是地质构造,土壤,土地覆盖和土地利用特征也影响了植物多样性。考虑到模型的不同响应,发现Shannon-Wiener(SWI)和NS模型适用于稀有覆盖类型,而Simpson(SIMP)模型可能适用于研究区域中的单个优势土地覆盖。

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