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Rainfall and Elevation Influence the Local-Scale Distribution of Tree Community in the Southern Region of Western Ghats Biodiversity Hotspot (India)

机译:降雨和海拔高度影响西高止山脉生物多样性热点(印度)南部地区树木群落的局部分布

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摘要

The present study characterises the tree communities with respect to topographic and climatic variables and identifies the most important environmental correlate of species richness in the southern region of Western Ghats Biodiversity Hotspot, India. Digitally derived environmental variables in combination with tree species richness information were analysed using Canonical Correspondence Analysis (CCA) to characterise the communities. Multiple regression technique based on stepwise backward elimination was used to identify the most important environment correlate of species richness. Canonical correspondence analysis results in six major tree communities along the first and second axes. Rainfall is the dominant environmental gradient influencing vegetation patterns on the first CCA axis while elevation showed the highest correlation with the second CCA axis. Backward elimination regression technique yielded rainfall as the most important environmental correlate of species richness. Results were in agreement with the observations in the Neotropics that rainier areas maintain high species diversity.
机译:本研究从地形和气候变量的角度描述了树木群落的特征,并确定了印度西高止山脉生物多样性热点南部地区物种丰富度最重要的环境相关因素。使用典范对应分析(CCA)分析了结合树木物种丰富度信息的数字化环境变量,以描述群落特征。使用基于逐步向后消除的多元回归技术来确定物种丰富度最重要的环境关联。典型的对应分析结果沿第一轴和第二轴有六个主要树群落。降雨是影响第一个CCA轴的植被格局的主要环境梯度,而海拔高度显示出与第二个CCA轴的最高相关性。向后消除回归技术使降雨成为物种丰富度最重要的环境相关因素。结果与新热带地区的观察一致,即多雨地区保持着较高的物种多样性。

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