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On the relationships between plant species richness and the environment: a case study in Eastern Ghats, India

机译:关于植物物种丰富度与环境之间的关系:以印度东高止山脉为例

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Many places of the earth support high plant species richness, but emphasis is given to biodiversity hotspots with rich endemic species under threats of destruction by anthropogenic interventions. This definitely underplays species conservation at several places significant for optimisation of preserving natural ecosystems. Here we explore influences of climate, physiography and disturbance on plant species richness of the Eastern Ghats. We focus on the implications of water-energy dynamics and climatic heterogeneity on community distribution. Initially, 26-environmental variables were considered for the study, but eight least correlated variables viz., aspect, human appropriation of net primary productivity, global human footprint, mean annual temperature, mean annual precipitation, precipitation of driest quarter, terrain ruggedness index and temperature seasonality were utilised for further analysis. A total of 1670 species from 2274 sampling locations of 22564 records were examined using canonical correspondence analysis (CCA) and decision trees. Water-energy dynamics broadly regulates plant richness, with significant influence of mean annual precipitation and temperature. Precipitation of the driest quarter is the most significant factor in describing plant richness, indicating the availability of water during the dry period is crucial. The rise in temperature is likely to deteriorate further, where temperature seasonality is significant. Temperature seasonality determines thermal variability and assesses the intensity of climate change impacts on plant richness. The study offers ecological insights for successful conservation and management planning for the sustenance of the Eastern Ghats' rich biodiversity.
机译:地球上许多地方都支持丰富的植物物种丰富度,但是重点是人类活动干预造成破坏威胁的,具有丰富特有物种的生物多样性热点。这肯定会在几个对优化自然生态系统保护具有重要意义的地方的物种保护中发挥作用。在这里,我们探索气候,生理和干扰对东高止山脉植物物种丰富度的影响。我们专注于水能动力学和气候异质性对社区分布的影响。最初,研究中考虑了26个环境变量,但八个最不相关的变量,即方面,人类对净初级生产力的占用,全球人类足迹,年平均温度,年平均降水量,最干燥季度的降水量,地形崎ness指数和利用温度季节性进行进一步分析。使用规范对应分析(CCA)和决策树对来自2274个采样点的2564个采样点的22670个记录中的总计1670种进行了检查。水能动力学广泛地调节植物的丰富度,这对年平均降水量和温度具有重大影响。最干燥的四分之一区的降水是描述植物丰富度的最重要因素,表明干旱时期的水供应至关重要。在温度季节性显着的地方,温度升高可能会进一步恶化。温度季节性决定了热变异性,并评估了气候变化对植物丰富度的影响强度。该研究为成功保存和管理东高止山脉丰富的生物多样性提供了生态学见识。

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