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Using species distribution modeling to delineate the botanical richness patterns and phytogeographical regions of China

机译:利用物种分布模型描绘中国植物丰富度模式和植物地理区域

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摘要

The millions of plant specimens that have been collected and stored in Chinese herbaria over the past ~110 years have recently been digitized and geo-referenced. Here we use this unique collection data set for species distribution modeling exercise aiming at mapping & explaining the botanical richness; delineating China’s phytogeographical regions and investigating the environmental drivers of the dissimilarity patterns. We modeled distributions of 6,828 woody plants using MaxEnt and remove the collection bias using null model. The continental China was divided into different phytogeographical regions based on the dissimilarity patterns. An ordination and Getis-Ord Gi* hotspot spatial statistics were used to analysis the environmental drivers of the dissimilarity patterns. We found that the annual precipitation and temperature stability were responsible for observed species diversity. The mechanisms causing dissimilarity pattern seems differ among biogeographical regions. The identified environmental drivers of the dissimilarity patterns for southeast, southwest, northwest and northeast are annual precipitation, topographic & temperature stability, water deficit and temperature instability, respectively. For effective conservation of China’s plant diversity, identifying the historical refuge and protection of high diversity areas in each of the identified floristic regions and their subdivisions will be essential.
机译:在过去约110年的时间里,在中草药中收集并存储的数百万种植物标本最近已被数字化和地理参考。在这里,我们将这种独特的采集数据集用于物种分布建模练习,旨在绘制和解释植物丰富度;描绘中国的植物地理区域,并调查差异模式的环境驱动因素。我们使用MaxEnt对6,828种木本植物的分布进行了建模,并使用null模型消除了收集偏差。根据相异模式,中国大陆被划分为不同的植物地理区域。使用排序和Getis-Ord Gi *热点空间统计数据来分析差异模式的环境驱动因素。我们发现年降水量和温度稳定性是观察到的物种多样性的原因。造成差异模式的机制似乎在生物地理区域之间有所不同。东南,西南,西北和东北不同模式的环境驱动因素分别是年降水量,地形和温度稳定性,缺水和温度不稳定性。为了有效保护中国的植物多样性,必须在每个确定的植物区系及其分区中确定历史避难所和保护高多样性地区。

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