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Environmental and Human Controls of Ecosystem Functional Diversity in Temperate South America

机译:南美洲温带地区生态系统功能多样性的环境和人类控制

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The regional controls of biodiversity patterns have been traditionally evaluated using structural and compositional components at the species level, but evaluation of the functional component at the ecosystem level is still scarce. During the last decades, the role of ecosystem functioning in management and conservation has increased. Our aim was to use satellite-derived Ecosystem Functional Types (EFTs, patches of the land-surface with similar carbon gain dynamics) to characterize the regional patterns of ecosystem functional diversity and to evaluate the environmental and human controls that determine EFT richness across natural and human-modified systems in temperate South America. The EFT identification was based on three descriptors of carbon gain dynamics derived from seasonal curves of the MODIS Enhanced Vegetation Index (EVI): annual mean (surrogate of primary production), seasonal coefficient of variation (indicator of seasonality) and date of maximum EVI (descriptor of phenology). As observed for species richness in the southern hemisphere, water availability, not energy, emerged as the main climatic driver of EFT richness in natural areas of temperate South America. In anthropogenic areas, the role of both water and energy decreased and increasing human intervention increased richness at low levels of human influence, but decreased richness at high levels of human influence.
机译:传统上,已经使用物种一级的结构和组成成分对生物多样性模式的区域控制进行了评估,但仍然缺乏在生态系统一级对功能成分进行评估。在过去的几十年中,生态系统在管理和保护中的作用日益增强。我们的目标是使用卫星衍生的生态系统功能类型(EFT,具有相似碳获取动态的陆地表面斑块)来表征生态系统功能多样性的区域模式,并评估确定自然和自然条件下EFT丰富度的环境和人类控制措施温带南美的人为修改系统。 EFT识别基于从MODIS增强植被指数(EVI)的季节性曲线得出的碳增益动态的三个描述符:年均值(主要生产的替代物),季节性变异系数(季节性指标)和最大EVI日期(物候描述词)。正如南半球物种丰富度所观察到的那样,在南美洲温带自然地区,水的获取而非能源成为了EFT丰富度的主要气候驱动因素。在人为地区,水和能源的作用均降低,而增加的人类干预会在低水平的人为影响下增加财富,而在高水平的人为影响时减少财富。

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