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Vegetation Heterogeneity In Monte Desert Ecosystems:a Multi-scale Approach Linking Patterns And Processes

机译:蒙特沙漠生态系统中的植被异质性:一种多尺度联系模式和过程的方法

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We review the current state of research on vegetation heterogeneity in the Monte Desert at scales varying from landscape to intra-patch.Different factors are related to vegetation heterogeneity at every scale.At a coarse scale (i.e.landscapes and communities) vegetation heterogeneity is commonly determined by abiotic factors,whereas biotic interactions usually influence fine scale (patch,intrapatch) heterogeneity.Communities are distributed at the landscape scale according to differences in precipitation,topography and soil attributes.On the other hand,there is evidence that the spatial pattern of plant patches within communities is determined by runon -runoff processes,although biotic influences such as grazing can induce changes in the spatial pattern of patches when plant cover is strongly reduced.In the same way,at patch and intrapatch scales,biotic interactions (i.e.plant -plant interactions,grazing) determine the size and the species composition of plant patches as well as the distribution of species inside plant patches.However,the mechanisms operating behind such biotic interactions at small scales are commonly related to plant-induced changes in the physical environment.We also found evidence of cross-scale interactions,feedbacks,and non-linear effects such as those induced by grazing disturbance.Our analysis showed some regional differences in patterns and processes related to vegetation heterogeneity along the Monte Desert which can be ascribed to climatic and taxonomic variation among areas.Although information about vegetation heterogeneity and its causes and consequences in the Monte Desert is abundant,some areas where knowledge is scarce are detailed.
机译:我们回顾了蒙特沙漠地区从景观到斑块内植被异质性的研究现状,不同尺度上的植被异质性均涉及不同的因素,在较粗的尺度上(即景观和群落)通常确定了植被异质性受非生物因素的影响,生物相互作用通常会影响精细尺度(斑块,内陷)的异质性。根据降水,地形和土壤属性的差异,群落在景观尺度上分布。另一方面,有证据表明植物的空间格局群落内的斑块是由径流径流过程决定的,尽管当覆盖率大大降低时,放牧等生物影响会诱发斑块的空间格局变化。以同样的方式,在斑块和内陷尺度上,生物相互作用(即植物-植物相互作用,放牧)决定了植物斑块的大小和种类组成以及然而,这种小规模生物相互作用背后的作用机制通常与植物诱导的物理环境变化有关。我们还发现了跨尺度相互作用,反馈和非线性效应等证据。分析表明,蒙特沙漠沿岸植被异质性相关的格局和过程存在区域差异,这可归因于区域间的气候和生物分类差异。尽管有关植被异质性及其在蒙特州的成因和后果的信息沙漠丰富,有些地区知识稀缺。

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