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Linking the spatial patterns of organisms and abiotic factors to ecosystem function and management: insights from semi-arid environments

机译:将生物体和非生物因素的空间格局与生态系统功能和管理联系起来:来自半干旱环境的见解

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Numerous theoretical and modeling studies have demonstrated the ecological significance of the spatial patterning of organisms on ecosystem functioning and dynamics.However, there is a paucity of empirical evidence that quantitatively shows how changes in the spatial patterns of the organisms forming biotic communities are directly related to ecosystem structure and functioning. In this article, I review a series of experiments and observational studies conducted in semi-arid environments from Spain (degraded calcareous shrubland, steppes dominated by Stipa tenacissima, and gypsum shrublands) to: 1) evaluate whether the spatial patterns of the dominant biotic elements in the community are linked to ecosystem structure and functioning, and 2) test if these patterns, and those of abiotic factors, can be used to improve ecosystem restoration. In the semiarid steppes we found a significant positive relationship between the spatial pattern of the perennial plant community and: i) the water status of S. tenacissima and ii) perennial species richness and diversity. Experimental plantings conducted in these steppes showed that S. tenacissima facilitated the establishment of shrub seedlings, albeit the magnitude and direction of this effect was dependent on rainfall conditions during the first yr after planting. In the gypsum shrubland, a significant, direct relationship between the spatial pattern of the biological soil crusts and surrogates of ecosystem functioning (soil bulk density and respiration) was found. In a degraded shrubland with very low vegetation cover, the survival of an introduced population of the shrub Pistacia lentiscus showed marked spatial patterns, which were related to the spatial patterns of soil properties such as soil compaction and sand content. These results provide empirical evidence on the importance of spatial patterns for maintaining ecosystem structure and functioning in semi-arid ecosystems. Furthermore, they show how taking into consideration the small-scale spatial patterns of organisms and abiotic factors, their restoration can be improved.
机译:大量的理论和模型研究已经证明了生物体空间格局对生态系统功能和动力学的生态学意义,然而,缺乏经验证据定量地表明了形成生物群落的生物体空间格局的变化与生态系统功能直接相关。生态系统的结构和功能。在本文中,我将对来自西班牙(退化的钙质灌木丛,以 Stipa tenacissima 为主的草原和石膏灌木丛)在半干旱环境中进行的一系列实验和观察性研究进行以下审查:1)评价是否群落中主要生物元素的空间模式与生态系统的结构和功能相关,并且2)测试这些模式以及非生物因素的模式是否可用于改善生态系统的恢复。在半干旱草原中,我们发现多年生植物群落的空间格局与以下物种之间存在显着的正相关关系:i)S的水状态。 Tenacissima 和ii)多年生物种的丰富性和多样性。在这些草原上进行的实验性种植表明,iS。 tenacissima 促进了灌木幼苗的建立,尽管这种影响的大小和方向取决于播种后第一年的降雨条件。在石膏灌木丛中,发现了生物土壤结皮的空间格局与生态系统功能替代物(土壤容重和呼吸作用)之间的显着直接关系。在植被覆盖度很低的退化灌木丛中,引进的灌木 Pistacia lentiscus 种群的生存表现出明显的空间格局,这与土壤性质的空间格局有关,例如土壤压实度和含沙​​量。这些结果为空间格局对于维持半干旱生态系统中的生态系统结构和功能的重要性提供了经验证据。此外,它们显示了如何考虑到生物和非生物因素的小规模空间格局,可以改善其恢复。

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