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Soil Microarthropods and Their Relationship to Higher Trophic Levels in the Pedregal de San Angel Ecological Reserve Mexico

机译:墨西哥Pedregal de San Angel生态保护区的土壤微节肢动物及其与较高营养水平的关系

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摘要

Soil fauna is essential for ecosystem dynamics as it is involved in biogeochemical processes, promotes nutrient availability, and affects the animal communities associated with plants. In this study, we examine the possible relationship between the soil microarthropod community on foliage production and quality of the shrub Pittocaulon praecox. We also examine the arthropods associated to its foliage, particularly the size of the main herbivores and of their natural enemies, at two sites with contrasting vegetation cover and productivity. The diversity of soil microarthropods was assessed from soil samples collected monthly under P. praecox individuals over 13 mo. Specimens collected were identified to species or morphospecies. Shrub foliage productivity was evaluated through the amount of litter produced. Resource quality was assessed by the mean content (percentage by weight) of N, C, S, and P of 30 leaves from each shrub. The mean size of herbivores and their natural enemies were determined by measuring 20 adult specimens of each of the most abundant species. We found a higher species richness of soil microarthropods and foliar arthropods in the open site, although the diversity of foliage arthropods was lower in the closed site. Shrubs growing in the closed site tend to produce more, larger, and nutritionally poorer (lower nitrogen content) leaves than open site. Herbivores and their natural enemies were also larger in the closed site. We found a significant positive relationship between the diversity and species richness of foliar arthropods and the nitrogen content of leaves. In general, species richness and diversity of both the foliar and soil fauna, as well as the size of organisms belonging to higher trophic levels, were affected by vegetation cover and primary productivity at each site. These findings highlight the need to simultaneously consider at least four trophic levels (soil organisms, plants, herbivores, and natural enemies) to better understand the functioning of these systems and their responses to environmental changes.
机译:土壤动物对生态系统动力学至关重要,因为它参与了生物地球化学过程,促进了养分的利用,并影响了与植物相关的动物群落。在这项研究中,我们研究了土壤微节肢动物群落对叶片生产与灌木Pittocaulon praecox的质量之间的可能关系。我们还研究了与植被相关的节肢动物,特别是主要食草动物及其天敌的大小,这两个地区的植被覆盖度和生产力形成了鲜明对比。从13个月以上的P. praecox个体每月采集的土壤样品中评估土壤微节肢动物的多样性。所收集的标本被鉴定为物种或形态物种。通过产生的凋落物数量评估灌木的叶子生产力。通过每种灌木中30片叶子的N,C,S和P的平均含量(重量百分比)来评估资源质量。草食动物及其天敌的平均大小是通过测量每个最丰富物种的20个成年标本来确定的。我们发现在开放场所土壤微节肢动物和叶片节肢动物的物种丰富度较高,尽管在封闭场所中叶子节肢动物的多样性较低。在封闭地点生长的灌木往往比开放地点产生更多,更大,营养更差(氮含量更低)的叶片。食草动物及其天敌在封闭地点也更大。我们发现叶节肢动物的多样性和物种丰富度与叶片氮含量之间存在显着的正相关关系。总的来说,叶面和土壤动物的物种丰富度和多样性,以及营养级别较高的生物体的大小,都受到每个地点的植被覆盖率和初级生产力的影响。这些发现强调需要同时考虑至少四个营养级别(土壤生物,植物,草食动物和天敌),以便更好地了解这些系统的功能及其对环境变化的响应。

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