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Pervasive and strong effects of plants on soil chemistry: a meta-analysis of individual plant ‘Zinke’ effects

机译:植物对土壤化学的普遍而强烈的影响:对单个植物“ Zinke”效应的荟萃分析

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摘要

Plant species leave a chemical signature in the soils below them, generating fine-scale spatial variation that drives ecological processes. Since the publication of a seminal paper on plant-mediated soil heterogeneity by Paul Zinke in 1962, a robust literature has developed examining effects of individual plants on their local environments (individual plant effects). Here, we synthesize this work using meta-analysis to show that plant effects are strong and pervasive across ecosystems on six continents. Overall, soil properties beneath individual plants differ from those of neighbours by an average of 41%. Although the magnitudes of individual plant effects exhibit weak relationships with climate and latitude, they are significantly stronger in deserts and tundra than forests, and weaker in intensively managed ecosystems. The ubiquitous effects of plant individuals and species on local soil properties imply that individual plant effects have a role in plant–soil feedbacks, linking individual plants with biogeochemical processes at the ecosystem scale.
机译:植物物种在其下方的土壤中留下化学特征,从而产生驱动生态过程的精细尺度的空间变异。自1962年保罗·辛克(Paul Zinke)发表有关植物介导的土壤异质性的开创性论文以来,大量的文献已经开发出来,考察了单个植物对当地环境的影响(个体植物效应)。在这里,我们使用荟萃分析对这项工作进行了综合,以表明植物效应在六大洲的整个生态系统中都很普遍。总体而言,单个植物下的土壤特性与邻居之间的平均差异为41%。尽管单个植物效应的强度与气候和纬度之间的关系较弱,但在沙漠和冻原中它们的强度明显强于森林,而在集约化管理的生态系统中强度较弱。植物个体和物种对当地土壤特性的普遍影响意味着个体植物效应在植物-土壤反馈中发挥作用,将个体植物与生态系统规模的生物地球化学过程联系起来。

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