Thompson Grant L, Kao-Kniffin Jenny
Section of Horticulture, School of Integrative Plant Science, Cornell University, Ithaca, New York, United States of America.
PLoS One. 2016 May 31;11(5):e0155986. doi: 10.1371/journal.pone.0155986. eCollection 2016.
Urban grasslands, landscapes dominated by turfgrasses for aesthetic or recreational groundcovers, are rapidly expanding in the United States and globally. These managed ecosystems are often less diverse than the natural or agricultural lands they replace, leading to potential losses in ecosystem functioning. Research in non-urban systems has provided evidence for increases in multiple ecosystem functions associated with greater plant diversity. To test if biodiversity-ecosystem function findings are applicable to urban grasslands, we examined the effect of plant species and genotypic diversity on three ecosystem functions, using grassland assemblages of increasing diversity that were grown within a controlled environment facility. We found positive effects of plant diversity on reduced nitrate leaching and plant productivity. Soil microbial diversity (Mean Shannon Diversity, H') of bacteria and fungi were also enhanced in multi-species plantings, suggesting that moderate increments in plant diversity influence the composition of soil biota. The results from this study indicate that plant diversity impacts multiple functions that are important in urban ecosystems; therefore, further tests of urban grassland biodiversity should be examined in situ to determine the feasibility of manipulating plant diversity as an explicit landscape design and function trait.
城市草地,即以草坪草为主用于美化或休闲地面覆盖的景观,在美国乃至全球都在迅速扩张。这些人工管理的生态系统往往比它们所取代的自然或农业用地的生物多样性更低,导致生态系统功能可能丧失。对非城市系统的研究已经证明,多种生态系统功能的增加与更高的植物多样性相关。为了测试生物多样性与生态系统功能的研究结果是否适用于城市草地,我们在一个可控环境设施中种植了多样性不断增加的草地组合,研究了植物物种和基因型多样性对三种生态系统功能的影响。我们发现植物多样性对减少硝酸盐淋失和提高植物生产力有积极作用。在多物种种植中,细菌和真菌的土壤微生物多样性(平均香农多样性,H')也有所提高,这表明植物多样性的适度增加会影响土壤生物群落的组成。这项研究的结果表明,植物多样性会影响城市生态系统中多种重要功能;因此,应在实地进一步测试城市草地生物多样性,以确定将植物多样性作为一种明确的景观设计和功能特征进行调控的可行性。