首页> 外文期刊>Biology and fertility of soils: Cooperating Journal of the International Society of Soil Science >Soil engineering ants increase grass root arbuscular mycorrhizal colonization
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Soil engineering ants increase grass root arbuscular mycorrhizal colonization

机译:土壤工程蚂蚁增加了草根丛枝菌根定植

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The role of edaphic factors in driving the relationship between plant community structure and ecosystem processes is a key issue of the current debate on functional implications of biodiversity. In this study, we draw a direct link between aboveground/belowground relationships, vegetation structure, and aboveground management. We used ground nesting ants and arbuscular mycorrhizal fungi (AMF) as an example for quantifying the role of biotic interactions in soil. Although both groups are known to have a major impact on grasslands, the interactive effect of these taxa on vegetation structure and its sensitivity to grassland management is poorly understood. We show that the ant Lasius flavus increases the root arbuscular mycorrhizal colonization (AMC) of grasses by modifying biotic and abiotic soil properties. As a possible consequence, the shoot length of grass growing on ant mounds was shorter and shoot N and P concentrations were higher than in grass growing off of the mounds. In addition, management affected ant nest architecture and soil and, in turn, AMC. These results emphasize the need to consider the interactions between plants, soil microorganisms, soil fauna, and aboveground management to increase the understanding of the drivers of biodiversity and ecosystem functioning in grasslands both aboveground and belowground.
机译:前言因素在驱动植物群落结构与生态系统过程之间的关系中的作用是当前关于生物多样性功能影响的辩论的关键问题。在这项研究中,我们在地上/地下关系,植被结构和地上管理之间建立了直接联系。我们以地面筑巢蚁和丛枝菌根真菌(AMF)为例,定量了生物相互作用在土壤中的作用。尽管已知这两个类别对草原都有重大影响,但人们对这些分类单元对植被结构的交互作用及其对草地管理的敏感性了解甚少。我们表明,蚂蚁黄雀通过修改生物和非生物的土壤特性,增加了草的根丛状菌根定殖(AMC)。可能的结果是,与在蚁丘上生长的草相比,在蚁丘上生长的草的苗长较短,并且芽中的N和P浓度较高。此外,管理还影响了蚁巢的建筑和土壤,进而影响了AMC。这些结果强调需要考虑植物,土壤微生物,土壤动物群和地上管理之间的相互作用,以增加对地上和地下草原生物多样性和生态系统功能驱动因素的认识。

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