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Beyond nutrients: a meta-analysis of the diverse effects of arbuscular mycorrhizal fungi on plants and soils

机译:除了营养素之外:蛋白酶菌根真菌对植物和土壤的多种影响的荟萃分析

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Arbuscular mycorrhizal fungi (AMF) can increase plant fitness under certain environmental conditions. Among the mechanisms that may drive this mutualism, the most studied is provisioning of nutrients by AMF in exchange for carbon from plant hosts. However, AMF may also provide a suite of non-nutritional benefits to plants including improved water uptake, disease resistance, plant chemical defense, soil aggregation, and allelochemical transport and protection. Here, we use a meta-analysis of 93 studies to assess the relative effect of AMF on nutritional and non-nutritional factors that may influence plant fitness. We find that the positive effects of AMF on soil aggregation, water flow and disease resistance are equal to the effect of AMF on plant nitrogen and phosphorus uptake. However, AMF had no effect on the uptake of other nutrients, plant water content, allelopathic transport or production of chemical defense compounds. We suggest future research directions, including experimentally assessing the relative contribution on plant fitness of AMF interactions by untangling the independence of alternative benefits of AMF from an increase in nutrient uptake. This will lead to a more holistic view of the mycorrhizal-plant association and a more accurate picture of the net impact on the plant or plant community in question.
机译:丛枝菌根真菌(AMF)可以在某些环境条件下提高植物健身。在可能推动这种共同主义的机制中,最多研究的是通过AMF营养营养,以换取来自植物宿主的碳。然而,AMF还可为植物提供一套非营养益处,包括改善的水吸收,抗病,植物化学防御,土壤聚集和等级化学运输和保护。在这里,我们使用93项研究的META分析,以评估AMF对可能影响植物健身的营养和非营养因子的相对效果。我们发现,AMF对土壤聚集,水流和抗病性的积极影响等于AMF对植物氮和磷吸收的影响。然而,AMF对其他营养素,植物含水量,化脓输出或化学防御化合物的产生没有影响。我们建议未来的研究方向,包括通过在营养摄取的增加中,通过实际评估AMF相互作用的植物适应性的相对贡献。这将导致菌根植物协会的全面看法以及更准确地了解有关植物或植物界的净影响。

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