Mycorrhizal type and tree diversity affect foliar elemental pools and stoichiometry

物种丰富度 生物 营养物 植树造林 生物多样性 菌根 物种多样性 生物量(生态学) 农学 植物 菌根真菌 生态系统 磷 生态学 共生 接种 园艺 化学 有机化学 遗传学 细菌
作者
Elisabeth Bönisch,Еvgenia Blagodatskaya,Rodolfo Dirzo,Olga Ferlian,Andreas Fichtner,Yuanyuan Huang,Samuel J. Leonard,Fernando T. Maestre,Goddert von Oheimb,Tama Ray,Nico Eisenhauer
出处
期刊:New Phytologist [Wiley]
卷期号:242 (4): 1614-1629 被引量:10
标识
DOI:10.1111/nph.19732
摘要

Summary Species‐specific differences in nutrient acquisition strategies allow for complementary use of resources among plants in mixtures, which may be further shaped by mycorrhizal associations. However, empirical evidence of this potential role of mycorrhizae is scarce, particularly for tree communities. We investigated the impact of tree species richness and mycorrhizal types, arbuscular mycorrhizal fungi (AM) and ectomycorrhizal fungi (EM), on above‐ and belowground carbon (C), nitrogen (N), and phosphorus (P) dynamics. Soil and soil microbial biomass elemental dynamics showed weak responses to tree species richness and none to mycorrhizal type. However, foliar elemental concentrations, stoichiometry, and pools were significantly affected by both treatments. Tree species richness increased foliar C and P pools but not N pools. Additive partitioning analyses showed that net biodiversity effects of foliar C, N, P pools in EM tree communities were driven by selection effects, but in mixtures of both mycorrhizal types by complementarity effects. Furthermore, increased tree species richness reduced soil nitrate availability, over 2 yr. Our results indicate that positive effects of tree diversity on aboveground nutrient storage are mediated by complementary mycorrhizal strategies and highlight the importance of using mixtures composed of tree species with different types of mycorrhizae to achieve more multifunctional afforestation.
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