Mycorrhizal symbiosis pathway and edaphic fertility frame root economics space among tree species

土壤学 生物 共生 土壤肥力 词根(语言学) 树(集合论) 生态学 农林复合经营 数学 土壤水分 古生物学 细菌 语言学 哲学 数学分析
作者
Han Yan,Grégoire T. Freschet,Huimin Wang,J. Aaron Hogan,Shenggong Li,Oscar J. Valverde‐Barrantes,Xiaoli Fu,Ruili Wang,Xiaoqin Dai,Lei Jiang,Shengwang Meng,Fengting Yang,Miaomiao Zhang,Liang Kou
出处
期刊:New Phytologist [Wiley]
卷期号:234 (5): 1639-1653 被引量:66
标识
DOI:10.1111/nph.18066
摘要

Summary The root economics space (RES) is multidimensional and largely shaped by belowground biotic and abiotic influences. However, how root–fungal symbioses and edaphic fertility drive this complexity remains unclear. Here, we measured absorptive root traits of 112 tree species in temperate and subtropical forests of China, including traits linked to functional differences between arbuscular mycorrhizal (AM) and ectomycorrhizal (ECM) hosts. Our data, from known mycorrhizal tree species, revealed a ‘fungal‐symbiosis’ dimension distinguishing AM from ECM species. This divergence likely resulted from the contrasting mycorrhizal evolutionary development of AM vs ECM associations. Increased root tissue cortical space facilitates AM symbiosis, whereas increased root branching favours ECM symbiosis. Irrespective of mycorrhizal type, a ‘root‐lifespan’ dimension reflecting aspects of root construction cost and defence was controlled by variation in specific root length and root tissue density, which was fully independent of root nitrogen content. Within this function‐based RES, we observed a substantial covariation of axes with soil phosphorus and nitrate levels, highlighting the role played by these two axes in nutrient acquisition and conservation. Overall, our findings demonstrate the importance of evolved mycorrhizal symbiosis pathway and edaphic fertility in framing the RES, and provide theoretical and mechanistic insights into the complexity of root economics.
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