A test of the mycorrhizal-associated nutrient economy framework in two types of tropical rainforests under nutrient enrichments

雨林 生物地球化学循环 热带雨林 温带雨林 植物凋落物 营养循环 自行车 营养物 生态系统 生态学 垃圾箱 生物 农林复合经营 环境科学 林业 地理
作者
Qingshui Yu,Suhui Ma,Xiaofeng Ni,Lai Jiang,Zhou Zhang,Jiangling Zhu,Chengjun Ji,Zhiyao Tang,Xiaoli Cheng,Jingyun Fang
出处
期刊:Forest Ecosystems [Springer Science+Business Media]
卷期号:10: 100083-100083 被引量:16
标识
DOI:10.1016/j.fecs.2022.100083
摘要

Shifts in tree species and their mycorrhizal associations driven by global change play key roles in biogeochemical cycles. In this paper, we proposed a framework of the mycorrhizal-associated nutrient economy (MANE), and tested it using nutrient addition experiments conducted in two tropical rainforests. We selected two tropical rainforests dominated by arbuscular mycorrhizal (AM) and ectomycorrhizal (ECM) trees, and established eighteen 20 ​m ​× ​20 ​m plots in each rainforest. Six nitrogen (N) and phosphorus (P) addition treatments were randomly distributed in each rainforest with three replicates. We examined the differences in soil carbon (C) and nutrient cycling, plant and litter productivity between the two rainforests and their responses to 10-year inorganic N and P additions. We also quantified the P pools of plants, roots, litter, soil and microbes in the two rainforests. Overall, distinct MANE frameworks were applicable for tropical rainforests, in which soil C, N and P were cycled primarily in an inorganic form in the AM-dominated rainforest, whereas they were cycled in an organic form in the ECM-dominated rainforest. Notably, the effects of mycorrhizal types on soil P cycling were stronger than those on C and N cycling. The intensified N and P deposition benefited the growth of AM-dominated rainforests instead of ECM-dominated rainforests. Our findings underpin the key role of mycorrhizal types in regulating biogeochemical processes, and have important implications for predicting the ecological consequences of global changes.
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