磷
农学
肥料
生态系统
生产力
生物多样性
产量(工程)
农业生态系统
丛枝菌根
群落结构
氮气
环境科学
农业
土壤水分
野外试验
丛枝菌根真菌
生物
共生
生态学
化学
园艺
细菌
冶金
材料科学
遗传学
有机化学
接种
宏观经济学
经济
作者
Lei Liu,Zhiyuan Gao,Haifeng Li,Wenjie Yang,Yu Yang,Jinzheng Lin,Zhaohui Wang,Jinshan Liu
标识
DOI:10.1021/acs.jafc.4c00073
摘要
Arbuscular mycorrhizal (AM) fungi are essential for preserving the multifunctionality of ecosystems. The nitrogen (N)/phosphorus (P) threshold that causes notable variations in the AM fungus community of the soil and plant productivity is still unclear. Herein, a long-term (18 years) field experiment with five N and five P fertilizer levels was conducted to investigate the change patterns of soil AM fungus, multifunctionality, and wheat yield. High-N and -P fertilizer inputs did not considerably increase the wheat yield. In the AM fungal network, a statistically significant positive correlation was observed between ecosystem multifunctionality and the biodiversity of two primary ecological clusters (N: Module #0 and P: Module #3). Furthermore, fertilizer input thresholds for N (92–160 kg ha–1) and P (78–100 kg ha–1) significantly altered the AM fungal community, soil characteristics, and plant productivity. Our study provided a basis for reduced N and P fertilizer application and sustainable agricultural development from the aspect of soil AM fungi.
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