Nitrogen addition affects the phosphorus fraction of rhizosphere soil in young forest plantations
文献类型: 外文期刊
作者: Liang, Fengna 1 ; Xu, Chaobin 1 ; Penuelas, Josep 2 ; Sardans, Jordi 2 ; Li, Yuting 1 ; Chang, Yunni 1 ; Cheng, Dongliang 1 ; Yao, Shushu 1 ; Zhong, Quanlin 1 ;
作者机构: 1.Fujian Normal Univ, Coll Geog Sci, Fuzhou 350007, Peoples R China
2.CREAF, Cerdanyola Valles, Barcelona 08193, Catalonia, Spain
3.UAB, Global Ecol Unit, CSIC, CREAF, Barcelona 08193, Catalonia, Spain
4.Fujian Acad Agr Sci, Tea Res Inst, Fuzhou 350012, Peoples R China
关键词: Nitrogen deposition; Fine root traits; Nutrient acquisition strategies; Soil phosphorus fraction
期刊名称:PLANT AND SOIL ( 影响因子:4.1; 五年影响因子:4.7 )
ISSN: 0032-079X
年卷期: 2025 年
页码:
收录情况: SCI
摘要: AimsNitrogen (N) addition directly alters environmental factors and affects nutrient cycling in forest ecosystems, but the responses of fine root nutrient acquisition strategies and rhizosphere soil phosphorus (P) fractions to N addition in young forest plantations remain unclear.MethodsWe conducted a N addition experiment (+ N and CK) in three young forest plantations to measure the morphological and nutrient traits of fine root, physicochemical properties and P fractions of rhizosphere soil.ResultsN addition significantly decreased the specific root length (SRL) and specific root area (SRA) of Fokienia hodginsii (FH), and increased soil acid phosphatase (S-ACP), soil total nitrogen (STN), and soil available phosphorous (AP) of rhizosphere soil. Ligand-P, soluble-P and hydrolyzable-P of rhizosphere soil of Zenia insignis (ZI) increased significantly by 25.16%, 14.93%, and 37.58%, respectively, while exchangeable-P of rhizosphere soil of Machilus pauhoi (MP) increased by 203%. Hydrolyzable-P and exchangeable-P of rhizosphere soil of FH were significantly increased by 41.80% and 14.79%. Redundancy analysis showed that root nitrogen concentration (RNC), root phosphorus concentration (RPC), mycorrhizal infection rates (MIR), pH and AP were the key factors affecting soil P fractions. N addition, soil physicochemical properties and fine root traits affected soil P fractions through different pathways, N addition had the highest total effect on rhizosphere soil P fractions of ZI, MP and FH.ConclusionN addition did not significantly change the strategies of nutrient acquisition by fine roots in young forest plantations, but affected the rhizosphere soil P fractions.
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