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Chinese Journal of Ecology ›› 2026, Vol. 45 ›› Issue (2): 554-561.doi: 10.13292/j.1000-4890.202602.008

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Effects of organic substitution of chemical fertilizers on soil phosphorus availability and rice yield.

WANG Yanling1,2, WANG Jigao1,2, WEI Kai1*, YUAN Chaoyan1,2, YAN Jinlong1,2, ZHU Bo1   

  1. (1Institute of Mountain Hazards and Environment, Chinese Academy of Sciences, Chengdu 610299, China; 2University of Chinese Academy of Sciences, Beijing 100049, China).

  • Online:2026-02-10 Published:2026-08-01

Abstract: To explore the effects of straw return, either alone or in combination with animal manure, and of replacing part of the chemical nitrogen (N) fertilizer on paddy soil phosphorus (P) availability and rice yield, we conducted a field experiment with four treatments in a hilly paddy field of central Sichuan. The treatments included unfertilized control (CK), chemical N, P, and potassium (K) fertilizer (NPK), pig manure in combination with straw return and replacing part of chemical N fertilizer (MSNPK), and straw return alone and replacing part of chemical N fertilizer (SNPK). The results showed that the SNPK treatment significantly increased labile organic P (NaHCO3-Po) and moderately labile organic P (NaOH Ⅰ-Po) contents, and decreased labile inorganic P (NaHCO3-Pi) and highly stable organic P (NaOH Ⅰ-Po) contents compared to NPK treatment. The MSNPK treatment led to a significant increase in water-soluble P (NH4-Cl-Pi) and moderately labile inorganic P (NaOH Ⅰ-Pi) contents, and a significant decrease in NaOH Ⅰ-Po and NaOH Ⅰ-Po contents compared to NPK and SNPK treatments. Moreover, the SNPK treatment significantly increased soil organic carbon (SOC) content, alkaline phosphatase activity, rice P uptake, yield and aboveground biomass compared to NPK and MSNPK treatments. Results of correlation analysis revealed that SOC, alkaline phosphatase, and P uptake were significantly positively correlated with rice yield and aboveground biomass. In addition, NH4-Cl-Pi and NaHCO3-Po showed significantly positive correlation with rice P uptake, yield and aboveground biomass. Results of partial least squares path modeling (PLS-PM) further indicated that NaHCO3-Po could directly affect NH4-Cl-Pi or indirectly affect NH4-Cl-Pi by influencing NaHCO3-Pi under the catalytic hydrolysis of alkaline phosphatase. Overall, the straw return along and replacing part of chemical N fertilizer can enhance the activity of soil alkaline phosphatase and its mediated organic P fraction mineralization process. This approach can increase the paddy soil P availability and rice P uptake, yield, and aboveground biomass, thus can be used as a suitable fertilizer application method for the hilly paddy fields of central Sichuan.


Key words: phosphatase, soil phosphorus fraction, straw return, paddy field, phosphorus uptake