福建农业学报2026,Vol.41Issue(4):470-478,9.DOI:10.19303/j.issn.1008-0384.2026.04.008
稻萍共作体系下水稻及红萍产量和吸氮量对大气CO2浓度升高的响应
Yield and Nitrogen Uptake of Rice and Azolla in Rice-Azolla Co-cultivation System under Elevated Atmospheric CO2
摘要
Abstract
[Objective]Yield and nitrogen uptake of rice plants on a rice-Azolla co-cultivation paddy field were investigated to understand how the highly efficient nitrogen-fixing Azolla might help to combat CO2 rising from climate change and improve rice production.[Method]Along with the current atmospheric CO2 level as control(CK),CO2 concentrations of Azolla grown under CK(A),addition of 200 μmol·mol-1 of CO2 over CK(E),and Azolla grown under E(E+A)were automatically regulated using the open-top chamber for the experimentation.Biomass,biological nitrogen fixation(BNF)rate,and total BNF amount of Azolla as well as tiller number,grain yield,and nitrogen uptake of rice plants grown with or without Azolla co-cultivation under the atmospheric CO2 conditions were determined.[Result]The elevated CO2 concentration in the atmosphere as in E significantly promoted the growth and BNF of Azolla plants at the jointing,flowering,and grain filling stages of rice under rice-Azolla co-cultivation.The BNF rate of Azolla under E+A was 5.2%-46.7%higher,and the total BNF amount 11.5%greater than under A,resulting in an increased rice yield.Over CK,E increased the rice yield by 11%,A by 7%,and E+A by 18%.Furthermore,E+A significantly raised the effective rice tiller numbers by 16%,grain nitrogen uptake by 19%,straw nitrogen uptake by 17%,and total nitrogen uptake by 19%.[Conclusion]As the concentration of atmospheric CO2 rose due to climate change,Azolla-rice co-cultivation in a paddy field could boost the BNF of Azolla plants by the enhancing effect of CO2 to increase the nitrogen fertilization for rice cultivation.Thus,through the symbiosis,rice crop yield could be significantly improved with the green practice.关键词
生物固氮/红萍/稻田养萍/大气CO2浓度/气候变化Key words
biological nitrogen fixation/Azolla/rice-Azolla co-cultivation/atmospheric CO2/climate change分类
农业科技引用本文复制引用
赵泽晶,詹杰,邓素芳,杨燕秋,应朝阳,胡正华,姚元林..稻萍共作体系下水稻及红萍产量和吸氮量对大气CO2浓度升高的响应[J].福建农业学报,2026,41(4):470-478,9.基金项目
国家自然科学基金青年科学基金项目(42007210) (42007210)
福建省科技计划公益类专项(2022R1021006、2023R1063) (2022R1021006、2023R1063)
国家绿肥产业技术体系建设专项(CARS-22) (CARS-22)