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有机无机配施优化根系构型阻控氮流失

徐烨红 巴雯雯 陆超 罗佳 马艳

农业环境科学学报2025,Vol.44Issue(8):1964-1976,13.
农业环境科学学报2025,Vol.44Issue(8):1964-1976,13.DOI:10.11654/jaes.2025-0569

有机无机配施优化根系构型阻控氮流失

Optimizing root morphology through combined application of organic and inorganic fertilizers to reduce nitrogen loss

徐烨红 1巴雯雯 2陆超 3罗佳 3马艳3

作者信息

  • 1. 江苏大学环境与安全工程学院,江苏镇江 212013||江苏省农业科学院农业资源与环境研究所,南京 210014||国家农业环境六合观测实验站,南京 210014
  • 2. 江苏大学环境与安全工程学院,江苏镇江 212013||江苏省农业科学院农业资源与环境研究所,南京 210014
  • 3. 江苏省农业科学院农业资源与环境研究所,南京 210014||国家农业环境六合观测实验站,南京 210014
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摘要

Abstract

The combined application of organic and inorganic fertilizers is an effective way to optimize nutrient management and reduce nitrogen loss.Most studies focused on the relationships between nitrogen loss and the aboveground growth of vegetables,whereas the response of the underground root morphology to organic-inorganic fertilizer application and its mechanism affecting nitrogen loss in vegetable fields remain unclear.In this study,a field plot experiment was conducted using different nitrogen application rates combined with spent mushroom(SM)or manure compost(MC),selected for their different mineralization capacities.Cellulase(E)was specifically co-applied to promote the mineralization of high-cellulose organic fertilizer.The effects on vegetable yield,root morphology and nitrogen loss through runoff under natural rainfall conditions were investigated.The experiment included six treatments:conventional nitrogen rate(N450),conventional nitrogen rate combined with organic fertilizer(N450+SM,N450+MC),30%-reduced nitrogen rate(N315),and 30%-reduced nitrogen rate combined with organic fertilizer(N315+SM,N315+SM+E).The results showed that,compared to N450 treatment,N315 treatment did not significantly influence cabbage yield,while combined organic and mineral fertilization treatments significantly increased both cabbage yield and partial factor productivity of nitrogen fertilizer by 14.2%-39.1%and 26.8%-64.5%,respectively.Compared to N450 treatment,N315,N315+SM,and N315+SM+E treatments significantly reduced total dissolved nitrogen and nitrate loss through runoff by 26.9%-44.3%and 32.4%-47.5%,respectively,while the ammonium loss through runoff was significantly reduced by 11.7%-13.6%under N315+SM and N315+SM+E treatments.Compared to N450 treatment,N315 treatment reduced the number of cabbage root tips by 11.0%.In contrast,compared to N315 treatment,N315+SM and N315+SM+E treatments significantly increased total root length,total root surface area,number of root tips and total amount of fine roots of cabbage,with increases ranging from 24.5%to 33.2%,16.0%to 24.5%,26.0%to 33.7%and 26.5%to 34.1%,respectively.In addition,their total root length,root tip number,total amount of fine roots and the proportion of fine roots were better than those under N450+SM and N450+MC treatments.The nitrogen uptake of cabbage showed significant positive correlations with its total root volume and surface area.Total dissolved nitrogen and nitrate loss through runoff showed significant negative correlations with the total root length,total amount of fine roots and the proportion of fine roots of cabbage.The optimization of root morphology played an important role in mitigating nitrogen loss through runoff.In conclusion,combining a 30%-reduced nitrogen rate with spent mushroom and cellulase can improve root morphology and nitrogen uptake amount of vegetables,which is recommended to enhance yield as well as reduce nitrogen loss through runoff in open-field vegetable production system.

关键词

露天菜地/氮肥用量/有机肥种类/根系构型/径流

Key words

open vegetable field/nitrogen fertilizer rate/type of organic fertilizer/root morphology/runoff

分类

农业科技

引用本文复制引用

徐烨红,巴雯雯,陆超,罗佳,马艳..有机无机配施优化根系构型阻控氮流失[J].农业环境科学学报,2025,44(8):1964-1976,13.

基金项目

国家重点研发计划项目(2021YFD1700803)National Key Research and Development Program of China(2021YFD1700803) (2021YFD1700803)

农业环境科学学报

OA北大核心

1672-2043

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