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水稻铁锰中毒及调控策略研究进展

涂国青 吴加香 张一晨 郭世伟 徐玖亮 赵正雄

中国稻米2026,Vol.32Issue(2):38-44,7.
中国稻米2026,Vol.32Issue(2):38-44,7.DOI:10.3969/j.issn.1006-8082.2026.02.007

水稻铁锰中毒及调控策略研究进展

Iron and Manganese Poisoning in Rice:Physiological Mechanisms,Management and Future Prospects

涂国青 1吴加香 2张一晨 2郭世伟 3徐玖亮 4赵正雄5

作者信息

  • 1. 云南大学 国际河流与生态安全研究院,昆明 650500||洱海流域农业绿色发展研究院,云南 大理 671000
  • 2. 云南云天化股份有限公司研究院,昆明 650228
  • 3. 南京农业大学 资源与环境科学学院,南京 210095
  • 4. 洱海流域农业绿色发展研究院,云南 大理 671000||中国农业大学 资源与环境学院,北京 100193
  • 5. 洱海流域农业绿色发展研究院,云南 大理 671000||云南农业大学 资源与环境学院,昆明 650201
  • 折叠

摘要

Abstract

Rice serves as the staple food for over 50%of the global population.In regions such as Africa,South Asia,and Southeast Asia,rice production is severely affected by iron(Fe)and manganese(Mn)toxicity,resulting in yield losses ranging from a minimum of 15%to,in severe cases,complete crop failure.Fe and Mn toxicity often occurs in soil environments with high organic matter content or prolonged flooding,where Fe and Mn are reduced to their more reactive forms,Fe3+and Mn4+,leading to metabolic disorders in plants.Currently,production management measures to mitigate Fe and Mn toxicity primarily include the screening of Fe/Mn-tolerant rice varieties,the combined application of phosphorus,potassium,zinc,and nitrogen fertilizers,as well as the integrated use of calcium oxide and water management strategies.However,the regulatory effects of physiologically alkaline fertilizers are unsatisfactory in high-organic-matter,neutral soils,and paddy fields under prolonged flooding.Given the commonalities between human and plant Fe/Mn toxicity,future research should enhance interdisciplinary integration and establish a systematic and comprehensive research framework to provide a more solid theoretical foundation and more effective practical strategies for the prevention and control of Fe and Mn toxicity in rice.

关键词

水稻/铁锰中毒/生理机制/管理措施

Key words

rice/iron and manganese poisoning/physiological mechanism/management measures

分类

农业科技

引用本文复制引用

涂国青,吴加香,张一晨,郭世伟,徐玖亮,赵正雄..水稻铁锰中毒及调控策略研究进展[J].中国稻米,2026,32(2):38-44,7.

基金项目

国家重点研发计划项目(2022YFD1901504) (2022YFD1901504)

云南省重大科技专项(202202AE090034) (202202AE090034)

中国稻米

1006-8082

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