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解磷细菌解磷机制研究进展及其在水稻上的应用

潘林 弥春霞 徐青山 魏倩倩 孔亚丽 朱练峰 田文昊 朱春权 张均华

中国稻米2024,Vol.30Issue(3):1-9,9.
中国稻米2024,Vol.30Issue(3):1-9,9.DOI:10.3969/j.issn.1006-8082.2024.03.001

解磷细菌解磷机制研究进展及其在水稻上的应用

Research Progress on Phosphorus Solubilization Mechanism of Phosphorus Solubilizing Bacteria and Its Application in Rice Production

潘林 1弥春霞 2徐青山 3魏倩倩 4孔亚丽 3朱练峰 3田文昊 3朱春权 3张均华3

作者信息

  • 1. 中国水稻研究所/水稻生物育种全国重点实验室,杭州 310006||牡丹江师范学院,黑龙江牡丹江 157011
  • 2. 牡丹江师范学院,黑龙江牡丹江 157011
  • 3. 中国水稻研究所/水稻生物育种全国重点实验室,杭州 310006
  • 4. 中国水稻研究所/水稻生物育种全国重点实验室,杭州 310006||安徽大学,合肥 230601
  • 折叠

摘要

Abstract

Phosphorus(P)is an indispensable element for plant growth.Although the total P content in soil is rich,the available P content,which can be directly absorbed and utilized by plants,is very low.Traditional methods to increase crop yield in phosphorus deficient is by applying P fertilizer.However,the phosphorus applied to the soil is not only easily to be fixed by soil,but also easily transformed into organic P that is difficult for plants to absorb directly,so as to reduce the P utilization rate by plants and cause environmental pollution.Phosphorus solubilizing bacteria can transform insoluble P in soil into available P that can be directly absorbed by plants,and improve the absorption and utilization rate of P by plants.The action mechanism of phosphorus solubilizing bacteria is complex,and existing various kinds of bacteria and existing many influencing factors.This paper mainly reviewed the research progress of phosphorus solubilizing mechanism of phosphorus solubilizing bacteria and summarized the application of phosphorus-solubating bacteria in rice production.It provided a theoretical basis for improving the utilization efficiency of insoluble phosphorus in paddy soil.

关键词

水稻//解磷细菌/解磷机制

Key words

rice/phosphorus/phosphate-solubilizing bacteria/phosphate-solubilizing mechanisms

分类

农业科技

引用本文复制引用

潘林,弥春霞,徐青山,魏倩倩,孔亚丽,朱练峰,田文昊,朱春权,张均华..解磷细菌解磷机制研究进展及其在水稻上的应用[J].中国稻米,2024,30(3):1-9,9.

基金项目

国家自然科学基金(31901452,31872857) (31901452,31872857)

浙江省重点研发计划项目(2021C02063-3) (2021C02063-3)

中国稻米

OA北大核心CSTPCD

1006-8082

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