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植物耐铝机理研究进展
引用本文:杨建立,何云峰,郑绍建.植物耐铝机理研究进展[J].植物营养与肥料学报,2005,11(6):836-845.
作者姓名:杨建立  何云峰  郑绍建
作者单位:1.浙江大学环境与资源学院污染环境修复与生态健康教育部重点实验室 浙江杭州310029
基金项目:教育部跨世纪优秀人才培养计划,教育部优秀青年教师资助计划,中国科学院资助项目
摘    要:铝毒是酸性土壤上作物生产的主要限制因子,植物耐铝机理以及与耐铝有关基因的研究是近十多年来研究的热点。本文对植物耐铝的生理、遗传及分子机理的研究进展作了综述。明确了目前取得的突破性进展已使通过植物遗传育种及生物技术手段提高粮食作物耐铝性成为可能;同时,本文对今后的研究方向作了简要的讨论。

关 键 词:    有机酸    耐铝机理    铝诱导基因
文章编号:1008-505X(2005)06-0836-10
收稿时间:2004-11-12
修稿时间:2004年11月12

Research progresses in aluminum tolerance mechanisms in plants
YANG Jian-li,HE Yun-feng,ZHENG Shao-jian.Research progresses in aluminum tolerance mechanisms in plants[J].Plant Nutrition and Fertilizer Science,2005,11(6):836-845.
Authors:YANG Jian-li  HE Yun-feng  ZHENG Shao-jian
Institution:1.The Ministerial Key Lab.of Remediation of Polluted Envir.and Eco-health;College of Envir.and Resour.Sci.;Zhejiang Univ.;Hangzhou 310029;China
Abstract:Aluminum toxicity is one of the most deleterious factors limiting crop production on acid soils.Hence,understanding the mechanisms and genes conferring tolerance to aluminum toxicity has been the research highlight over the past decade.Combining with the latest research results,we briefly reviewed the current understanding of the physiological,genetic,and molecular basis for plant aluminum tolerance.Resistant mechanism to Al stress has been classified as exclusion mechanism that excludes Al from entering root apex and internal tolerance mechanism that allows the plant to tolerate Al accumulation in root and shoot symplasm.Physiologically,although organic acids efflux is an important mechanism whereby some plants exhibit high Al resistance,other mechanisms such as phenolic compounds secretion and immobilization of aluminum with phosphorous in root apoplast also operate in plants.The internal tolerant mechanism was mainly achieved by forming non-phytotoxic Al-organic acid chelator and compartmentation in vacuole.The genetic architecture of tolerance was variable,being monogenic in some species such as wheat but polygenic in others such as maize.Recently,the first Al-tolerant gene ALMT1 controlling Al-regulated malate efflux from plant roots was cloned and transgene ALMT1 plants showed high Al tolerance.A better understanding will open up new avenues of physiological and molecular research that will in turn greatly advance our understanding of these tolerance mechanisms.Additionally,these breakthroughs would provide new molecular resources for improving crop aluminum tolerance via both molecular-assisted breeding and biotechnology.
Keywords:aluminum  organic acids  aluminum tolerance mechanism  aluminum-induced genes
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