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有机酸代谢在植物适应养分和铝毒胁迫中的作用

汪建飞1,2;沈其荣2   

  1. 1安徽科技学院, 凤阳 233100;
    2南京农业大学资源与环境科学学院, 南京 210095
  • 收稿日期:2006-02-10 修回日期:2006-09-07 出版日期:2006-11-18 发布日期:2006-11-18

Roles of organic acid metabolism in plant adaptation to nutrient deficiency and aluminum toxicity stress

WANG Jianfei1,2; SHEN Qirong2   

  1. 1Anhui Science and Technology University, Fengyang 233100, China;
    2College of Resources and Environmental Sciences, Nanjing Agricultural University, Nanjing 210095, China
  • Received:2006-02-10 Revised:2006-09-07 Online:2006-11-18 Published:2006-11-18

摘要: 有机酸不仅是碳代谢的中间体,而且在一些植物应对养分缺乏、金属胁迫以及根-土界面中操纵植物-微生物间的交互作用方面都发挥着关键作用.从植物营养学角度,对最近关于植物体内有机酸的形成与生理,及其与氮素代谢,磷和铁的吸收,铝的耐受以及土壤生态之间的关系等方面进行了总结,并对有机酸的跨膜运输、转基因模型中有机酸调控的生物技术操作的最新发现进行了讨论,以期为理解有机酸代谢的植物营养学基本原理提供基础.最后,还提出了通过生物技术,培育作物新品种,以更好地适应环境与金属胁迫.

关键词: 生物安全, 转基因逃逸, 生态风险, 生物多样性

Abstract: Organic acids not only act as the intermediates in carbon metabolism, but also exert key roles in the plant adaptation to nutrient deficiency and metal stress and in the plant-microbe interactions at root-soil interface. From the viewpoint of plant nutrition,this paper reviewed the research progress on the formation and physiology of organic acids in plant, and their functions in nitrogen metabolism, phosphorus and iron uptake, aluminum tolerance, and soil ecology. New findings in the membrane transport of organic acids and the biotechnological manipulation of organic acids in transgenic model were also discussed. This novel perspectives of organic acid metabolism and its potential manipulation might present a possibility to understand the fundamental aspects of plant physiology, and lead to the new strategies to obtain crop varieties better adapted to environmental and metal stress.

Key words: Biosafety, Transgene escape, Ecological risk, Biodiversity