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湿地植物根系泌氧的特征
引用本文:邓泓,叶志鸿,黄铭洪.湿地植物根系泌氧的特征[J].华东师范大学学报(自然科学版),2007,2007(6):69-76.
作者姓名:邓泓  叶志鸿  黄铭洪
作者单位:1. 华东师范大学,环境科学系,上海市城市化生态过程与生态恢复重点实验室,上海,200062
2. 中山大学,生命科学学院,广州,510275
3. 香港浸会大学,裘搓环境科学研究所,生物系,香港,九龙
基金项目:Hong Kong Research Grants Council of the University Grants Committee(HKBU-2072/01M)
摘    要:研究了10种湿地植物的根系泌氧(radial oxygen loss, ROL)特征及其相关因素.泌氧不仅在物种间存在差异,而且在根系的不同部位也有明显不同.根据泌氧速率在根不同部位的变化趋势可将湿地植物的根部泌氧方式分为3种类型.类型Ⅰ为ROL在根的任意部位均较高,且沿氧传输方向逐渐降低;类型Ⅱ为ROL在根尖区域最高,之后沿根基部方向迅速降低;类型Ⅲ为ROL在根的任何位置泌氧速率非常低,且不随根的部位而变化.溶液培养条件下,缺氧胁迫能使植物根的直径增粗,根孔隙度提高,通气组织更加发达,诱导根基部泌氧屏障的生成,使泌氧速率和泌氧方式发生变化.

关 键 词:湿地植物  径向泌氧  通气组织  湿地植物  径向泌氧  通气组织
文章编号:1000-5641(2007)06-0069-08
收稿时间:2006-8-31
修稿时间:2006-08

Characteristics of Radial Oxygen Loss from Root of Wetland Plants(Chinese)
DENG Hong,YE Zhi-hong,HUANG Ming-hong.Characteristics of Radial Oxygen Loss from Root of Wetland Plants(Chinese)[J].Journal of East China Normal University(Natural Science),2007,2007(6):69-76.
Authors:DENG Hong  YE Zhi-hong  HUANG Ming-hong
Institution:1. Key Laboratoty of Urbanization and Ecological Restoration, Department of Environmental Science, East China Normal University, Shanghai 200062, China;2. Life School of Zhongshan University, Guangzhou 510275, China; 3. Croucher Institute for Environmental Sciences, Department of Biology, Hong Kong Baptist University, Kowloon Tong Hong Kong, China
Abstract:Characteristics of radial oxygen loss (ROL) from root of 10 wetland plants was studied in this paper.Root ROL varied with the distance from root tips,as well as with species.Spatial pattern of ROL was identified to show 3 types according to the trends of ROL rate along adventitious roots.Type Ⅰ showed a relatively high rate of ROL along the whole root,declining gradually from root apex to root basal part.Type Ⅱ was indicated by significantly high ROL in root apex but decreased greatly towards root base.As for Type Ⅲ,ROL was similar but very low along the whole root.In nutrient solutions,deoxygenation caused a series of changes in root ana-tomy of some species,such as increased root diameter,root porosity and more developed aerenchyma,inducing a ROL barrier in root basal part and the consequent change of ROL profile.
Keywords:wetland plants  ROL  aerenchyma
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