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Root Morphology and Zn2+ Uptake Kinetics of the Zn Hyperaccumulator of Sedum alfredii Hance

机译:东南景天锌超量积累根系形态和Zn2 +吸收动力学

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摘要

Root morphology and Zn2+ uptake kinetics of the hyperaccumulating ecotype (HE) and nonhyperaccumulating ecotype (NHE) of Sedum alfredii Hance were investigated using hydroponic methods and the radiotracer flux technique. The results indicate that root length, root surface area, and root volume of NHE decreased significantly with increasing Zn2+ concentration in growth media, whereas the root growth of HE was not adversely affected, and was even promoted, by 500 μmol/L Zn2+. The concentrations of Zn2+ in both ecotypes of S. alfredii were positively correlated with root length, root surface area and root volumes, but no such correlation was found for root diameter. The uptake kinetics for 65Zn2+ in roots of both ecotypes of S. alfredii were characterized by a rapid linear phase during the first 6 h and a slower linear phase during the subsequent period of investigation. The concentration-dependent uptake kinetics of the two ecotypes of S. alfredii could be characterized by the Michaelis-Menten equation, with the Vmax for 65Zn2+ influx being threefold greater in HE compared with NHE, indicating that enhanced absorption into the root was one of the mechanisms involved in Zn hyperaccumulation. A significantly larger Vmax value suggested that there was a higher density of Zn transporters per unit membrane area in HE roots.
机译:利用水培法和放射性示踪剂通量技术研究了东南景天超积型和非超积型的根系形态和Zn2 +吸收动力学。结果表明,随着生长介质中Zn2 +浓度的增加,NHE的根长,根表面积和根体积均显着降低,而500μmol/ L Zn2 +对HE的根生长没有不利影响,甚至有促进作用。两种生态型S. alfredii中Zn2 +的浓度均与根长,根表面积和根体积呈正相关,但与根直径没有相关性。两个生态型S. alfredii的根中65Zn2 +的吸收动力学特征是在开始的6 h内呈快速线性相,在随后的研究期间呈较慢的线性相。两个生态型S. alfredii的浓度依赖的吸收动力学可以通过Michaelis-Menten方程来表征,HE中65Zn2 +流入量的Vmax比NHE高三倍,这表明增强吸收到根中是其中之一。锌过度积累的机制。显着更大的Vmax值表明,HE根中每单位膜面积的Zn转运蛋白密度更高。

著录项

  • 来源
    《植物学报(英文版)》 |2005年第8期|927-934|共8页
  • 作者单位

    Ministry of Education Key Laboratory of Environmental Remediation and Ecosystem Health, Zhejiang University, Huajiachi Campus, Hangzhou 310029, China;

    Ministry of Education Key Laboratory of Environmental Remediation and Ecosystem Health, Zhejiang University, Huajiachi Campus, Hangzhou 310029, China;

    University of Florida, Indian River Research and Education Center, Fort Pierce, Florida 34945, USA;

    Ministry of Education Key Laboratory of Environmental Remediation and Ecosystem Health, Zhejiang University, Huajiachi Campus, Hangzhou 310029, China;

  • 收录信息 中国科学引文数据库(CSCD);
  • 原文格式 PDF
  • 正文语种 chi
  • 中图分类 植物学;
  • 关键词

    phytoremediation; Sedum alfredii; translocation; uptake kinetics; zinc (Zn);

    机译:植物修复;东南景天;易位;吸收动力学;锌(Zn);
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