您的位置: 专家智库 > >

国家自然科学基金(20307008)

作品数:3 被引量:68H指数:3
相关作者:彭红云杨肖娥更多>>
相关机构:浙江大学更多>>
发文基金:国家自然科学基金国家重点基础研究发展计划国家高技术研究发展计划更多>>
相关领域:环境科学与工程生物学更多>>

文献类型

  • 3篇中文期刊文章

领域

  • 3篇环境科学与工...
  • 1篇生物学

主题

  • 2篇污染
  • 1篇毒性
  • 1篇叶绿
  • 1篇叶绿体
  • 1篇植物修复
  • 1篇铜污染
  • 1篇铜污染土壤
  • 1篇紫花香薷
  • 1篇污染土
  • 1篇污染土壤
  • 1篇污染物
  • 1篇香薷
  • 1篇金属
  • 1篇化学形态
  • 1篇海州香薷
  • 1篇分析方法
  • 1篇DISTRI...
  • 1篇ACCUMU...
  • 1篇COPPER

机构

  • 2篇浙江大学

作者

  • 2篇杨肖娥
  • 2篇彭红云

传媒

  • 1篇分析化学
  • 1篇水土保持学报
  • 1篇Journa...

年份

  • 1篇2006
  • 2篇2005
3 条 记 录,以下是 1-3
排序方式:
Accumulation and ultrastructural distribution of copper in Elsholtzia splendens被引量:13
2005年
Copper accumulation and intracellular distribution in Elsholtzia splendens, a native Chinese Cu-tolerant and accu- mulating plant species, was investigated by transmission electron microscope (TEM) and gradient centrifugation techniques. Copper concentrations in roots, stems and leaves of E. splendens increased with increasing Cu levels in solution. After exposure to 500 μmol/L Cu for 8 d, about 1000 mg/kg Cu were accumulated in the stem and 250 mg/kg Cu in the leaf of E. splendens. At 50 μmol/L Cu, no significant toxicity was observed in the chloroplast and mitochondrion within its leaf cells, but separation appeared at the cytoplasm and the cell wall within the root cells. At >250 μmol/L Cu, both root and leaf organelles in E. splendens were damaged heavily by excessive Cu in vivo. Copper subcellular localization in the plant leaf after 8 days’ exposure to 500 μmol/L Cu using gradient centrifugation techniques was found to be decreased in the order: chloroplast>cell wall>soluble fraction>other organelles. The plant root cell wall was found to be the site of highest Cu localization. Increase of Cu exposure time from 8 d to 16 d, increased slightly Cu concentration in cell wall fraction in roots and leaves, while that in the chloroplast fraction decreased in leaves of the plants grown in both 0.25 μmol/L and 500 μmol/L Cu. TEM confirmed that much more Cu localized in cell walls of E. splendens roots and leaves, but also more Cu localized in E. splendens’ chloroplast when the plant is exposed to Cu levels>250 μmol/L, as compared to those in the plant grown in 0.25 μmol/L Cu. Copper treatment at levels>250 μmol/L caused pronounced damage in the leaf chloroplast and root organelles. Copper localization in cell walls and chloroplasts could mainly account for the high detoxification of Cu in E. splendens.
彭红云杨肖娥田生科
关键词:叶绿体毒性污染物
香薷植物修复铜污染土壤的研究进展被引量:38
2005年
土壤铜污染有自然来源和人为来源。铜污染土壤中有机质、Fe/Al氧化物对铜的专性吸附,是影响土壤中铜生物有效性的主要因素。近年来,我国原生植物修复材料如海州香薷、鸭跖草、酸模、紫花香薷在国内铜污染土壤的研究中得到广泛应用。其中,采用海州香薷开展铜污染土壤植物修复机理和修复技术的研究,已从实验室水培、盆栽试验的生长反应特性、耐及解铜毒的生理生化反应,进展到室外大田修复的示范工程及技术推广阶段。紫花香薷在重金属复合污染土壤上,也有修复前景。开展植物修复材料的产后处置研究,综合利用和深加工,增大植物修复材料价值,对加强植物修复工程的示范和推广步伐,有重要意义。
彭红云杨肖娥
关键词:铜污染海州香薷紫花香薷植物修复
金属有机配体分析方法及金属组学研究被引量:19
2006年
环境和生物样品中金属与有机酸、氨基酸、多糖、蛋白质、DNA等形成的金属有机物是一系列生物金属。生物金属中参与金属离子配位的有机配基主要是含氧、硫、氮及磷的功能团。金属组学是整合生物金属中金属有机配体的结合形态及其生理功能活性的新概念。文中介绍了目前常用的金属有机配体的分析方法以及金属组学领域的研究技术,并展望了重金属富集和超积累植物的研究前景。
彭红云杨肖娥
关键词:化学形态
共1页<1>
聚类工具0