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利用同步辐射微 X 射线荧光研究香薷中的铅耐受性和细胞分布。

Lead tolerance and cellular distribution in Elsholtzia splendens using synchrotron radiation micro-X-ray fluorescence.

机构信息

MOE Key Laboratory of Environment Remediation and Ecosystem Health, College of Environmental and Resource Sciences, Zhejiang University, Hangzhou, China.

出版信息

J Hazard Mater. 2011 Dec 15;197:264-71. doi: 10.1016/j.jhazmat.2011.09.085. Epub 2011 Sep 29.

Abstract

Hydroponic experiments were conducted to investigate the tolerance and spatial distribution of lead (Pb) in Elsholtzia splendens-a copper (Cu) accumulator plant using synchrotron-based micro-X-ray fluorescence. According to chlorophyll concentration and chlorophyll fluorescence parameters, E. splendens displayed certain tolerance at 100 μM Pb treatment. Lead concentration in roots, stems and leaves of E. splendens reached 45,183.6, 1657.6, and 380.9 mg kg(-1), respectively. Pb was mostly accumulated in the roots, and there were also high concentrations of Pb been transported into stems and leaves. Micro-XRF analysis of the stem and leaf cross section revealed that Pb was mostly restricted in the vascular bundles and epidermis tissues of both stem and leaf of E. splendens. The correlation between distribution of K, Ca, Zn and Pb were analyzed. There were significant positive correlations (P<0.01) among Pb and Ca, K, Zn distribution both in stem and leaf of E. splendens. However, among the three elements, Ca shared the most similar distribution pattern and the highest correlation coefficients with Pb in both stem and leaf cross section of E. splendens. This suggests that Ca may play an important role in Pb accumulation in stem and leaf of E. splendens.

摘要

采用同步辐射微束 X 射线荧光技术研究了水培条件下 Pb 胁迫对香薷(一种 Cu 积累植物)耐性及其在植株体内的空间分布特征。根据叶绿素含量和叶绿素荧光参数,香薷在 100 μM Pb 处理下表现出一定的耐性。香薷的根、茎和叶中 Pb 浓度分别达到 45183.6、1657.6 和 380.9 mg·kg-1。Pb 主要积累在根部,也有较高浓度的 Pb 被运输到茎和叶中。茎和叶横切面的微 XRF 分析表明,Pb 主要局限于茎和叶的维管束和表皮组织中。对茎和叶中 K、Ca、Zn 和 Pb 分布的相关性进行了分析。在香薷的茎和叶中,Pb 与 Ca、K、Zn 的分布均呈显著正相关(P<0.01)。然而,在这三种元素中,Ca 与 Pb 在茎和叶横切面上的分布模式最为相似,相关系数也最高。这表明 Ca 可能在香薷的茎和叶中对 Pb 的积累起重要作用。

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