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基于木质部的长距离运输和柳属植物韧皮部再移动的铜。

Xylem-based long-distance transport and phloem remobilization of copper in Salix integra Thunb.

机构信息

Research Institute of Subtropical Forestry, Chinese Academy of Forestry, Hangzhou, Zhejiang, 311400, China.

Department of Analytical Chemistry, The Connecticut Agricultural Experiment Station, New Haven, CT, 06504, United States.

出版信息

J Hazard Mater. 2020 Jun 15;392:122428. doi: 10.1016/j.jhazmat.2020.122428. Epub 2020 Feb 28.

Abstract

Due to high biomass and an ability to accumulate metals, fast-growing tree species are good candidates for phytoremediation. However, little is known about the long-distance transport of heavy metals in woody plants. The present work focused on the xylem transport and phloem remobilization of copper (Cu) in Salix integra Thunb. Seedlings with 45 d preculture were grown in nutrient solutions added with 0.32 and 10 μM CuSO for 5 d. Micro X-ray fluorescence imaging showed the high Cu intensity in xylem tissues of both stem and root cross sections, confirming that the xylem played a vital role in Cu transport from roots to shoots. Cu was presented in both xylem sap and phloem exudate, which demonstrates the long-distance transport of Cu via both vascular tissues. Additionally, the Cu spiked mature leaf exported approximately 78 % Cu to newly emerged shoots, and approximately 22 % downward to the new roots, confirming the bidirectional transport of Cu via phloem. To our knowledge, this is the first report to characterize Cu vascular transport and remobilization in fast-growing woody plants, and the findings provide valuable mechanistic understanding for the phytoremediation of Cu-contaminated soils.

摘要

由于生物量大且能够积累金属,快速生长的树种是植物修复的良好候选者。然而,关于重金属在木本植物中的远距离运输知之甚少。本工作主要研究了柳树(Salix integra Thunb.)幼苗中铜(Cu)的木质部运输和韧皮部再利用。经过 45 天预培养的幼苗在添加 0.32 和 10 μM CuSO4 的营养液中生长了 5 天。微 X 射线荧光成像显示,茎和根横截面上的木质部组织中 Cu 强度很高,证实木质部在 Cu 从根部向地上部的运输中起着至关重要的作用。Cu 存在于木质部汁液和韧皮部渗出液中,这表明 Cu 通过维管束进行远距离运输。此外,添加 Cu 的成熟叶片向新出现的嫩枝输出了大约 78%的 Cu,大约 22%向下输送到新根,证实了 Cu 通过韧皮部的双向运输。据我们所知,这是首次描述快速生长的木本植物中 Cu 的维管束运输和再利用,研究结果为 Cu 污染土壤的植物修复提供了有价值的机制理解。

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