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通过木质部在超积累植物蓝蓟(十字花科)中镍和钴的流动性和积累的定量。

Quantification of nickel and cobalt mobility and accumulation via the phloem in the hyperaccumulator Noccaea caerulescens (Brassicaceae).

机构信息

Institute of Quality Standard and Monitoring Technology for Agro-Products, Guangdong Academy of Agricultural Sciences, Guangzhou 510640, P. R. China.

Key Laboratory of Testing and Evaluation for Agro-Product Safety and Quality, Ministry of Agriculture, Guangzhou 510640, P. R. China.

出版信息

Metallomics. 2021 Apr 24;13(4). doi: 10.1093/mtomcs/mfab012.

Abstract

Hyperaccumulators have exceptional phloem translocation capability for heavy metals. This study aims at quantifying the mobility and accumulation of Ni and Co via the phloem in the model hyperaccumulator Noccaea caerulescens. "Phloem loading capability (PLC)," which is calculated by the "Metal content in phloem sap/Metal content in leaves," was introduced to evaluate the metal phloem mobility, while "Phloem mobility value (PMV)" was used for the normalization of PLC, which sets the PLC of Sr as PMV 0 and that of Rb as 100. The results showed that the PMVs of Ni and Co were 63 and 47, respectively. And the phloem mobility of Rb, Ni, Co, and Sr could be graded as highly mobile, mobile, intermediate, and immobile accordingly. The phloem stream can supply up to 19.1% and 16.0% of the total Ni and Co accumulated in the young leaves, respectively, while for Rb and Sr, the phloem contributes to 29% and 1.4% of the total Rb or Sr, indicating phloem contribution of certain metal is directly linked with its mobility. The results of this study raise the importance of phloem translocation on metal accumulation in shoots and provide insights on the metal cycling process in hyperaccumulators.

摘要

超积累植物具有非凡的韧皮部重金属转运能力。本研究旨在量化模型超积累植物蓝藻(Noccaea caerulescens)中通过韧皮部运输的镍和钴的流动性和积累。“韧皮部装载能力(PLC)”是通过“韧皮部汁液中的金属含量/叶片中的金属含量”计算得出的,用于评估金属韧皮部流动性,而“韧皮部流动性值(PMV)”则用于 PLC 的归一化,将 Sr 的 PLC 设置为 PMV0,将 Rb 的 PLC 设置为 100。结果表明,镍和钴的 PMV 值分别为 63 和 47。并且,Rb、Ni、Co 和 Sr 的韧皮部流动性可以相应地划分为高流动性、流动性、中等流动性和不流动性。韧皮部流可以为幼叶中积累的镍和钴分别提供高达 19.1%和 16.0%的总量,而对于 Rb 和 Sr,韧皮部对 Rb 或 Sr 的总量的贡献分别为 29%和 1.4%,这表明韧皮部对特定金属的贡献与其流动性直接相关。本研究的结果提高了韧皮部转运对地上部金属积累的重要性,并为超积累植物中的金属循环过程提供了新的认识。

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