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植物中参与长距离金属运输的金属物种。

Metal species involved in long distance metal transport in plants.

机构信息

Plant Nutrition Department, Aula Dei Experimental Station (CSIC) Zaragoza, Spain.

出版信息

Front Plant Sci. 2014 Mar 25;5:105. doi: 10.3389/fpls.2014.00105. eCollection 2014.

Abstract

The mechanisms plants use to transport metals from roots to shoots are not completely understood. It has long been proposed that organic molecules participate in metal translocation within the plant. However, until recently the identity of the complexes involved in the long-distance transport of metals could only be inferred by using indirect methods, such as analyzing separately the concentrations of metals and putative ligands and then using in silico chemical speciation software to predict metal species. Molecular biology approaches also have provided a breadth of information about putative metal ligands and metal complexes occurring in plant fluids. The new advances in analytical techniques based on mass spectrometry and the increased use of synchrotron X-ray spectroscopy have allowed for the identification of some metal-ligand species in plant fluids such as the xylem and phloem saps. Also, some proteins present in plant fluids can bind metals and a few studies have explored this possibility. This study reviews the analytical challenges researchers have to face to understand long-distance metal transport in plants as well as the recent advances in the identification of the ligand and metal-ligand complexes in plant fluids.

摘要

植物将金属从根部运输到地上部分的机制尚未完全阐明。长期以来,人们一直认为有机分子参与了植物内部的金属转运。然而,直到最近,只有通过间接方法才能推断出参与金属长距离运输的复合物的身份,例如分别分析金属和假定配体的浓度,然后使用计算机化学形态分析软件来预测金属物种。分子生物学方法也为植物液流中可能的金属配体和金属配合物提供了广泛的信息。基于质谱的分析技术的新进展以及同步加速器 X 射线光谱学的广泛应用,使得能够鉴定植物液流(如木质部和韧皮部汁液)中的一些金属-配体物种。此外,植物液流中存在的一些蛋白质可以结合金属,一些研究已经探索了这种可能性。本研究综述了研究人员在理解植物长距离金属运输方面所面临的分析挑战,以及在鉴定植物液流中的配体和金属-配体复合物方面的最新进展。

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