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植物中的必需和有益微量元素及其在根中的转运:综述

Essential and Beneficial Trace Elements in Plants, and Their Transport in Roots: a Review.

作者信息

Vatansever Recep, Ozyigit Ibrahim Ilker, Filiz Ertugrul

机构信息

Department of Biology, Faculty of Science and Arts, Marmara University, Goztepe, 34722, Istanbul, Turkey.

Department of Crop and Animal Production, Cilimli Vocational School, Duzce University, 81750, Cilimli, Duzce, Turkey.

出版信息

Appl Biochem Biotechnol. 2017 Jan;181(1):464-482. doi: 10.1007/s12010-016-2224-3. Epub 2016 Sep 29.

Abstract

The essentiality of 14 mineral elements so far have been reported in plant nutrition. Eight of these elements were known as micronutrients due to their lower concentrations in plants (usually ≤100 mg/kg/dw). However, it is still challenging to mention an exact number of plant micronutrients since some elements have not been strictly proposed yet either as essential or beneficial. Micronutrients participate in very diverse metabolic processes, including from the primary and secondary metabolism to the cell defense, and from the signal transduction to the gene regulation, energy metabolism, and hormone perception. Thus, the attempt to understand the molecular mechanism(s) behind their transport has great importance in terms of basic and applied plant sciences. Moreover, their deficiency or toxicity also caused serious disease symptoms in plants, even plant destruction if not treated, and many people around the world suffer from the plant-based dietary deficiencies or metal toxicities. In this sense, shedding some light on this issue, the 13 mineral elements (Fe, B, Cu, Mn, Mo, Si, Zn, Ni, Cl, Se, Na, Al, and Co), required by plants at trace amounts, has been reviewed with the primary focus on the transport proteins (transporters/channels) in plant roots. So, providing the compiled but extensive information about the structural and functional roles of micronutrient transport genes/proteins in plant roots.

摘要

到目前为止,已有报道称14种矿质元素在植物营养中必不可少。其中8种元素因在植物中的浓度较低(通常≤100毫克/千克干重)而被称为微量营养元素。然而,由于一些元素尚未被严格界定为必需元素或有益元素,因此确切指出植物微量营养元素的数量仍然具有挑战性。微量营养元素参与非常多样的代谢过程,包括从初级和次级代谢到细胞防御,以及从信号转导到基因调控、能量代谢和激素感知。因此,从基础植物科学和应用植物科学的角度来看,了解其转运背后的分子机制具有重要意义。此外,它们的缺乏或毒性也会在植物中引发严重的病害症状,若不加以处理甚至会导致植物死亡,并且世界上许多人都遭受基于植物的饮食缺乏或金属毒性之苦。从这个意义上说,为了阐明这个问题,本文综述了植物所需的13种微量矿质元素(铁、硼、铜、锰、钼、硅、锌、镍、氯、硒、钠、铝和钴),主要关注植物根系中的转运蛋白(转运体/通道)。因此,本文提供了关于植物根系中微量营养元素转运基因/蛋白的结构和功能作用的汇总但丰富的信息。

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