Functions of nickel in higher plants: A review

R. Kastori, M. Putnik-Delić, I. Maksimović
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引用次数: 2

Abstract

Nickel (Ni) is an essential microelement for higher plants and an important one for many other living organisms. It is present in every part of the biosphere. Higher plants have small requirements towards Ni for their optimal growth and development. That is why its latent and acute deficiencies in nature rarely occur. Soil and water pollution with Ni is a global issue. This is the reason special attention is paid to the effects of higher Ni concentrations on plants metabolism, their organic production, as well as on the possibility of using plants for phytoremediation of Ni contaminated habitats. Depending on the present concentrations, nickel may favourably, unfavourably or not affect the metabolic processes of plants at all (enzyme activity, photosynthesis, respiration, water regime, mineral nutrition, etc.), and thus the growth and development of plants. There are still many questions about the mechanism of Ni influence on the physiological and biochemical processes of plants. Therefore, we believe the presentation of the previous knowledge about the effect of Ni on plants' life processes can contribute to a better understanding of the biotechnical and ecological significance of Ni, and it can indicate further research directions in this field.
镍在高等植物中的功能研究进展
镍(Ni)是高等植物必需的微量元素,也是许多其他生物的重要元素。它存在于生物圈的每一个部分。高等植物的生长发育对镍的需求量较小。这就是为什么它在本质上很少出现潜在的和急性的缺陷。土壤和水污染是一个全球性的问题。这就是为什么人们特别关注高浓度Ni对植物代谢、有机生产的影响,以及利用植物修复Ni污染生境的可能性。根据目前的浓度,镍可能对植物的代谢过程(酶活性、光合作用、呼吸作用、水分状况、矿物质营养等)产生有利、不利或根本不产生影响,从而影响植物的生长和发育。镍对植物生理生化过程的影响机制尚不清楚。因此,我们认为,对Ni对植物生命过程影响的前期认识的介绍有助于更好地理解Ni的生物技术和生态意义,并为该领域的进一步研究指明方向。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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