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亚硒酸盐和硒酸盐在调控镍暴露生菜生长及生理参数方面的差异

Difference between Selenite and Selenate in the Regulation of Growth and Physiological Parameters of Nickel-Exposed Lettuce.

作者信息

Hawrylak-Nowak Barbara, Matraszek-Gawron Renata

机构信息

Department of Botany and Plant Physiology, Faculty of Environmental Biology, University of Life Sciences in Lublin, Akademicka 15, 20-950 Lublin, Poland.

出版信息

Biology (Basel). 2020 Dec 12;9(12):465. doi: 10.3390/biology9120465.

Abstract

Nickel is an essential plant micronutrient; however, even at low concentrations, it may be phytotoxic. Selenium is a beneficial element with an alleviating effect that has been confirmed in the case of many abiotic stresses, including metal toxicity. The aim of this study is to assess the effect of two forms of Se (Se(IV) or Se(VI)) on the phytotoxicity, accumulation, and translocation of Ni in lettuce. Nickel causes a reduction in lettuce growth and vitality of roots, probably through increased lipid peroxidation. The application of Se(IV) to a Ni-contaminated medium resulted in a further reduction of growth, especially in the presence of 6 µM Se(IV). The growth-promoting effect of Se was found only in the 2 µM Se(VI)/10 µM Ni treatment. The application of 6 µM Se, regardless of the Se form, to the Ni-containing substrate caused an increase in shoot Ni concentration. In turn, a decrease in root Ni content was found for all Se treatments. The strong aggravation of Ni phytotoxicity in the presence of 6 µM Se(IV) was most likely related to the accumulation of high Se concentration in the roots, and the combination of high root Ni accumulation caused irreversible dysregulation of cell metabolism.

摘要

镍是植物必需的微量营养元素;然而,即使浓度很低,它也可能具有植物毒性。硒是一种有益元素,在包括金属毒性在内的许多非生物胁迫情况下,已证实其具有缓解作用。本研究的目的是评估两种形式的硒(硒(IV)或硒(VI))对生菜中镍的植物毒性、积累和转运的影响。镍可能通过增加脂质过氧化作用导致生菜生长和根系活力下降。将硒(IV)施用于受镍污染的培养基中会导致生长进一步降低,尤其是在存在6 μM硒(IV)的情况下。仅在2 μM硒(VI)/10 μM镍处理中发现了硒的促生长作用。无论硒的形式如何,向含镍底物施用6 μM硒都会导致地上部镍浓度增加。反过来,在所有硒处理中都发现根系镍含量降低。在存在6 μM硒(IV)的情况下镍植物毒性的强烈加剧很可能与根系中高浓度硒的积累有关,以及高根系镍积累的组合导致细胞代谢的不可逆失调。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e668/7763836/9dd13d845f42/biology-09-00465-g001.jpg

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