Suppr超能文献

[植物中硒(Se)的吸收、转化机制及生理功能综述]

[Selenium (Se)uptake and transformation mechanisms and physiological function in plant: A review].

作者信息

Jiang Ying, Zeng Zhao Hai, Yang Qi Sheng, Zhao Jie, Yang Ya Dong, Hu Yue Gao

机构信息

College of Agronomy and Biotechnology, China Agricultural University, Beijing 100193, China.

出版信息

Ying Yong Sheng Tai Xue Bao. 2016 Dec;27(12):4067-4076. doi: 10.13287/j.1001-9332.201612.037.

Abstract

Selenium (Se) is an essential nutrient for many organisms, including microbe, animal and human, but the Se uptake and transformation mechanisms and physiological roles in plant still are controversial until now. Se could improve the growth and tolerance of plant at an appropriate le-vel, but could be toxic at higher levels. Research concerning Se uptake and metabolism in plant were promoted by Se biofortification and Se phytoremediation induced by the issues of Se deficiency in food and Se pollution in special areas. Recently, the results of Se uptake and transformation in plant have indicated that there are significant differences of Se accumulation and physiological roles in various plants and significant influence of soil conditions on Se uptake of plant. In addition, the process of Se metabolism in Se hyperaccumulators and its regulation were revealed gradually with the studies on improvement of Se uptake in plant. According to the results of Se biofortification in crop and Se phytoremediation so far, we summarized the advances in the studies with the reference to Se distribution in environment, the detail process of Se uptake, key regulators of transformation and its physiological roles in plant. We hope this can provide a novel insight to further research upon Se in plant.

摘要

硒(Se)是包括微生物、动物和人类在内的许多生物体必需的营养素,但迄今为止,植物中硒的吸收、转化机制及其生理作用仍存在争议。适量的硒可以促进植物生长并提高其耐受性,但高浓度的硒可能具有毒性。由于食品中硒缺乏和特定区域硒污染等问题引发的硒生物强化和硒植物修复,推动了有关植物对硒的吸收和代谢的研究。最近,植物中硒吸收和转化的研究结果表明,不同植物在硒积累和生理作用方面存在显著差异,土壤条件对植物吸收硒有重大影响。此外,随着对提高植物硒吸收的研究,硒超富集植物中硒代谢的过程及其调控逐渐被揭示。根据目前作物硒生物强化和硒植物修复的研究结果,我们结合环境中硒的分布、硒吸收的详细过程、转化的关键调节因子及其在植物中的生理作用,总结了相关研究进展。希望这能为进一步研究植物中的硒提供新的视角。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验