首页> 外文期刊>Journal of trace elements in medicine and biology: Organ of the Society for Minerals and Trace Elements (GMS) >Evaluation of changes in the macro and micronutrients homeostasis of transgenic and non-transgenic soybean plants after cultivation with silver nanoparticles through ionomic approaches
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Evaluation of changes in the macro and micronutrients homeostasis of transgenic and non-transgenic soybean plants after cultivation with silver nanoparticles through ionomic approaches

机译:通过离子方法在培养中栽培中转基因和非转基因大豆植物的宏观和微量营养素的变化评价

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摘要

An ionomic approach is conducted for evaluating the silver distribution, in different soybean plant compartments, as well as its influence on the homeostasis of some macro (P and S) and micro (Cu, Fe, Mn and Zn) nutrients. Silver is added to transgenic and non-transgenic soybean plants as nanoparticles or silver nitrate for comparative purposes. The transgenic plants translocate a higher amount of silver (100 and 65% for silver nanoparticles and silver nitrate expositions, respectively) than non-transgenic, and considering the treatments, the cultivation with silver nanoparticles results in a higher translocation rate (100 and 21% for transgenic and non-transgenic plants, respectively). In addition, significant differences are found (p 0.05) considering those macro and micronutrients in all plant compartments, mainly in the roots of those treated plants, indicating not only that both silver forms evaluated interfere in the plant metabolism, but also their toxicities.
机译:进行离子化方法,用于评估不同大豆植物隔室的银色分布,以及其对一些宏(P和S)和微观(Cu,Fe,Mn和Zn)营养素的稳态的影响。 作为纳米颗粒或硝酸银,将银添加到转基因和非转基因大豆植物中以进行比较目的。 转基因植物比非转基因均衡较高量的银(100和65%),并且考虑到处理,用银纳米粒子的培养导致易位率较高(100和21% 对于转基因和非转基因植物,分别为转基因和非转基因植物。 此外,考虑所有植物隔室中的那些宏观和微量营养素的发现(P <0.05)的发现(P <0.05)的差异显着差异,主要表明两种银色形式评估干扰植物代谢,还具有它们的毒性 。

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