首页> 美国卫生研究院文献>Frontiers in Plant Science >The Effects of Fe2O3 Nanoparticles on Physiology and Insecticide Activity in Non-Transgenic and Bt-Transgenic Cotton
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The Effects of Fe2O3 Nanoparticles on Physiology and Insecticide Activity in Non-Transgenic and Bt-Transgenic Cotton

机译:Fe2O3纳米颗粒对非转基因和转Bt基因棉花生理和杀虫活性的影响

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摘要

As the demands for nanotechnology and nanoparticle (NP) applications in agriculture increase, the ecological risk has drawn more attention because of the unpredictable results of interactions between NPs and transgenic crops. In this study, we investigated the effects of various concentrations of Fe2O3 NPs on Bt-transgenic cotton in comparison with conventional cotton for 10 days. Each treatment was conducted in triplicate, and each experiment was repeated three times. Results demonstrated that Fe2O3 NPs inhibited the plant height and root length of Bt-transgenic cotton and promoted root hairs and biomass of non-transgenic cotton. Nutrients such as Na and K in Bt-transgenic cotton roots increased, while Zn contents decreased with Fe2O3 NPs. Most hormones in the roots of Bt-transgenic cotton increased at low Fe2O3 NP exposure (100 mg⋅L-1) but decreased at high concentrations of Fe2O3 NPs (1000 mg⋅L-1). Fe2O3 NPs increased the Bt-toxin in leaves and roots of Bt-transgenic cotton. Fe2O3 NPs were absorbed into roots, then transported to the shoots of both Bt-transgenic and non-transgenic cottons. The bioaccumulation of Fe2O3 NPs in plants might be a potential risk for agricultural crops and affect the environment and human health.
机译:随着对农业中纳米技术和纳米颗粒(NP)应用需求的增加,由于NP与转基因作物之间相互作用的不可预测结果,生态风险引起了更多关注。在这项研究中,我们调查了与传统棉花相比,不同浓度的Fe2O3 NPs对转Bt转基因棉花的影响,持续10天。每种处理一式三份进行,并且每个实验重复三次。结果表明,Fe2O3 NPs抑制了转Bt基因棉的株高和根长,并促进了非转基因棉的根毛和生物量。转Bt基因棉根中的Na和K等营养素增加,而Fe2O3 NPs使Zn含量下降。 Bt转基因棉花根部的大多数激素在低Fe2O3 NP暴露(100mg⋅L -1 )时增加,但在高Fe2O3 NPs(1000mg⋅L -1 < / sup>)。 Fe2O3 NPs增加了转Bt转基因棉花叶片和根中的Bt毒素。 Fe2O3 NPs被吸收到根中,然后转运到Bt转基因和非转基因棉花的芽中。植物中Fe2O3 NPs的生物蓄积可能是农作物的潜在风险,并影响环境和人类健康。

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