首页> 外文期刊>Journal of Nanoparticle Research >The effects of nano-TiO2 on seed germination, development and mitosis of root tip cells of Vicia narbonensis L. and Zea mays L
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The effects of nano-TiO2 on seed germination, development and mitosis of root tip cells of Vicia narbonensis L. and Zea mays L

机译:纳米TiO 2 对纳豆和玉米根尖细胞的种子萌发,发育和有丝分裂的影响

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This study aimed to provide new information about phyto-toxicology of nano-TiO2 on plant systems. To contribute to the evaluation of the potential harmful effects of the nanoparticles on monocots and dicots we considered their effects on seed germination and root elongation applying a concentration range from 0.2 to 4.0‰ in the plants Zea mays L. and Vicia narbonensis L. Moreover, we achieved a genotoxicity study at cytological level in root meristems by means of traditional cytogenetic approach, to evidence possible alterations in mitotic activity, chromosomal aberrations, and micronuclei release. From these analyses it comes out that nano-TiO2 particles, after short-term exposure and under our experimental conditions, delayed germination progression for the first 24 h in both materials. Root elongation was affected only after treatment with the higher nano-TiO2 concentration. Further significant effects were detected showing mitotic index reduction and concentration-dependent increase in the aberration emergence that evidenced a nano-TiO2-induced genotoxic effect for both species.
机译:本研究旨在提供有关纳米TiO 2 在植物系统上的植物毒理学的新信息。为了评估纳米颗粒对单子叶植物和双子叶植物的潜在有害影响,我们考虑了在玉米(Zea mays L.)和野豌豆(Vicia narbonensis L)植物中,其浓度对种子萌发和根系伸长的影响,浓度范围为0.2至4.0‰。我们通过传统的细胞遗传学方法在根分生组织的细胞学水平上进行了遗传毒性研究,以证明有丝分裂活性,染色体畸变和微核释放可能发生改变。从这些分析中可以看出,在短期暴露后和在我们的实验条件下,两种材料中的纳米TiO 2 颗粒均延迟了最初24小时的发芽进程。较高的纳米TiO 2 浓度处理后才影响根伸长。检测到进一步的显着效果,表明有丝分裂指数降低和像差出现时浓度依赖性增加,这证明了纳米TiO 2 诱导的两种物种的遗传毒性作用。

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