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Effects of Zinc Oxide Nano-particles on Groundnut (Arachis hypogaea) Seedlings

机译:氧化锌纳米粒子对地生(甘氏腹腹腹幼苗的影响

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Along with the rapid growth of nanoparticle consumption in various industries, concerns about the unknown effects caused by the presence of these materials in the natural environment and agricultural systems are being highlighted. Due to the growing trend of Nano Zinc Oxide Nanoparticle (ZnO-np) which is one of the most widely used nanoparticles being released into the environment, it has attracted the attention for more studies to be done on the effects of this nanoparticle on organisms. This study was carried out to investigate the phytotoxicity effect of ZnO-np on peanut seedlings in Murashige and Skoog medium (MS medium). The experimental treatments of this study include nine concentrations of ZnO-np (0, 10, 30, 50, 100, 200, 400, 1000, 2000 ppm) added to MS medium. Peanut seedlings were incubated for 3 weeks in optimum condition and after that, seedling characteristics such as length, wet and dry weight of root and shoot were measured and the water content of root and shoot were calculated. Results of this study showed that the root and shoot length of peanut seedlings were affected by ZnO-np exposure, in a way that root length in 50 ppm ZnO-np and higher concentrations was significantly lower than that of control treatment and the shortest shoot length was observed to be from 2000 ppm ZnO-np concentration treatment. Also, both the root and shoot wet weight decreased as the nanoparticle concentration increased. However, despite the decreasing root and shoot dry weight with increasing concentration, there was no significant difference. On the other hand, the root dry weight in 10 ppm ZnO-np was significantly higher than the peanut seedlings treated with more than 200 ppm ZnO-np.
机译:随着各种行业的纳米粒子消耗的快速增长,正在突出天然环境和农业系统中这些材料存在的未知影响的担忧。由于纳米氧化锌纳米颗粒(ZnO-NP)的越来越呈增长,这是释放到环境中最广泛使用的纳米颗粒之一,它引起了更多研究的注意力,以对该纳米粒子对生物的影响。进行该研究以研究Zno-NP在Murashige和Skoog培养基(MS培养基)中的花生幼苗的植物毒性作用。该研究的实验处理包括加入至MS培养基的九种浓度的ZnO-NP(0,10,130,50,100,200,400,1000,2000ppm。将花生幼苗在最佳状态下孵育3周,然后测量幼苗特征,如长度,湿法和芽的长度,并计算根和芽的水含量。该研究的结果表明,花生幼苗的根和芽长度受到ZnO-NP暴露的影响,以50ppm ZnO-NP和更高浓度的根本长度明显低于对照处理和最短的射击长度观察到来自2000 ppm ZnO-NP浓度处理。而且,随着纳米颗粒浓度的增加,根和芽湿重量减小。然而,尽管浓度越来越大,但脱脂的根和干重,但没有显着差异。另一方面,10ppm ZnO-NP中的根系干重明显高于用超过200ppm ZnO-NP处理的花生幼苗。

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