纳米羧化锌和纳米二硫化钼对玉米芽的生物学效应评价

O. Derevyanko, Nazanin Maherramzade, S. Derevianko
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摘要

如果有必要在资源成本不断增加的条件下减少人为对农业生态系统的影响,那么通过使用纳米技术改进种植玉米的技术是提高作物产量及其盈利能力的先决条件之一。因此,本研究的目的是研究不同浓度的纳米羧化锌和纳米二硫化钼对玉米幼苗萌发、生长和发育的生物活性。以玉米芽为研究对象,研究了纳米锌和纳米二硫化钼对玉米芽生长的影响。按照国家标准DSTU 4138-2002的要求,测定了纳米粒子作用下种子的发芽率和萌发能。采用普遍接受的统计学方法对研究结果进行分析。结果表明,当MoS2纳米粒子以1:10 000稀释(浓度为700 mcg/l)时,玉米幼苗的叶片长度和根系长度分别增加了35.0%和100.0%,显示出生物活性。其他浓度(1:100;1:10 00)的锌和二硫化钼纳米颗粒对叶片和根系的大小无显著影响。根据Mana-Whitney检验的结果,在所有变体中,除了MoS2纳米颗粒在1:10 000稀释下的作用外,变化的显著性水平不够。只有在MoS2稀释为1:10 000的变异中,根长增加具有统计学意义。各变异对玉米种子萌发能和实验室萌发均无显著影响。该研究的实际价值是评估药物(锌纳米羧酸盐和二硫化钼纳米颗粒)对叶面追肥的影响,为农业生产者提供广泛的药物,选择对玉米生长、发育和每粒玉米产量有效的浓度
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluation of the biological effect of Zn nanocarboxylates and MoS2 nanoparticles on corn sprouts (Zea mays L.)
If it is necessary to reduce the anthropogenic impact on agroecosystems in conditions of constant increase in the cost of resources – improving the technology of growing corn through the use of nanotechnologies is one of the prerequisites for increasing the yield of crops and their profitability. In this regard, the purpose of the study was to investigate the biological activity of Zn nanocarboxylates and MoS2 nanoparticles at different concentrations for the germination, growth, and development of corn seedlings. An experiment was conducted on corn sprouts to determine the effect of Zn and MoS2 nanoparticles. The germination rate and germination energy of seeds under the action of nanoparticles were determined in accordance with the requirements of the state standard DSTU 4138-2002. The study results were analysed by generally accepted statistical methods. It was established that MoS2 nanoparticles when diluted at 1:10,000 (at a concentration of 700 mcg/l) show biological activity and cause an increase in the length of leaf blades and the length of the roots of corn seedlings by 35.0% and 100.0%, respectively. At other concentrations (1:100; 1:1,000) of Zn and MoS2 nanoparticles, no significant effect on the size of leaf blades and roots was observed. According to the results of the Mana-Whitney test, in all variants, with the exception of the action of MoS2 nanoparticles in a 1:10,000 dilution, the significance level of changes was not sufficient. Only in the variant with MoS2 at 1:10,000 dilution, an increase in root length was statistically significant. There was no statistically significant effect in all the studied variants on the germination energy and laboratory germination of maize seeds. The practical value of the study is to assess the effect of drugs (Zn nanocarboxylates and MoS2 nanoparticles) for foliar top dressing, a wide range of which is offered to agricultural producers, selection of effective concentrations for the growth, development, and yield of corn per grain
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