Anatomical parameters of Pisum sativum seedlings under the influence of macro- and nanoparticles of zinc

Arailym Talgatkyzy Serikbay, D. Ageev, A. Aitkulov
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Abstract

In Kazakhstan, the physicochemical properties of the nanoparticle were studied, but the physiological properties and toxicity to living organisms were not studied earlier. These studies have not been conducted in Kazakhstan, which presents broad prospects for scientific research. This paper presents the results of a comparative study of the anatomy of Pisum sativum seedlings exposed to macro- and nanoparticles of zinc of various concentrations (5, 10, 20 and 200 mg/100 ml). The anatomy of cross sections of vegetative organs of pea seedlings was studied. It has been established that zinc macro- and nanoparticles cause changes in the diameter of conductive beams, the thickness of internal and external tissues of the stem and root of seedlings. Differences in the influence of zinc nanoparticles on plant life processes depending on their concentration and the manifestation of their toxicity have been established. Thus, the determination of ways and means of the impact of metal nanoparticles on a living organism is an extremely important and relevant work necessary to establish scientifically-based concentrations and sizes of nanoparticles in water, air or in the composition of various materials with which a person comes into contact.
宏观和纳米锌对莴苣幼苗解剖参数的影响
在哈萨克斯坦,研究了纳米颗粒的物理化学性质,但其生理性质和对生物体的毒性尚未得到较早的研究。这些研究尚未在哈萨克斯坦进行,这为科学研究提供了广阔的前景。本文介绍了Pisum sativum幼苗暴露于不同浓度(5、10、20和200 mg/100 ml)的宏观和纳米锌的解剖比较研究结果。对豌豆幼苗营养器官的横切面进行了解剖研究。研究表明,锌纳米粒子和锌纳米粒子对幼苗茎、根的导电束直径、内外组织厚度均有影响。锌纳米颗粒对植物生命过程的影响因其浓度和毒性表现而异。因此,确定金属纳米粒子对生物体的影响的方式和手段是一项极其重要和相关的工作,这对于确定水、空气或与人接触的各种材料的组成中纳米粒子的科学浓度和大小是必要的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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