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Proteomic Analysis of the Effect of Inorganic and Organic Chemicals on Silver Nanoparticles in Wheat

机译:蛋白质组学分析无机和有机化学物质对小麦中银纳米颗粒的影响

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摘要

Production and utilization of nanoparticles (NPs) are increasing due to their positive and stimulating effects on biological systems. Silver (Ag) NPs improve seed germination, photosynthetic efficiency, plant growth, and antimicrobial activities. In this study, the effects of chemo-blended Ag NPs on wheat were investigated using the gel-free/label-free proteomic technique. Morphological analysis revealed that chemo-blended Ag NPs resulted in the increase of shoot length, shoot fresh weight, root length, and root fresh weight. Proteomic analysis indicated that proteins related to photosynthesis and protein synthesis were increased, while glycolysis, signaling, and cell wall related proteins were decreased. Proteins related to redox and mitochondrial electron transport chain were also decreased. Glycolysis associated proteins such as glyceraldehyde-3-phosphate dehydrogenase increased as well as decreased, while phosphoenol pyruvate carboxylase was decreased. Antioxidant enzyme activities such as superoxide dismutase, catalase, and peroxidase were promoted in response to the chemo-blended Ag NPs. These results suggested that chemo-blended Ag NPs promoted plant growth and development through regulation of energy metabolism by suppression of glycolysis. Number of grains/spike, 100-grains weight, and yield of wheat were stimulated with chemo-blended Ag NPs. Morphological study of next generational wheat plants depicted normal growth, and no toxic effects were observed. Therefore, morphological, proteomic, yield, and next generation results revealed that chemo-blended Ag NPs may promote plant growth and development through alteration in plant metabolism.
机译:纳米粒子(NPs)的生产和利用由于对生物系统的积极和刺激作用而不断增加。银(Ag)纳米粒改善种子发芽,光合效率,植物生长和抗菌活性。在这项研究中,使用无凝胶/无标记蛋白质组学技术研究了化学混合的银纳米粒对小麦的影响。形态分析表明,化学融合的银纳米粒导致枝条长度,枝条鲜重,根长和根鲜重的增加。蛋白质组学分析表明,与光合作用和蛋白质合成有关的蛋白质增加,而与糖酵解,信号传导和细胞壁相关的蛋白质减少。与氧化还原和线粒体电子传输链有关的蛋白质也减少了。糖酵解相关蛋白,例如3-磷酸甘油醛脱氢酶增加和减少,而磷酸烯醇丙酮酸羧化酶减少。抗氧化酶的活性,如超氧化物歧化酶,过氧化氢酶和过氧化物酶,可通过化学融合的Ag NPs来促进。这些结果表明化学混合的银纳米颗粒通过抑制糖酵解来调节能量代谢,从而促进了植物的生长发育。化学混合的Ag NPs刺激了籽粒/穗数,100粒重和小麦的产量。下一代小麦植物的形态学研究显示其正常生长,未观察到毒性作用。因此,形态学,蛋白质组学,产量和下一代结果表明,化学融合的Ag NPs可能通过改变植物代谢来促进植物生长和发育。

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