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植物合成双金属银/氧化锌纳米材料和氮肥对两个小麦品种生化及产量属性的影响

Effects of Phytogenically Synthesized Bimetallic Ag/ZnO Nanomaterials and Nitrogen-Based Fertilizers on Biochemical and Yield Attributes of Two Wheat Varieties.

作者信息

Ehsan Maria, Raja Naveed Iqbal, Mashwani Zia Ur Rehman, Zohra Efat, Abasi Fozia, Ikram Muhammad, Mustafa Nilofar, Wattoo Feroza Hamid, Proćków Jarosław, Pérez de la Lastra José Manuel

机构信息

Department of Botany, PMAS-Arid Agriculture University Rawalpindi, Rawalpindi 46000, Pakistan.

University Institute of Biochemistry and Biotechnology, PMAS-Arid Agriculture University Rawalpindi, Rawalpindi 46000, Pakistan.

出版信息

Nanomaterials (Basel). 2022 Aug 23;12(17):2894. doi: 10.3390/nano12172894.

Abstract

Wheat is the most important staple food worldwide, but wheat cultivation faces challenges from high food demand. Fertilizers are already in use to cope with the demand; however, more unconventional techniques may be required to enhance the efficiency of wheat cultivation. Nanotechnology offers one potential technique for improving plant growth and production by providing stimulating agents to the crop. In this study, plant-derived Ag/ZnO nanomaterials were characterized using UV-Vis spectroscopy, SEM, EDX, FTIR, and XRD methods. Various concentrations of phytogenically synthesized Ag/ZnO nanomaterials (20, 40, 60, and 80 ppm) and nitrogen-based fertilizers (urea and ammonium sulphate 50 and 100 mg/L) were applied to wheat varieties (Galaxy-13 and Pak-13). The results obtained from this research showed that application of 60 ppm Ag/ZnO nanomaterials with nitrogenous fertilizers (50 and 100 mg/L) were more effective in improving biochemistry and increasing yield of wheat plants by reducing enzymatic and non-enzymatic antioxidants (proline content, soluble sugar content, malondialdehyde, total phenolic content, total flavonoid content, superoxide dismutase, peroxidase, and catalase); and significantly increasing the protein content, number of grains per pot, spike length, 100-grain weight, grain yield per pot, and harvest index of both wheat varieties, compared to untreated plants. These findings allow us to propose Ag/ZnO nanomaterial formulation as a promising growth- and productivity-improvement strategy for wheat cultivation.

摘要

小麦是全球最重要的主食,但小麦种植面临着来自高粮食需求的挑战。目前已经在使用化肥来应对需求;然而,可能需要更多非常规技术来提高小麦种植效率。纳米技术提供了一种潜在的技术,通过向作物提供刺激剂来促进植物生长和提高产量。在本研究中,使用紫外可见光谱、扫描电子显微镜、能谱仪、傅里叶变换红外光谱和X射线衍射方法对植物源Ag/ZnO纳米材料进行了表征。将不同浓度的植物源合成Ag/ZnO纳米材料(20、40、60和80 ppm)以及氮肥(尿素和硫酸铵,50和100 mg/L)施用于小麦品种(Galaxy-13和Pak-13)。本研究获得的结果表明,与未处理的植株相比,施用60 ppm Ag/ZnO纳米材料与氮肥(50和100 mg/L)能更有效地改善小麦植株的生物化学特性并提高产量,具体表现为降低酶促和非酶促抗氧化剂(脯氨酸含量、可溶性糖含量、丙二醛、总酚含量、总黄酮含量、超氧化物歧化酶、过氧化物酶和过氧化氢酶);显著提高两个小麦品种的蛋白质含量、每盆粒数、穗长、百粒重、每盆籽粒产量和收获指数。这些发现使我们能够提出,Ag/ZnO纳米材料配方是一种有前景的提高小麦种植生长和生产力的策略。

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