Yield performances of rice varieties (Oryza sativa) under nano-CuO and nano-ZnO micronutrient fertilizers

IF 0.7 Q4 BIOLOGY Nusantara Bioscience Pub Date : 2022-05-16 DOI:10.13057/nusbiosci/n140112
Chamodi Lakmini Thisera Sandanayake, S. Weerakoon, N. Karthikeyan, S. Somaratne
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引用次数: 1

Abstract

Abstract. Sandanayake CLT, Weerakoon SR, Karthikeyan N, Somaratne S. 2022. Yield performances of rice varieties (Oryza sativa) under nano-CuO and nano-ZnO micronutrient fertilizers. Nusantara Bioscience 14: 95-103. Rice (Oryza sativa L.) is a major staple food in the world. There is an extreme need for higher rice yield to meet the ever-increasing demand with the rise in population despite the hampering impact of climatic changes. Nanotechnology plays a potential role in food security and introduces nano fertilizers as an alternative to conventional fertilizers. Therefore, the present research was carried out to determine the effects of nano micronutrient fertilizers; nano-CuO, and nano-ZnO on the yield of selected rice varieties, Bg360, BW364, Kaluheenati, and Kuruluthuda. Sol-gel and thermal decomposition methods synthesized nano-fertilizers used in the study. Nano-ZnO, nano-CuO, and nano-CuO-ZnO composite treatments were applied as a foliar spray at concentrations of 30 mg L-1 (T1), 60 mg L-1 (T2), and 120 mg L-1 (T3) and double deionized water served as the control (T0). The synthesized nano-fertilizers were applied during the growth stage [at 48-58 days after sowing (DAS)] and grain filling stage [100-105 DAS], while the plants were provided with appropriate levels of N, P, and K fertilizers, as recommended by Department of Agriculture. A Complete Randomized Block Design was employed with three blocks and five replicates in each block. The Yield parameters were recorded at the harvesting stage. Descriptive statistics such as mean and standard error of mean and inferential statistics were performed on the data obtained. ANOVA with interaction terms was performed to assess the significant differences between the treatments. The descriptive analyses show an increase in the yield of the rice varieties under the application of nano-fertilizers. ANOVA suggests a significant effect (p ? 0.05) of nano-CuO and nano-ZnO on the yield of rice varieties used in the study. Both traditional and inbred rice varieties indicated yield response to applied nano-fertilizers.
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纳米氧化铜和纳米氧化锌微营养肥料对水稻产量的影响
摘要Sandanayake CLT,Weerakoon SR,Karthikeyan N,Somaratne S.2022。纳米CuO和纳米ZnO微营养素肥料对水稻品种产量的影响。Nusantara Bioscience 14:95-103。水稻(Oryza sativa L.)是世界上主要的主食。尽管气候变化的影响很小,但随着人口的增加,人们迫切需要提高水稻产量,以满足日益增长的需求。纳米技术在粮食安全方面发挥着潜在作用,并引入纳米肥料作为传统肥料的替代品。因此,本研究旨在确定纳米微量营养素肥料的效果;纳米CuO和纳米ZnO对所选水稻品种Bg360、BW364、Kaluheenati和Kuruluthuda产量的影响。采用溶胶-凝胶法和热分解法合成纳米肥料进行研究。纳米ZnO、纳米CuO和纳米CuO-ZnO复合处理作为叶面喷雾施用,浓度为30mg L-1(T1)、60mg L-1、120mg L-1,双去离子水作为对照(T0)。合成的纳米肥料在生长阶段[播种后48-58天(DAS)]和灌浆阶段[10-105 DAS]施用,同时按照农业部的建议为植物提供适当水平的N、P和K肥料。采用完全随机区块设计,每个区块有三个区块和五个重复。在收获阶段记录产量参数。对获得的数据进行了描述性统计,如平均值和平均值的标准误差以及推断统计。使用交互作用项进行方差分析以评估治疗之间的显著差异。描述性分析表明,在施用纳米肥料的情况下,水稻品种的产量有所增加。方差分析表明,纳米CuO和纳米ZnO对研究中使用的水稻品种的产量有显著影响(p?0.05)。传统和近交系水稻品种对施用纳米肥料都表现出产量反应。
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