水分胁迫条件下大麦对纳米颗粒外源施用的基因型响应

H. Ghorbanian, M. Janmohammadi, Asghar Ebadi-Segherloo, N. Sabaghnia
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引用次数: 10

摘要

有益的纳米颗粒(SiO2和TiO2)对作物的生理、生化和形态特征具有各种深远的影响。本文研究了在伊朗西北部大田条件下,叶面施用SiO2和TiO2纳米颗粒对大麦基因型干旱胁迫的缓解作用。在营养后期和生殖期叶面施用纳米颗粒。干旱是由于在生长季节结束的干旱月份里,灌溉被撤回而造成的。我们测量了与形态生长、产量和产量成分相关的参数。基因型间遗传多样性显著,G1、G2、G4、G11、G12和G13的种子产量和产量构成最高。叶面施用纳米颗粒对植株高度、千粒重、生物产量和种子产量均有显著影响。结果表明,SiO2纳米颗粒处理的植物性能最好。G2、G6、G13和G20的穗长对纳米硅叶面施用有显著的响应。但在G8、G11和G20中,叶面施用TiO2纳米颗粒效果最好,而在G1、G5、G9、G10、G15和G20中,TiO2纳米颗粒处理降低了种子产量成分。这可能是由于评估基因型之间的遗传差异以及某些基因型对施用浓度的高敏感性。本研究结果表明,在水分胁迫条件下施用SiO2纳米颗粒对大麦基因型的产量成分有更有利的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Genotypic response of barley to exogenous application of nanoparticles under water stress condition
Beneficial nanoparticles (SiO2 and TiO2) can have various profound effects on the crop physiological, biochemical and morphological characteristics. Here, we evaluated the mitigation of drought stress in barley genotypes by foliar application of SiO2 and TiO2 nanoparticles under filed condition in North West of Iran. Nanoparticles were foliar applied in late vegetative phase and during reproductive stages. Drought was imposed at by irrigation withdrawals during the dry months in the end of the growing season. We measured parameters related morphological growth, yield, and yield component. The genetic diversity between the genotypes was quite evident and the highest seed yield and yield component were recorded for G1, G2, G4, G11, G12 and G13. Foliar application of nanoparticles considerably affected the plant height, thousand seed weight, biological and seed yield. The best performance was observed for plant treated with SiO2 nanoparticles. Spike length of G2, G6, G13 and G20 considerably responded to nano silicone foliar application. However, the best results for G8, G11 and G20 were obtained by foliar application TiO2 nanoparticles while this treatment decreased the seed yield components in G1, G5, G9, G10, G15 and G20. This could be due to genetic variation between the evaluated genotypes and high sensitivity of some genotypes to the applied concentration. The results of current study showed that application of SiO2 nanoparticles under water stress condition could have more beneficial effects on yield component of barley genotypes.
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