铁纳米颗粒对水稻生长和产量的影响

R Gobinath, SP Datta, S Vijayakumar, RD Singh, VK Sharma, K Surekha, V Manasa
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引用次数: 0

摘要

通过使用传统的补充剂来缓解土壤中的铁(Fe)缺乏症和提高可食用部分的铁含量是一项挑战。在此背景下,在2018年秋收季节进行了温室试验,以评价铁剂量和铁源,特别是纳米Fe2O3和FeSO4对水稻根系生长和产量的影响。结果表明,叶面施用0.2% Fe(通过FeSO4)和0.2% Fe(通过纳米Fe2O3)显著增加了平均根长9.5%和10.1%,平均根表面积分别比对照增加了8.8%和7.3%。然而,通过纳米Fe2O3在土壤中施用3 mg Fe/kg和0.6 mg Fe/kg的铁对水稻根系长度和表面积的增加效果不显著。与根系参数相比,纳米Fe2O3处理对籽粒和秸秆产量没有显著提高。通过feso4.7 h2o添加铁,在0.2% Fe(叶面)和15 mg Fe/kg(土壤)条件下,籽粒产量分别提高24%和33%。与对照相比,秸秆产量也相应提高了39%和34%。FeSO4和纳米Fe2O3分别比对照(93 mg/kg)高1.89和1.50倍。相反,较低剂量的纳米Fe2O3对亚铁离子含量、DTPA-Fe水平或叶片和土壤施用的产量没有影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Influence of iron nanoparticles on rice (Oryza sativa) plant growth and yields
Alleviating iron (Fe) deficiency in soil and enhancing Fe content in edible portions by using conventional supplements pose challenges. In this context, a greenhouse experiment was conducted during the kharif season of 2018 to evaluate the impact of iron dose and source, specifically nano Fe2O3 and FeSO4, on rice root growth and yields. Results showed that foliar application of 0.2% Fe through FeSO4 and 0.2% Fe through nano Fe2O3 significantly increased the mean root length by 9.5% and 10.1%, respectively, alongside increasing the mean root surface area by 8.8% and 7.3%, respectively, over control. However, the soil application of Fe (3 mg Fe/kg and 0.6 mg Fe/kg through nano Fe2O3 was ineffective in enhancing the rice root length and surface area. In contrast to the root parameters, nano Fe2O3 treatment did not have any significant improvement in grain and straw yield. The addition of Fe through FeSO4 .7H2O led to a noteworthy 24% and 33% increase in grain yield at 0.2% Fe (foliar) and 15 mg Fe/kg (soil), respectively. Similarly, the straw yield saw a corresponding increase of 39% and 34%, respectively, over control. Moreover, the application of FeSO4 and nano Fe2O3 resulted in Fe content registering 1.89 and 1.50 times higher than the control (93 mg/kg). Conversely, lower doses of nano Fe2O3 exhibited no influence on ferrous ion content, DTPA-Fe levels, or yield through both foliar and soil applications.
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