Nataraj Swathika, Subramanian Kizhaeral S, Subramanian Marimuthu, Kalichamy Chandrakumar
Centre for Agricultural Nanotechnology, Tamil Nadu Agricultural University, Coimbatore, India.
Department of Renewable Energy Engineering, Tamil Nadu Agricultural University, Coimbatore, India.
Pest Manag Sci. 2025 Sep;81(9):4993-5009. doi: 10.1002/ps.8815. Epub 2025 Apr 9.
Weeds are a menace in agriculture causing crop yield reductions to the tune of 40-50%. To overcome the problems of weeds, herbicides have been used excessively to the extent that they have caused resistance in weeds, in addition to the environmental hazards. Nano-herbicides are intended to exploit botanicals to develop novel bio-nano-herbicide formulations. Bio-nano herbicide was developed using Eucalyptus citriodora essential oil combined high-energy approaches such as ultra-sonication and high-pressure homogenization. The formulation has hydrodynamic and physical sizes of 95.5 and 32.3-57.7 nm, respectively. The product was tested for their pre-emergence and post-emergence herbicidal activity against Echinochloa crus-galli.
Increased concentration of bio-nano-herbicide inhibited the pre-emergence of weed seeds. Treated weed seeds registered lower dehydrogenase (0.80 to 0.32), alpha-amylase (1.349 to 0.101 mg maltose), catalase (3.87 to 3.52 μmol H₂O₂ min g protein), peroxidase (3.96 to 3.61 U mg protein min) and super oxide dismutase (0.94 to 0.56 U mg protein min) activities than control. Further, foliar spray of 1% nanoemulsion recorded significantly lower total chlorophyll content (1.62 mg g fresh weight), than the crude oil (2.58 mg g). The antioxidant enzyme activities increased immediately after the first spray and the weeds wilted after the second spray.
This study is a maiden attempt to clearly demonstrate that bio-nano-herbicide can be developed using Eucalyptus citriodora essential oil which has both pre-emergence and post-emergence inhibitory activities against the notorious weed Echinochloa crus-galli. Field studies are to be taken up in the near future to validate the herbicidal efficacy of the novel nano herbicide formulation. © 2025 Society of Chemical Industry.
杂草是农业中的一大危害,可导致作物产量降低40%-50%。为克服杂草问题,人们过度使用除草剂,这不仅导致杂草产生抗性,还带来了环境危害。纳米除草剂旨在利用植物提取物开发新型生物纳米除草剂配方。采用柠檬桉叶精油结合超声处理和高压均质等高能方法开发了生物纳米除草剂。该配方的流体动力学尺寸和物理尺寸分别为95.5和32.3-57.7纳米。对该产品针对稗草的芽前和芽后除草活性进行了测试。
生物纳米除草剂浓度增加抑制了杂草种子的芽前萌发。与对照相比,经处理的杂草种子的脱氢酶(从0.80降至0.32)、α-淀粉酶(从1.349降至0.101毫克麦芽糖)、过氧化氢酶(从3.87降至3.52微摩尔H₂O₂/分钟/克蛋白质)、过氧化物酶(从3.96降至3.61单位/毫克蛋白质/分钟)和超氧化物歧化酶(从0.94降至0.56单位/毫克蛋白质/分钟)活性降低。此外,1%纳米乳液的叶面喷施记录的总叶绿素含量(1.62毫克/克鲜重)明显低于原油(2.58毫克/克)。首次喷施后抗氧化酶活性立即增加,第二次喷施后杂草枯萎。
本研究首次明确表明,可利用柠檬桉叶精油开发生物纳米除草剂,其对臭名昭著的杂草稗草具有芽前和芽后抑制活性。近期将开展田间研究以验证这种新型纳米除草剂配方的除草效果。©2025化学工业协会。