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纳米几丁质晶须增强了化学农药对鳞翅目害虫的杀虫活性和毒性。

Nanochitin whisker enhances insecticidal activity of chemical pesticide for pest insect control and toxicity.

机构信息

Department of Entomology, College of Plant Protection, Henan Agricultural University, 450002, Zhengzhou, China.

Department of Pesticide Science/Nano Agro Center, College of Plant Protection, Henan Agricultural University, 450002, Zhengzhou, China.

出版信息

J Nanobiotechnology. 2021 Feb 16;19(1):49. doi: 10.1186/s12951-021-00792-w.

Abstract

BACKGROUND

Nanomaterials in plant protection promise many benefits over conventional pesticide products. Nano-enabled pesticides may alter the functionality or risk profile of active ingredients. Cationic nanochitin whiskers (NC) possess strong biological activity against wheat aphids. However, toxicity and synergistic effects of NC with chemical pesticides against pest insects has not been systemically reported. This study investigated the insecticidal enhancement by NC with Omethoate (40% EC), Imidacloprid (10% WP), and Acetamiprid (40% WG) for pest control using wheat aphid as piercing-sucking mouthparts insect. Fluorescein isothiocyanate labelled NC was used to monitor the uptake and transportation pathway of NC inside the target insects. Toxicity of NC was tested with Sprague-Dawley (SD) rat. Our findings provide a theoretical basis for future application of NC in plant protection against pest insects.

RESULTS

NCs synthesized by acidic hydrolysis were rod-like nanoparticles in a range of 50-150 nm in length and 30-50 nm in width, which examined by electron microscopy and dynamic light scattering methods. The charge density and zeta potential were about 63 mmol/kg and + 36.4 mV, respectively. By absorption and/or contact action of 30-50 mg/L of NC suspension, the corrected mortality of wheat aphids reached up to 80% or above after 12 h treatment, NC could be distributed through digestive system and relocated from mouth to other tissues inside the insect body. When associated with dilutions of conventional pesticides, the corrected mortality were significantly increased up to 95% or above. The dosage of the chemical pesticide and nanochitin in the mixtures (1:1 by volume) were all reduced to half. The acute oral toxicity Lethal Dose 50% (LD) to SD rat is greater than 5000 mg/kg BW (body weight) in male and female, acute dermal toxicity LD is greater than 2000 mg/kg BW of NC.

CONCLUSIONS

NC has a strong promotive effect on insecticidal effectiveness of chemical insecticides. It was easily absorbed by plant, transported and distributed from mouth to other tissues of the insects while sucking plant fluid. Low acute oral and dermal toxicity to SD rat indicated that it is safe to apply in agriculture and food industry. NCs has a great potential for water-based nanopesticide formulation to reduce chemical pesticide use for future agro-environmental sustainability.

摘要

背景

与传统农药产品相比,植保纳米材料具有许多优势。纳米农药可能会改变有效成分的功能或风险状况。阳离子纳米壳聚糖晶须(NC)对小麦蚜虫具有很强的生物活性。然而,NC 与化学农药对害虫的协同增效作用尚未系统报道。本研究以刺吸式口器昆虫小麦蚜虫为研究对象,探讨了 NC 与氧乐果(40%乳油)、吡虫啉(10%可湿性粉剂)和噻虫嗪(40%水分散粒剂)复配对害虫的增效作用。用荧光素异硫氰酸酯标记的 NC 来监测 NC 在靶标昆虫体内的摄取和运输途径。用 Sprague-Dawley(SD)大鼠测试了 NC 的毒性。我们的研究结果为 NC 在防治刺吸式口器害虫方面的未来应用提供了理论依据。

结果

用酸性水解法合成的 NC 是长度在 50-150nm 范围内、宽度在 30-50nm 的棒状纳米颗粒,通过电子显微镜和动态光散射法进行了检测。其电荷密度和 Zeta 电位分别约为 63mmol/kg 和+36.4mV。用 30-50mg/L 的 NC 悬浮液进行吸收和/或接触作用,处理 12 小时后,小麦蚜虫的校正死亡率高达 80%或以上,NC 可通过消化系统分布,并从口器重新定位到昆虫体内的其他组织。当与常规农药稀释液联合使用时,校正死亡率显著增加至 95%或以上。混合物中化学农药和纳米壳聚糖的用量(体积比 1:1)均减少至一半。雄性和雌性 SD 大鼠经口半数致死剂量(LD)大于 5000mg/kgBW(体重),急性经皮 LD 大于 2000mg/kgBW 的 NC。

结论

NC 对化学杀虫剂的杀虫效果有很强的促进作用。它很容易被植物吸收,在吸食植物汁液时从口器向昆虫的其他组织运输和分布。对 SD 大鼠的急性经口和经皮毒性 LD 均大于 5000mg/kgBW,表明其在农业和食品工业中应用安全。NC 具有很大的潜力用于水基纳米农药制剂的开发,以减少未来农业环境的化学农药使用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9181/7885609/836a713731b1/12951_2021_792_Fig1_HTML.jpg

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