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Enhancing Agrichemical Delivery and Seedling Development with Biodegradable, Tunable, Biopolymer-Based Nanofiber Seed Coatings

机译:用可生物降解,可调谐,基于生物聚合物的纳米纤维种子涂料增强生成的农药递送和幼苗开发

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One of the challenges in agriculture consists of the inefficiencies in agrichemical delivery and utilization. Herein, a biodegradable, tunable, biopolymer-based nanoplatform was developed as seed coating to enhance agrichemical delivery and seedling development. The nanofibers are synthesized using electrospinning of biopolymer blends without any toxic chemicals or post-treatment and enable tunable agrichemical release by modulating the polymer composition and hydrophilicity of nanofibers. The germination and subsequent growth of different nanofiber-coated seeds (tomato and lettuce) as a function of agrichemical release kinetics were investigated in greenhouse studies, in the presence or absence of a fungal pathogen (Fusarium species). Results from the greenhouse studies indicate the efficacy of such nanoenabled seed coating approach due to the precise delivery of agrichemical at the right place while utilizing a miniscule amount of agrichemical. The various Cu-release nanofiber coatings appeared to promote seed germination, particularly in the diseased media conditions. This more rapid germination led to increased seedling biomass for both plants (12-29%) in the healthy media conditions. Such seed nanocoating approach might be used in pathogen infested soil conditions to increase production yields. The developed nanofiber seed coating approach brings precision to agrichemical delivery and significantly improves germination and seedling biomass for model seeds compared to conventional film coating approaches utilized by the industry, owing to its unique nanofibrous structure and controlled release kinetics.
机译:农业挑战之一包括农业交付和利用率的低效率。这里,可生物降解的,可调谐的生物聚合物的纳米纳薄作用作为种子涂料,以增强西部递送和幼苗发育。使用无毒化学物质的生物聚合物共混物的静电纺丝合成纳米纤维,通过调节聚合物组合物和纳米纤维的亲水性来实现可调谐的农药。在真菌病原体(镰刀菌物种)的存在或不存在中,研究了各种纳米纤维涂层种子(番茄和生菜)的萌发和随后的生长作为农林的释放动力学的功能。温室研究的结果表明,这种纳米制涂层方法的功效由于合适的含量在合适的农业含量的农业含量的精确递送。各种Cu-释放的纳米纤维涂层似乎促进种子萌发,特别是在患病介质条件下。这种更快的发芽导致植物(12-29%)在健康培养基条件下增加幼苗生物量。这种种子纳米核化方法可用于病原体侵染土壤条件以增加产量。由于其独特的纳米纤维结构和控制释放动力学,所发育的纳米纤维种子涂料方法为农业分娩的精确提高了用于模型种子的萌发和幼苗生物量,而且由于其独特的纳米纤维结构和控释动力学。

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