Nachev Nasko, Spasova Mariya, Tsekova Petya, Manolova Nevena, Rashkov Iliya, Naydenov Mladen
Laboratory of Bioactive Polymers, Institute of Polymers, Bulgarian Academy of Sciences, Acad. G. Bonchev St., Bl. 103A, BG-1113 Sofia, Bulgaria.
Department of Microbiology, Agricultural University, BG-4000 Plovdiv, Bulgaria.
Polymers (Basel). 2021 Oct 25;13(21):3673. doi: 10.3390/polym13213673.
Nowadays, diseases in plants are a worldwide problem. Fungi represent the largest number of plant pathogens and are responsible for a range of serious plant diseases. Esca is a grapevine disease caused mainly by fungal pathogens () and (). The currently proposed methods to fight esca are not curative. In this study, polymer composites based on biodegradable polymer containing chemical fungicides with antifungal activity were successfully prepared by electrospinning. The obtained materials were hydrophobic with good mechanical properties. In vitro studies demonstrated that the fungicide release was higher from PLLA/K5N8Q fibrous mats (ca. 72% for 50 h) compared to the released drug amount from PLLA/5-Cl8Q materials (ca. 52% for 50 h), which is due to the better water-solubility of the salt. The antifungal activity of the fibrous materials against and was studied as well. The incorporation of the fungicide in the biodegradable fibers resulted in the inhibition of fungal growth. The obtained materials are perspective candidates for the protection of vines from the penetration and growth of fungal pathogens.
如今,植物病害是一个全球性问题。真菌是数量最多的植物病原体,可引发一系列严重的植物病害。葡萄枝干病害(Esca)是一种主要由真菌病原体()和()引起的葡萄藤疾病。目前提出的对抗葡萄枝干病害的方法并无治愈效果。在本研究中,通过静电纺丝成功制备了基于含有具有抗真菌活性化学杀菌剂的可生物降解聚合物的聚合物复合材料。所获得的材料具有疏水性且机械性能良好。体外研究表明,与PLLA/5-Cl8Q材料(50小时约释放52%)相比,PLLA/K5N8Q纤维垫的杀菌剂释放量更高(50小时约释放72%),这是由于该盐具有更好的水溶性。还研究了纤维材料对()和()的抗真菌活性。杀菌剂掺入可生物降解纤维中导致真菌生长受到抑制。所获得的材料有望用于保护葡萄藤免受真菌病原体的侵入和生长。