Korbecka-Glinka Grażyna, Piekarska Klaudia, Wiśniewska-Wrona Maria
Department of Plant Breeding and Biotechnology, Institute of Soil Science and Plant Cultivation-State Research Institute, Czartoryskich 8, 24-100 Puławy, Poland.
Biomedical Engineering Center, Łukasiewicz Research Network-Łódź Institute of Technology, Skłodowskiej-Curie 19/27, 90-570 Łódź, Poland.
Polymers (Basel). 2022 Jul 13;14(14):2854. doi: 10.3390/polym14142854.
Fungal pathogens cause significant yield losses of many important crops worldwide. They are commonly controlled with fungicides which may have negative impact on human health and the environment. A more sustainable plant protection can be based on carbohydrate biopolymers because they are biodegradable and may act as antifungal compounds, effective elicitors or carriers of active ingredients. We reviewed recent applications of three common polysaccharides (chitosan, alginate and cellulose) to crop protection against pathogenic fungi. We distinguished treatments dedicated for seed sowing material, field applications and coating of harvested fruits and vegetables. All reviewed biopolymers were used in the three types of treatments, therefore they proved to be versatile resources for development of plant protection products. Antifungal activity of the obtained polymer formulations and coatings is often enhanced by addition of biocontrol microorganisms, preservatives, plant extracts and essential oils. Carbohydrate polymers can also be used for controlled-release of pesticides. Rapid development of nanotechnology resulted in creating new promising methods of crop protection using nanoparticles, nano-/micro-carriers and electrospun nanofibers. To summarize this review we outline advantages and disadvantages of using carbohydrate biopolymers in plant protection.
真菌病原体在全球范围内导致许多重要作物大幅减产。人们通常使用杀菌剂来控制它们,但杀菌剂可能会对人类健康和环境产生负面影响。更具可持续性的植物保护可以基于碳水化合物生物聚合物,因为它们可生物降解,并且可以作为抗真菌化合物、有效的诱导剂或活性成分的载体。我们综述了三种常见多糖(壳聚糖、藻酸盐和纤维素)在防治作物病原真菌方面的最新应用。我们区分了用于种子播种材料、田间应用以及收获的水果和蔬菜涂层的处理方法。所有综述的生物聚合物都用于这三种处理类型,因此它们被证明是开发植物保护产品的通用资源。通过添加生物防治微生物、防腐剂、植物提取物和精油,所获得的聚合物配方和涂层的抗真菌活性通常会增强。碳水化合物聚合物还可用于农药的控释。纳米技术的迅速发展带来了利用纳米颗粒、纳米/微载体和电纺纳米纤维进行作物保护的新的有前景的方法。为总结本综述,我们概述了在植物保护中使用碳水化合物生物聚合物的优缺点。