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含硒和硅的纳米杀菌剂可促进普通菜豆生长并提高产量,还能防治链格孢叶斑病。

Nanofungicides with Selenium and Silicon Can Boost the Growth and Yield of Common Bean ( L.) and Control Alternaria Leaf Spot Disease.

作者信息

Taha Naglaa A, Hamden Salem, Bayoumi Yousry A, Elsakhawy Tamer, El-Ramady Hassan, Solberg Svein Ø

机构信息

Plant Pathology Research Institute, Agriculture Research Center, Giza 12619, Egypt.

Agricultural Botany Department, Faculty of Agriculture, University of Kafrelsheikh, Kafr El-Sheikh 33516, Egypt.

出版信息

Microorganisms. 2023 Mar 11;11(3):728. doi: 10.3390/microorganisms11030728.

Abstract

There is an urgent need to reduce the intensive use of chemical fungicides due to their potential damage to human health and the environment. The current study investigated whether nano-selenium (nano-Se) and nano-silica (nano-SiO) could be used against the leaf spot disease caused by in a common bean ( L.). The engineered Se and SiO nanoparticles were compared to a traditional fungicide and a negative control with no treatment, and experiments were repeated during two successive seasons in fields and in vitro. The in vitro study showed that 100 ppm nano-Se had an efficacy rate of 85.1% on mycelial growth, followed by the combined applications (Se + SiO at half doses) with an efficacy rate of 77.8%. The field study showed that nano-Se and the combined application of nano-Se and nano-SiO significantly decreased the disease severity of . There were no significant differences among nano-Se, the combined application, and the fungicide treatment (positive control). As compared to the negative control (no treatment), leaf weight increased by 38.3%, the number of leaves per plant by 25.7%, chlorophyll A by 24%, chlorophyll B by 17.5%, and total dry seed yield by 30%. In addition, nano-Se significantly increased the enzymatic capacity (i.e., CAT, POX, PPO) and antioxidant activity in the leaves. Our current study is the first to report that the selected nano-minerals are real alternatives to chemical fungicides for controlling in common beans. This work suggests the potential of nanoparticles as alternatives to fungicides. Further studies are needed to better understand the mechanisms and how different nano-materials could be used against phytopathogens.

摘要

由于化学杀菌剂可能对人类健康和环境造成损害,因此迫切需要减少其大量使用。当前的研究调查了纳米硒(nano-Se)和纳米二氧化硅(nano-SiO₂)是否可用于防治普通菜豆(Phaseolus vulgaris L.)上由[病原体名称缺失]引起的叶斑病。将工程化的硒和二氧化硅纳米颗粒与传统杀菌剂以及未经处理的阴性对照进行比较,并在田间和体外连续两个季节重复进行实验。体外研究表明,100 ppm的纳米硒对[病原体名称缺失]菌丝体生长的抑制率为85.1%,其次是半剂量的联合应用(硒+二氧化硅),抑制率为77.8%。田间研究表明,纳米硒以及纳米硒与纳米二氧化硅的联合应用显著降低了[病原体名称缺失]的病情严重程度。纳米硒、联合应用和杀菌剂处理(阳性对照)之间没有显著差异。与阴性对照(未处理)相比,叶片重量增加了38.3%,单株叶片数量增加了25.7%,叶绿素A增加了24%,叶绿素B增加了17.5%,种子总干产量增加了30%。此外,纳米硒显著提高了叶片中的酶活性(即CAT、POX、PPO)和抗氧化活性。我们目前的研究首次报道,所选的纳米矿物质是防治普通菜豆上[病原体名称缺失]的化学杀菌剂的真正替代品。这项工作表明了纳米颗粒作为杀菌剂替代品的潜力。需要进一步研究以更好地理解其作用机制以及不同纳米材料如何用于对抗植物病原体。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b141/10051325/fdcca6fb9d35/microorganisms-11-00728-g001.jpg

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