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与异菌脲结合的银纳米颗粒的协同抗菌作用 针对…… (原文此处不完整)

Synergetic Antimicrobial Effect of Silver Nanoparticles Conjugated with Iprodione against .

作者信息

Li Tao, Huang Weidong, Yu Haibing

机构信息

College of Resources and Environment, Anhui Science and Technology University, Donghua Road 9, Chuzhou 233100, China.

College of Agriculture, Anhui Science and Technology University, Donghua Road 9, Chuzhou 233100, China.

出版信息

Materials (Basel). 2022 Jul 25;15(15):5147. doi: 10.3390/ma15155147.

Abstract

Apple tree canker induced by is a vital disease in apple production around the world, and it highlyimpacts the development of apple industry. It is of great significance to study the inhibition effect of common fungicides and develop new fungistats for comprehensive control of apple tree canker. In this experiment, the inhibition activity of five fungicides, including mancozeb, metalaxyl, iprodione, prochloraz, and difenoconazole along with biosynthesized nanosilver against , were measured with the mycelium growth rate and agar well diffusion methods. The results showed that iprodione exhibited the best inhibitory effect, the median inhibition concentration (IC) of iprodione and nanosilver was 0.62 μg.mL and 45.50 μg.mL, the suppression rate achieved 67.93% at 200 μg.mL of nanosilver. Moreover, a remarkable additive and synergistic antimicrobial effect was verified when silver nanoparticles were conjugated with iprodione at 9:1, 8:2, 7:3, and 6:4 (/), and the toxicity ratio was 1.04, 1.13, 1.01, and 0.98, respectively. It is proven that biosynthesized silver nanoparticles could effectively inhibit , and it is possible to develop and screen silver nanoparticle-based nano pesticides to manage plant diseases synthetically.

摘要

由[病原体名称缺失]引起的苹果树溃疡病是全球苹果生产中的一种重要病害,对苹果产业的发展产生重大影响。研究常用杀菌剂的抑制作用并开发新型抑菌剂以综合防治苹果树溃疡病具有重要意义。在本实验中,采用菌丝生长速率法和琼脂扩散法测定了代森锰锌、甲霜灵、异菌脲、咪鲜胺、苯醚甲环唑五种杀菌剂以及生物合成纳米银对[病原体名称缺失]的抑制活性。结果表明,异菌脲表现出最佳抑制效果,异菌脲和纳米银的半数抑制浓度(IC)分别为0.62μg/mL和45.50μg/mL,纳米银在200μg/mL时抑制率达到67.93%。此外,当纳米银与异菌脲以9:1、8:2、7:3和6:4(/)的比例结合时,验证了显著的相加和协同抗菌作用,毒性比分别为1.04、1.13、1.01和0.98。证明生物合成的纳米银可有效抑制[病原体名称缺失],开发和筛选基于纳米银的纳米农药以综合防治植物病害具有可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6f78/9332150/d235943cde56/materials-15-05147-g001.jpg

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