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利用井冈霉素发酵残渣作为种子处理的潜在平台。

Utilization of the fermentation residues of validamycin as a potential platform for seed treatment.

作者信息

Zhang Bo, Liao Shaowei, Ren Tianrui

机构信息

The Key Laboratory of Resource Chemistry of Ministry of Education, The Development Centre of Plant Germplasm Resources, College of Life and Environmental Science, Shanghai Normal University 100 Guilin Road Shanghai 200234 P. R. China

出版信息

RSC Adv. 2018 Mar 9;8(18):9956-9962. doi: 10.1039/c7ra12298e. eCollection 2018 Mar 5.

Abstract

Seed coating is a versatile means to control crop pests and diseases, which can effectively reduce pesticide quantity and improve pesticide efficacy. Herein, 6% tebuconazole flowable concentrate for seed treatment (FS) was prepared by using the validamycin fermentation residue (VFR) as a pesticide carrier. Then, the effects of the VFR and dispersants on the physicochemical properties of the FS were systematically evaluated. Moreover, the germination rate and antibacterial performance of wheat seeds coated with FS were investigated through a bioactivity experiment. The experimental results show that the FS prepared by VFR, dispersant SD-816 and NNO exhibits superior suspension stability. The suspension rates at 1 h and 24 h are 99.78% and 95.11% respectively. Furthermore, the viscosity of the system only slightly changes after 30 days. In addition, the obtained FS system exhibits shear thinning behavior under high speed shearing showing typical features of pseudo-plastic non-Newtonian fluids, which conforms to the Herschel-Buckley model. A bioactivity experiment showed the germination rate of coated wheat seeds reached 90%, and increased by 7.0% and 3.0% compared to the control group and positive control Raxil respectively. Futhermore, the antibacterial rate reached 80.5%, and was higher than the control group and Raxil. In addition, the obtained FS was very efficacious in controlling wheat powdery mildew compared to the commercial formulation Raxil.

摘要

种子包衣是控制农作物病虫害的一种通用方法,它可以有效减少农药用量并提高农药效果。在此,以井冈霉素发酵残渣(VFR)作为农药载体,制备了6%戊唑醇种子处理悬浮剂(FS)。然后,系统评估了VFR和分散剂对FS物理化学性质的影响。此外,通过生物活性实验研究了用FS包衣的小麦种子的发芽率和抗菌性能。实验结果表明,由VFR、分散剂SD - 816和NNO制备的FS表现出优异的悬浮稳定性。1小时和24小时的悬浮率分别为99.78%和95.11%。此外,30天后体系的粘度仅略有变化。另外,所获得的FS体系在高速剪切下表现出剪切变稀行为,呈现出假塑性非牛顿流体的典型特征,符合赫谢尔 - 巴克利模型。生物活性实验表明,包衣小麦种子的发芽率达到90%,与对照组和阳性对照咯菌腈相比分别提高了7.0%和3.0%。此外,抗菌率达到80.5%,高于对照组和咯菌腈。另外,与市售制剂咯菌腈相比,所获得的FS在防治小麦白粉病方面非常有效。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3033/9078719/7e357e0646ac/c7ra12298e-s1.jpg

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