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利用喷雾干燥法对绛红小单孢菌 Uts22 进行包埋的新方法及其对小麦全蚀病病原菌禾顶囊壳的生物防治效率。

A novel encapsulation of Streptomyces fulvissimus Uts22 by spray drying and its biocontrol efficiency against Gaeumannomyces graminis, the causal agent of take-all disease in wheat.

机构信息

Department of Plant Protection, Faculty of Agriculture, Vali-e-Asr University of Rafsanjan, Rafsanjan, Iran.

出版信息

Pest Manag Sci. 2021 Oct;77(10):4357-4364. doi: 10.1002/ps.6469. Epub 2021 May 19.

Abstract

BACKGROUND

Wheat is a valuable food source that is exposed to many diseases that reduce its quantity and quality. One of the most important diseases affecting wheat is take-all, caused by Gaeumannomyces graminis var. tritici. The application of bacterial inoculants into the soil can increase plant nutrient absorption and enhance the efficiency of probiotic bacteria. For increased beneficial bacteria efficiency, the encapsulation technique has been used in agriculture.

RESULTS

The results of Fourier transform infrared (FTIR) and X-ray diffraction analysis (XRD) indicated that the prepared formulation is a mixture of gellan and chitosan. Using SEM, the spherical structure of the microcapsules was confirmed. It was observed that the increase in bacterial release was gradual, and the highest amount of bacteria was released (10  CFU mL ) on the 50th day. Greenhouse experiments showed that plants treated with S. fulvissimus Uts22 microcapsules had the highest efficiency with 90% disease control. Moreover, the highest fresh and dry weights of roots and shoots were observed in this treatment.

CONCLUSION

In this study, a new type of formulation aiming at controlling wheat take-all disease was developed through bacterial and nanoparticles loaded chitosan- gellan gum microcapsules with spray drying method. This formulation has many advantages, such as a large surface area and high internal porosity and increased water-holding capacity, while it also provides a proper habitat for bacteria to increase colonization rates and offers protection of the soil. © 2021 Society of Chemical Industry.

摘要

背景

小麦是一种有价值的食物来源,但它容易受到许多疾病的影响,这些疾病会降低小麦的数量和质量。影响小麦的最重要的疾病之一是小麦全蚀病,由禾顶囊壳菌小麦变种引起。将细菌接种剂施用于土壤中可以增加植物对养分的吸收,并提高益生菌的效率。为了提高有益细菌的效率,已经在农业中使用了包封技术。

结果

傅里叶变换红外(FTIR)和 X 射线衍射分析(XRD)的结果表明,所制备的配方是结冷胶和壳聚糖的混合物。使用 SEM 证实了微胶囊的球形结构。观察到细菌释放逐渐增加,第 50 天释放的细菌最多(10 CFU mL)。温室实验表明,用 S. fulvissimus Uts22 微胶囊处理的植物的防病效率最高,达到 90%。此外,在这种处理中观察到根和茎的鲜重和干重最高。

结论

在这项研究中,通过喷雾干燥法制备了一种新型配方,旨在通过负载细菌和纳米颗粒的壳聚糖-结冷胶微胶囊来控制小麦全蚀病。这种配方具有许多优点,例如具有较大的表面积和较高的内部孔隙率以及增加的持水能力,同时为细菌提供了适宜的栖息地,以提高定殖率,并为土壤提供保护。© 2021 英国化学学会。

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