制造芽孢杆菌杀菌剂的可能性及其在不同发酵培养基上的生长情况

Ali Salman Abbas, Wissam Adnan R. Aljuaifari
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引用次数: 0

摘要

该研究于2020-2021年在库法大学植物保护系农学院分子生物学实验室进行,以评估从芽孢杆菌、硬芽孢杆菌和蜡样芽孢杆菌中生产杀菌剂的可能性。B.单纯性;结果表明,3种芽孢杆菌在相同的堆肥培养基(棕榈叶、稻渣、小麦渣)上的生长无显著差异,但各芽孢杆菌在不同培养基上的生长存在差异。无论细菌类型如何,棕榈叶培养基都是最不利的,支持的细菌群体不多,允许的细菌数量不超过83*108 CFU。小麦发酵渣菌落在219*108 ~ 254*108 CFU之间,与水稻发酵渣菌落在198*108 ~ 214*108 CFU之间差异不大。在杀菌剂载体的情况下,用沙子制备总是比用硫酸钙制备好。还评估了包装材料(塑料袋、纸袋或塑料容器)对杀菌剂含量中细菌的效率和活力的影响。在实验室条件下储存15天后,使用塑料容器的细菌菌落最高,为267 ~ 253 *108 CFU,与纸袋(233 ~ 230*108 CFU)和塑料袋(235 ~ 216 *108 CFU)有显著差异。然而,无论细菌类型如何,制备的杀菌剂的活力和有效性随着储存时间的增加而下降,分别为30、60和90天。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The possibility of manufacturing a biocidal of Bacillus spp. and their growth on different fermented media
The study was conducted in the Molecular Biology Laboratory - Department of Plant Protection - Faculty of Agriculture - University of Kufa during 2020-2021 to evaluate the possibility of producing a biocide from Bacillus spp. B. firmus, B. cereus. and B. simplex. The results of manufacturing bionematicide from these bacteria showed that the three species did not differ in their growth on the same compost medium (palm fronds, rice residues, wheat residues), while the growth of each Bacillus spp. differed from other species on different culture media. The palm frond medium, regardless of the type of bacteria, was the least favorable and did not support many bacterial populations, and allowed no more than 83*108 CFU. Whereas the bacterial colonies ranged from 219*108 CFU to 254*108 CFU on fermented wheat residues, with a slight difference from rice residues, which led to bacterial colonies of 198*108 CFU to 214*108 CFU. In the case of carriers used for the biocide, preparation using sand was always better than with calcium sulfate. The effect of packing materials (plastic bags, paper bags, or plastic containers) on the efficiency and vitality of bacteria in the biocide content was also evaluated. It is noted that the highest bacterial colonies, which ranged from 267 to 253 *108 CFU, in the case of using plastic containers significantly differed from storing in paper bags (233-230*108 CFU) and plastic bags (235 -216 *108 CFU), after 15 days of storage in laboratory conditions. However, the viability and effectiveness of the prepared biocide decreased with the increase of storage periods to 30, 60, and 90 days, regardless of the type of bacteria.
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