枯草芽胞杆菌紫外线诱变实验方案的优化  被引量:1

Optimized protocol for ultraviolet mutagenesis of Bacillus subtilis

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作  者:韦善君[1] 张雪萌[1] 李婧贤[1] 戴景峰[1] 冉坤念 刘立亚[1] 周宜君[1] 

机构地区:[1]中央民族大学生命与环境科学学院,北京100081

出  处:《微生物学通报》2016年第3期695-700,共6页Microbiology China

基  金:国家自然科学基金项目(No.31100507);北京市专业建设与专业综合改革项目(2014);北京市大学生科学研究与创业行动计划项目(No.BEIJ2015110010)~~

摘  要:【目的】优化枯草芽胞杆菌紫外线诱变实验教学方案,以便学生在实验中获得预期结果。【方法】从菌体培养、活菌浓度估测和辐射参数三方面探讨影响实验结果的因素。【结果】采用液体培养法活化菌体有利于制备均匀的菌悬液,采用比浊法估测初始菌悬液浓度可以指导学生将其稀释至102-103 CFU/m L的浓度;涂布接种后平板表面干燥、培养皿盖内无明显水珠附着,是获得单菌落的关键;在紫外辐射过程中采用固定的菌悬液体积和搅拌速度,可以获得规律性的辐射剂量——致死效应曲线。【结论】优化后的方案实验结果易得、重复性好,可供教学和研究实验参考。[Objective] To optimize the experiment protocol of ultraviolet(UV) radiation of Bacillus subtilis so that students can get better results in the experiment lesson. [Methods] We optimized the protocol by determining the best bacterial cultivation, estimation of viable cells, and UV-radiation parameters. [Results] Liquid medium was better than agar slant to obtain a homogeneous suspension of cells. The cell amount of the initial bacterial suspension was estimated efficiently by turbidimetric method, which was convenient to dilute the initial suspension to a concentration of 102-103 CFU/m L. Dry surface covered with dry dish was necessary for the formation of singlet colonies on a bacteria-inoculated plate. During UV exposure, the lethal effect was affected by the adding volume of suspension and mixing speed. [Conclusion] The optimized protocol produces repeatable results easily and can be used for teaching or research.

关 键 词:细菌 枯草芽胞杆菌 紫外线诱变 实验教学 

分 类 号:Q93-4[生物学—微生物学] G642[文化科学—高等教育学]

 

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