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Development of an Automated UV Irradiation Device for Microbial Cell Culture

机译:微生物细胞培养自动紫外辐射装置的研制

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Ultraviolet (UV) mutagenesis is a widely used technique to increase bacterial mutation rates in laboratory experiments. UV mutagenesis requires fine regulation of UV dose, because the number of dead cells increases exponentially as the dose increases. Ignoring this hazard can cause extinction of UV-exposed populations. Therefore, an automated system that cooperatively conducts both growth measurement and UV irradiation is needed for efficient UV mutagenesis experiments. To address this task, we constructed an automated UV irradiation device for microbial cell culture. This device can measure cell density and irradiate the bacterial cells with UV light automatically according to the state of cell growth. We demonstrated that this growth feedback control avoided extinction and enabled accumulation of mutations in bacterial genomes at a rapid rate for a long period. Whole-genome sequencing revealed the high accumulation rate, neutrality, and spectrum of UV-induced mutations. These characteristics were all consistent with those obtained by manual UV irradiation. These results indicate that our automated device is useful in accelerating mutation accumulation over a long duration.
机译:紫外线(UV)诱变是在实验室实验中提高细菌突变率的一种广泛使用的技术。紫外线诱变需要对紫外线剂量进行精细调节,因为随着剂量的增加,死细胞的数量呈指数增加。忽略这种危害可能会导致紫外线暴露的种群灭绝。因此,高效的诱变实验需要协同进行生长测量和紫外线照射的自动化系统。为了解决此任务,我们构建了用于微生物细胞培养的自动紫外线照射设备。该设备可以测量细胞密度并根据细胞生长状态自动用紫外线照射细菌细胞。我们证明了这种生长反馈控制可以避免灭绝,并且可以长期保持细菌基因组中突变的快速积累。全基因组测序揭示了紫外线诱导的突变的高累积率,中性和光谱。这些特性均与通过手动紫外线照射获得的特性一致。这些结果表明,我们的自动化设备可长期有效地促进突变积累。

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