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首页> 外文期刊>BMC Biotechnology >Screening and genetic characterization of thermo-tolerant Synechocystis sp. PCC6803 strains created by adaptive evolution
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Screening and genetic characterization of thermo-tolerant Synechocystis sp. PCC6803 strains created by adaptive evolution

机译:耐高温集胞藻的筛选和遗传特性。通过自适应进化产生的PCC6803菌株

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Background Temperature tolerance is an important aspect for commercial scale outdoor cultivation of microalgae and cyanobacteria. While various genes are known to be related to Synechocystis sp. PCC6803's heat shock response, there is very limited published data concerning the specific genes involved in long term thermal tolerance. We have previously used random mutagenesis and adaptive evolution to generate a mixture of strains of Synechocystis sp. PCC6803 with significantly increased thermal tolerance. The genetic modifications leading to the phenotypes of the newly generated strains are the focus of this work. Results We used a custom screening platform, based on 96-deepwell microplate culturing in an in house designed cultivation chamber integrated in a liquid handling robot for screening and selection; in addition we also used a more conventional system. The increased thermal tolerances of the isolated monoclonal strains were validated in larger bioreactors and their whole genomes sequenced. Comparison of the sequence information to the parental wild type identified various mutations responsible for the enhanced phenotypes. Among the affected genes identified are clpC , pnp , pyk2 , sigF , nlpD , pyrR , pilJ and cya1 . Conclusions The applied methods (random mutagenesis, in vivo selection, screening, validation, whole genome sequencing) were successfully applied to identify various mutations, some of which are very unlikely to have been identified by other approaches. Several of the identified mutations are found in various strains and (due to their distribution) are likely to have occurred independently. This, coupled with the relatively low number of affected genes underscores the significance of these specific mutations to convey thermal tolerance in Synechocystis .
机译:背景技术温度耐受性是商业规模的微藻和蓝细菌的室外培养的重要方面。虽然已知各种基因与集胞藻(Synechochocystis sp。)有关。 PCC6803的热激响应,关于长期耐热性涉及的特定基因的公开数据非常有限。我们以前曾使用随机诱变和适应性进化来产生集胞藻属菌株的混合物。 PCC6803具有显着提高的耐热性。导致新产生的菌株表型的遗传修饰是这项工作的重点。结果我们使用了一个定制的筛选平台,该平台基于在内部设计的培养室中进行的96深孔微孔板培养,该培养室集成在液体处理机器人中,用于筛选和选择。此外,我们还使用了更常规的系统。在较大的生物反应器中验证了分离出的单克隆菌株耐热性的提高,并对它们的整个基因组进行了测序。序列信息与亲本野生型的比较确定了引起增强表型的各种突变。鉴定出的受影响基因有clpC,pnp,pyk2,sigF,nlpD,pyrR,pilJ和cya1。结论成功应用了所应用的方法(随机诱变,体内选择,筛选,验证,全基因组测序)来鉴定各种突变,其中某些突变极不可能被其他方法所鉴定。在各种菌株中发现了一些已鉴定的突变,并且(由于其分布)可能独立发生。加上受影响基因的数量相对较低,突显了这些特定突变在集胞藻中传递热耐受性的重要性。

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