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首页> 外文期刊>BMC Microbiology >Investigation of availability of a high throughput screening method for predicting butanol solvent -producing ability of Clostridium beijerinckii
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Investigation of availability of a high throughput screening method for predicting butanol solvent -producing ability of Clostridium beijerinckii

机译:预测拜氏梭状芽胞杆菌丁醇溶剂生产能力的高通量筛选方法的可行性研究

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Background Currently, efficient screening methods for selection of desired bacterial phenotypes from large populations are not easy feasible or readily available due to the complicated physiological and metabolic networks of solventogenic clostridia. In this study, to contribute to the improvement of methods for predicting the butanol-producing ability of Clostridium beijerinckii based on starch substrate, we further investigate a simple, visualization screening method for selecting target strains from mutant library of Clostridium beijerinckii NCIMB 8052 by using trypan blue dye as an indicator in solid starch via statistical survey and validation of fermentation experiment with controlling pH. Results To verify an effective, efficient phenotypic screening method for isolating high butanol-producing mutants, the revalidation process was conducted based on Trypan Blue was used for visualization, and starch was used as the bacterial metabolic substrate. The availability of the screening system was further evaluated based on the relationship between characteristics of mutant strains and their α-amylase activities. Mutant clones were analyzed in detail based on their distinctive growth patterns and rate of fermentation of soluble starch to form butanol and were compared by statistical method. Significant correlations were identified between colony morphology and changes in butanol concentrations. The screening method was validated via statistical analysis for characterizing phenotypic parameters. The fermentation experiment of mutant strains with controlling pH value also demonstrated a positive correlation between increased α-amylase activity and increased solvent production by Clostridium beijerinckii was observed, and therefore indicated that the trypan blue dyeing method can be used as a fast method to screen target mutant strain for better solvent producers from, for instance, a mutant library. Conclusions The suitability of the novel screening procedure was validated, opening up a new indicator of approach to select mutant solventogenic clostridia with improved fermentation of starch to increase butanol concentrations. The applicability can easily be broadened to a wide range of interesting microbes such as cellulolytic or acetogenic microorganisms, which produce biofuels from feedstock rich in starch.
机译:背景技术目前,由于产溶剂的梭状芽孢杆菌的复杂的生理和代谢网络,从大种群中选择所需细菌表型的有效筛选方法不容易可行或不易获得。在这项研究中,为有助于改进基于淀粉底物的预测拜氏梭菌丁醇生产能力的方法,我们进一步研究了一种简单的可视化筛选方法,该方法使用台盼菌从拜氏梭菌NCIMB 8052突变体文库中选择目标菌株通过统计调查和控制pH值的发酵实验验证,蓝色染料作为固体淀粉的指示剂。结果为验证一种有效,高效的表型筛选方法,用于分离高产丁醇的突变体,基于锥虫蓝进行了重新验证,以可视化,淀粉为细菌代谢底物。基于突变菌株的特性与其α-淀粉酶活性之间的关系,进一步评估了筛选系统的可用性。根据突变克隆的独特生长模式和可溶性淀粉发酵形成丁醇的速率,对突变克隆进行了详细分析,并通过统计学方法进行了比较。在菌落形态和丁醇浓度变化之间鉴定出显着相关性。该筛选方法通过统计分析验证了表征表型参数的能力。控制pH值的突变菌株的发酵实验也表明,α-淀粉酶活性的增加与拜氏梭菌的溶剂产生的增加呈正相关,因此表明锥虫蓝染色法可作为一种快速筛选靶标的方法。突变株,例如来自突变库的更好的溶剂生产者。结论验证了该新型筛选方法的适用性,为选择突变产溶剂型梭菌,改良淀粉发酵以提高丁醇浓度提供了一种新的方法指标。适用性可以轻松扩展到各种有趣的微生物,例如纤维素分解或产乙酸微生物,这些微生物可以从富含淀粉的原料生产生物燃料。

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