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Comparative phenotypic analysis and genome sequence of Clostridium beijerinckii SA-1, an offspring of NCIMB 8052

机译:NCIMB 8052的后代比色梭菌SA-1的比较表型分析和基因组序列

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Production of butanol by solventogenic clostridia is controlled through metabolic regulation of the carbon flow and limited by its toxic effects. To overcome cell sensitivity to solvents, stress-directed evolution methodology was used three decades ago on Clostridium beijerinckii NCIMB 8052 that spawned the SA-1 strain. Here, we evaluated SA-1 solventogenic capabilities when growing on a previously validated medium containing, as carbon- and energy-limiting substrates, sucrose and the products of its hydrolysis d-glucose and d-fructose and only d-fructose. Comparative small-scale batch fermentations with controlled pH (pH 6.5) showed that SA-1 is a solvent hyper-producing strain capable of generating up to 16.1 g l?1 of butanol and 26.3 g l?1 of total solvents, 62.3?% and 63?% more than NCIMB 8052, respectively. This corresponds to butanol and solvent yields of 0.3 and 0.49 g g?1, respectively (63?% and 65?% increase compared with NCIMB 8052). SA-1 showed a deficiency in d-fructose transport as suggested by its 7 h generation time compared with 1 h for NCIMB 8052. To potentially correlate physiological behaviour with genetic mutations, the whole genome of SA-1 was sequenced using the Illumina GA IIx platform. PCR and Sanger sequencing were performed to analyse the putative variations. As a result, four errors were confirmed and validated in the reference genome of NCIMB 8052 and a total of 10 genetic polymorphisms in SA-1. The genetic polymorphisms included eight single nucleotide variants, one small deletion and one large insertion that it is an additional copy of the insertion sequence ISCb1. Two of the genetic polymorphisms, the serine threonine phosphatase cbs_4400 and the solute binding protein cbs_0769, may possibly explain some of the observed physiological behaviour, such as rerouting of the metabolic carbon flow, deregulation of the d-fructose phosphotransferase transport system and delayed sporulation.
机译:产溶剂梭菌的丁醇生产是通过碳流量的代谢调节来控制的,并受到其毒性作用的限制。为了克服细胞对溶剂的敏感性,三十年前在产生梭菌SA-1菌株的拜氏梭菌NCIMB 8052上使用了应力定向进化方法。在这里,我们评估了SA-1在原先经过验证的培养基上生长的能力,该培养基含有蔗糖以及其水解d-葡萄糖和d-果糖且仅d-果糖作为碳和能量限制底物。比较小规模的分批发酵,pH值控制在pH(6.5),表明SA-1是一种溶剂高产菌株,能够产生高达16.1 gl?1的丁醇和26.3 gl?1的总溶剂,分别占62.3%和63比NCIMB 8052高出%?%。这对应于丁醇和溶剂的产量分别为0.3和0.49 g g?1(与NCIMB 8052相比增加了63%和65%)。 SA-1显示7 d的时间表明d-果糖运输存在缺陷,而NCIMB 8052则为1 h。为了将生理行为与遗传突变相关联,使用Illumina GA IIx对SA-1的整个基因组进行了测序。平台。进行PCR和Sanger测序以分析假定的变异。结果,在NCIMB 8052的参考基因组中确认并验证了四个错误,并且在SA-1中共有10个遗传多态性。遗传多态性包括八个单核苷酸变体,一个小缺失和一个大插入,这是插入序列ISCb1的另一个副本。两种遗传多态性,丝氨酸苏氨酸磷酸酶cbs_4400和溶质结合蛋白cbs_0769,可能解释了一些观察到的生理行为,例如代谢碳流量的重新路由,d-果糖磷酸转移酶运输系统的失调和孢子形成的延迟。

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