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首页> 外文期刊>ACS Synthetic Biology >Toolkit Development for Cyanogenic and Gold Biorecovery Chassis Chromobacterium violaceum
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Toolkit Development for Cyanogenic and Gold Biorecovery Chassis Chromobacterium violaceum

机译:用于染色和金生物植物底盘的工具包开发底盘

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Chromobacterium violaceum has been of interest recently due to its cyanogenic ability and its potential role in environmental sustainability via the biorecovery of gold from electronic waste. However, as with many nonmodel bacteria, there are limited genetic tools to implement the use of this Gram-negative chassis in synthetic biology. We propose a system that involves assaying spontaneous antibiotic resistances and using broad host range vectors to develop episomal vectors for nonmodel Gram-negative bacteria. These developed vectors can subsequently be used to characterize inducible promoters for gene expressions and implementing CRISPRi to inhibit endogenous gene expression for further studies. Here, we developed the first episomal genetic toolkit for C. violaceum consisting of two origins of replication, three antibiotic resistance genes, and four inducible promoter systems. We examined the occurrences of spontaneous resistances of the bacterium to the chosen selection markers to prevent incidences of false positives. We also tested broad host range vectors from four different incompatibility groups and characterized four inducible promoter systems, which potentially can be applied in other Gram-negative nonmodel bacteria. CRISPRi was also implemented to inhibit violacein pigment production in C. violaceum. This systematic toolkit will aid future genetic circuitry building in this chassis and other nonmodel bacteria for synthetic biology and biotechnological applications.
机译:由于其染色能力及其在环境可持续性的潜在作用,通过电子废物的生物循环,紫杉杆菌是感兴趣的。然而,与许多非典范细菌一样,存在有限的遗传工具,以实现在合成生物学中使用该革兰氏阴性底盘的使用。我们提出了一种涉及测定自发抗生素电阻并使用宽宿主范围载体来制定非典范革兰氏阴性细菌的重组载体的系统。随后可以使用这些发育的载体来表征基因表达的诱导型启动子并实现CRISPRI以抑制进一步研究的内源基因表达。在这里,我们开发了第一个用于C. violaceum的重复性遗传工具包,包括复制,三种抗生素抗性基因和四种诱导型启动子体系的两种起源。我们检查了细菌的自发抗性发生到所选选择标记,以防止误报的发生。我们还测试了来自四种不同不相容性基团的宽宿主范围载体,并表征了四种诱导型启动子系统,其可能可用于其他革兰氏阴性非陈述细菌。 CRISPRI也被实施为抑制紫杉中的紫杉醇颜料生产。该系统工具包将帮助未来在该底盘和其他非典范细菌中的遗传资料建筑,用于合成生物学和生物技术应用。

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