Interdisciplinary Platform for Sustainable Plastics towards a Circular Economy-Spanish National Research Council (SusPlast-CSIC), Madrid, Spain.
Department of Microbial and Plant Biotechnology, Polymer Biotechnology Group, Margarita Salas Center for Biological Research (CIB-CSIC), Madrid, Spain.
Microb Biotechnol. 2024 Jun;17(6):e14517. doi: 10.1111/1751-7915.14517.
Bdellovibrio bacteriovorus HD100 is an obligate predatory bacterium that preys upon Gram-negative bacteria. It has been proposed to be applied as a "living antibiotic" in several fields such as agriculture or even medicine, since it is able to prey upon bacterial pathogens. Its interesting lifestyle makes this bacterium very attractive as a microbial chassis for co-culture systems including two partners. A limitation to this goal is the scarcity of suitable synthetic biology tools for predator domestication. To fill this gap, we have firstly adapted the hierarchical assembly cloning technique Golden Standard (GS) to make it compatible with B. bacteriovorus HD100. The chromosomal integration of the Tn7 transposon's mobile element, in conjunction with the application of the GS technique, has allowed the systematic characterization of a repertoire of constitutive and inducible promoters, facilitating the control of the expression of heterologous genes in this bacterium. PJ/EliR proved to be an exceptional promoter/regulator system in B. bacteriovorus HD100 when precise regulation is essential, while the synthetic promoter P showed a constitutive high expression. These genetic tools represent a step forward in the conversion of B. bacteriovorus into an amenable strain for microbial biotechnology approaches.
蛭弧菌 HD100 是一种专性捕食性细菌,以革兰氏阴性菌为食。它已被提议作为一种“活体抗生素”应用于农业甚至医学等领域,因为它能够捕食细菌病原体。它有趣的生活方式使这种细菌成为包括两个合作伙伴在内的共培养系统的微生物底盘非常有吸引力。实现这一目标的一个限制是缺乏适合捕食者驯化的合适的合成生物学工具。为了填补这一空白,我们首先将 Golden Standard (GS) 分层组装克隆技术进行了适配,使其与 B. bacteriovorus HD100 兼容。Tn7 转座子的移动元件的染色体整合,结合 GS 技术的应用,使得对一系列组成型和诱导型启动子进行系统表征成为可能,从而有利于在该细菌中控制异源基因的表达。当需要精确调控时,PJ/EliR 被证明是 B. bacteriovorus HD100 中一个极好的启动子/调控系统,而合成启动子 P 则表现出组成型的高表达。这些遗传工具代表着将 B. bacteriovorus 转化为适合微生物生物技术方法的可处理菌株的一个进步。