Moya-Andérico Laura, Admella Joana, Fernandes Rodrigo, Torrents Eduard
Bacterial Infections and Antimicrobial Therapies Group, Institute for Bioengineering of Catalonia (IBEC), The Barcelona Institute of Science and Technology (BIST), 08028 Barcelona, Spain.
Microbiology Section, Department of Genetics, Microbiology, and Statistics, Faculty of Biology, University of Barcelona, 08028 Barcelona, Spain.
Microorganisms. 2020 Nov 16;8(11):1798. doi: 10.3390/microorganisms8111798.
larvae are an alternative in vivo model that has been extensively used to study the virulence and pathogenicity of different bacteria due to its practicality and lack of ethical constraints. However, the larvae possess intrinsic autofluorescence that obstructs the use of fluorescent proteins to study bacterial infections, hence better methodologies are needed. Here, we report the construction of a promoter probe vector with bioluminescence expression as well as the optimization of a total bacterial RNA extraction protocol to enhance the monitoring of in vivo infections. By employing the vector to construct different gene promoter fusions, variable gene expression levels were efficiently measured in larvae at various time points during the course of infection and without much manipulation of the larvae. Additionally, our optimized RNA extraction protocol facilitates the study of transcriptional gene levels during an in vivo infection. The proposed methodologies will greatly benefit bacterial infection studies as they can contribute to a better understanding of the in vivo infection processes and pathogen-mammalian host interactions.
幼虫是一种替代性的体内模型,由于其实用性和缺乏伦理限制,已被广泛用于研究不同细菌的毒力和致病性。然而,幼虫具有内在的自发荧光,这阻碍了使用荧光蛋白来研究细菌感染,因此需要更好的方法。在这里,我们报告了一种具有生物发光表达的启动子探针载体的构建,以及总细菌RNA提取方案的优化,以加强对体内感染的监测。通过使用该载体构建不同的基因启动子融合体,能够在感染过程中的各个时间点有效地测量幼虫中不同的基因表达水平,而无需对幼虫进行太多操作。此外,我们优化的RNA提取方案有助于研究体内感染期间的转录基因水平。所提出的方法将极大地有益于细菌感染研究,因为它们有助于更好地理解体内感染过程以及病原体与哺乳动物宿主之间的相互作用。