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组成型光表达对小鼠肠道病原菌啮齿柠檬酸杆菌生物发光菌株的体外和体内影响。

The in vitro and in vivo effects of constitutive light expression on a bioluminescent strain of the mouse enteropathogen Citrobacter rodentium.

作者信息

Read Hannah M, Mills Grant, Johnson Sarah, Tsai Peter, Dalton James, Barquist Lars, Print Cristin G, Patrick Wayne M, Wiles Siouxsie

机构信息

Bioluminescent Superbugs Lab, University of Auckland, Auckland, New Zealand; Department of Molecular Medicine and Pathology, University of Auckland, Auckland, New Zealand.

Department of Molecular Medicine and Pathology, University of Auckland, Auckland, New Zealand; Bioinformatics Institute, School of Biological Sciences, University of Auckland, Auckland, New Zealand.

出版信息

PeerJ. 2016 Jun 22;4:e2130. doi: 10.7717/peerj.2130. eCollection 2016.

Abstract

Bioluminescent reporter genes, such as those from fireflies and bacteria, let researchers use light production as a non-invasive and non-destructive surrogate measure of microbial numbers in a wide variety of environments. As bioluminescence needs microbial metabolites, tagging microorganisms with luciferases means only live metabolically active cells are detected. Despite the wide use of bioluminescent reporter genes, very little is known about the impact of continuous (also called constitutive) light expression on tagged bacteria. We have previously made a bioluminescent strain of Citrobacter rodentium, a bacterium which infects laboratory mice in a similar way to how enteropathogenic Escherichia coli (EPEC) and enterohaemorrhagic E. coli (EHEC) infect humans. In this study, we compared the growth of the bioluminescent C. rodentium strain ICC180 with its non-bioluminescent parent (strain ICC169) in a wide variety of environments. To understand more about the metabolic burden of expressing light, we also compared the growth profiles of the two strains under approximately 2,000 different conditions. We found that constitutive light expression in ICC180 was near-neutral in almost every non-toxic environment tested. However, we also found that the non-bioluminescent parent strain has a competitive advantage over ICC180 during infection of adult mice, although this was not enough for ICC180 to be completely outcompeted. In conclusion, our data suggest that constitutive light expression is not metabolically costly to C. rodentium and supports the view that bioluminescent versions of microbes can be used as a substitute for their non-bioluminescent parents to study bacterial behaviour in a wide variety of environments.

摘要

生物发光报告基因,比如来自萤火虫和细菌的那些基因,使研究人员能够将发光作为一种非侵入性且非破坏性的替代指标,用于测量各种环境中的微生物数量。由于生物发光需要微生物代谢产物,用荧光素酶标记微生物意味着仅能检测到有代谢活性的活细胞。尽管生物发光报告基因得到了广泛应用,但对于持续(也称为组成型)光表达对标记细菌的影响却知之甚少。我们之前构建了一株啮齿柠檬酸杆菌的生物发光菌株,这种细菌感染实验室小鼠的方式与肠道致病性大肠杆菌(EPEC)和肠出血性大肠杆菌(EHEC)感染人类的方式类似。在本研究中,我们比较了生物发光的啮齿柠檬酸杆菌菌株ICC180与其非生物发光亲本(菌株ICC169)在各种环境中的生长情况。为了更深入了解表达光的代谢负担,我们还比较了这两种菌株在大约2000种不同条件下的生长曲线。我们发现,在几乎所有测试的无毒环境中,ICC180中的组成型光表达接近中性。然而,我们也发现,在感染成年小鼠期间,非生物发光亲本菌株比ICC180具有竞争优势,尽管这还不足以使ICC180完全被淘汰。总之,我们的数据表明,组成型光表达对啮齿柠檬酸杆菌来说在代谢上成本不高,并支持这样一种观点,即微生物的生物发光版本可以替代其非生物发光亲本,用于研究各种环境中的细菌行为。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a1da/4924136/d1fb5c129108/peerj-04-2130-g001.jpg

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