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Serrador, D.

Publications and source records attributed to Serrador, D..

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Utilizing natural competence to genetically manipulate Lactobacillus iners

The healthy human vaginal microbiota is typically dominated by one species of Lactobacillus: L. iners, L. crispatus, L. jensenii, or L. gasseri. L. iners, the most prevalent vaginal microbe globally, is the most fastidious of the vaginal lactobacilli, has the smallest genome, and produces less lactic acid (only the L-isoform). L. iners is also less protective against bacterial vaginosis, and uniquely encodes a cholesterol-dependent cytolysin, inerolysin, suggesting it may be a pathobiont. Despite its central role in the health of over one billion females, L. iners biology remains poorly understood in part due to a lack of genetic editing tools. Here, we present findings that L. iners is naturally competent and can be transformed easily by exogenous DNA. Natural competence was leveraged to disrupt the iny gene encoding inerolysin, and comGA, encoding the ATPase component of the competence pilus. Both gene disruptions were accomplished using PCR assembled DNA fragments comprising a drug resistance gene cassette (tetM or ermB) flanked by [~]2 kb regions of homology to the L. iners chromosome. We further demonstrate that comGA is essential for L. iners transformation. The ability to rapidly perform targeted deletions in L. iners with in vitro generated DNA templates provides a straightforward and much needed method to probe the genetics and physiology of these important vaginal bacteria. IMPORTANCEThis study describes, to our knowledge, the first method for genetically manipulating L. iners, the most prevalent bacteria of the human vaginal microbiota. This work paves the way for the rapid development of genetic tools to explore L. iners physiology in the context of the vaginal microbiome and potentially alter its properties as a probiotic.

microbiology↗

Practical Media Formulations for Rapid Growth of Lactobacillus iners and Other Vaginal Bacteria

Vaginal microbiome composition is closely tied to host health. A microbiome dominated by specific anaerobes (e.g., Gardnerella vaginalis) is termed bacterial vaginosis (BV) and is associated with negative health outcomes, while colonization by Lactobacillus species is thought to protect against BV. However, the role of the species Lactobacillus iners in vaginal health is controversial, with evidence that some strains may not protect against BV while others do. To better characterize L. iners strains, their interactions with vaginal bacteria and human cells need to be investigated in vitro, but this has been impeded by the lack of liquid media for rapid L. iners growth. We have developed three liquid media formulations for L. iners growth: Serradors Lactobacilli-adapted Iscoves Medium (SLIM) which leads to robust L. iners growth, a vaginally adapted version of SLIM (SLIM-V) and a chemically defined medium (SLIM-CD). SLIM and SLIM-V lead to dramatically improved L. iners growth compared to previously published formulations and support growth of other vaginal bacteria, including L. crispatus, L. jensenii, L. gasseri and G. vaginalis. SLIM-CD leads to slower growth but could prove useful for characterizing L. iners nutrient requirements or metabolite production. A modified version of SLIM-V supports growth of human cervical epithelial cells and provides a base for future co-culture work. Here, we present the formulations of SLIM, SLIM-V and SLIM-CD, and compare the growth of bacterial strains and human cells in the media.

microbiology↗