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Merck
CN
  • Protozoal ciliate promotes bacterial autoinducer-2 accumulation in mixed culture with Escherichia coli.

Protozoal ciliate promotes bacterial autoinducer-2 accumulation in mixed culture with Escherichia coli.

The Journal of general and applied microbiology (2015-11-20)
Satoshi Oguri, Tomoko Hanawa, Junji Matsuo, Kasumi Ishida, Tomohiro Yamazaki, Shinji Nakamura, Torahiko Okubo, Tatsuya Fukumoto, Kouzi Akizawa, Chikara Shimizu, Shigeru Kamiya, Hiroyuki Yamaguchi
摘要

We have previously demonstrated conjugation of Escherichia coli into vacuoles of the protozoal ciliate (Tetrahymena thermophila). This indicated a possible role of ciliates in evoking bacterial quorum sensing, directly connecting bacterial survival via accumulation in the ciliate vacuoles. We therefore assessed if ciliates promoted bacterial autoinducer (AI)-2 accumulation with vacuole formation, which controls quorum sensing. E. coli AI-2 accumulation was significantly enhanced in the supernatants of a mixed culture of ciliates and bacteria, likely depending on ciliate density rather than bacterial concentration. As expected, AI-2 production was significantly correlated with vacuole formation. The experiment with E. coli luxS mutants showed that ciliates failed to enhance bacterial AI-2 accumulation, denying a nonspecific phenomenon. Fluorescence microscopy revealed accumulation of fragmented bacteria in ciliate vacuoles, and, more importantly, expulsion of the vacuoles containing disrupted bacteria into the culture supernatant. There was no increase in the expression of luxS (encoding AI-2) or ydgG (a transporter for controlling bacterial export of AI-2). We conclude that ciliates promote bacterial AI-2 accumulation in a mixed culture, via accumulation of disrupted bacteria in ciliate vacuoles followed by expulsion of the vacuoles, independently of luxS or ydgG gene induction. This is believed to be the first demonstration of a relationship between E. coli AI-2 dynamics and ciliates. In the natural environment, ciliate biotopes may provide a survival advantage to bacteria inhabiting such biotopes, via evoking quorum sensing.

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Sigma-Aldrich
PKH26 Red Fluorescent Cell Linker Mini Kit,用于常规细胞膜标记, Distributed for Phanos Technologies