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Updated: Oct 7, 2026

In Vitro Growth of Mouse Preantral Follicles Under Simulated Microgravity
Published on: December 17, 2017
Comparison of Streptococcus mutans growth-phase-dependent transcriptome changes in two different simulated
Ke Aira T Davis1,2, Kelly C Rice1
1Department of Microbiology and Cell Science, IFAS, University of Florida, Gainesville, Florida, 32611, USA.
Abstract:
Streptococcus mutans is a cariogenic member of human dental plaque biofilm. Our previous study of S. mutans early stationary-phase rotary cell culture system (RCCS) cultures revealed significant transcriptome changes under low-shear modelled microgravity (LSMMG) compared to normal gravity (NG), as well as an altered cell clumping phenotype. In this current study, S. mutans mid-exponential phase and late-exponential phase cultures were compared using the RCCS (LSMMG and NG orientations) as well as simulated microgravity ('0 g') using a random positioning machine (0 g RPM). The previously described stationary-phase LSMMG-altered cell clumping phenotype was also observed at earlier growth phases in LSMMG and 0 g RPM. Significant fold-change differences in gene expression (late-exponential/mid-exponential phase) were observed in LSMMG, NG and 0 g RPM, with 24 genes shared between LSMMG and 0 g RPM cultures (including upregulated pyrimidine biosynthesis genes and decreased genes involved in purine biosynthesis, iron transport and malolactic fermentation). Additional significant functional enrichments included TCA cycle (LSMMG and NG), starch and sucrose metabolism (LSMMG and 0 g RPM) and folate biosynthesis (LSMMG, 0 g RPM and NG). Overall, these data provide insight into S. mutans physiology in response to simulated microgravity. Further investigation of transcriptome changes shared between LSMMG and 0 g RPM may allow us to better predict how this bacterium responds to spaceflight conditions.

