Correction: Signal transduction pathway mediated by the novel regulator LoiA for low oxygen tension induced salmonella typhimurium invasion (PLoS Pathogens (2017)13(6): e1006429. DOI: 10.1371/journal.ppat.1006429)

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Abstract

The authors would like to correct Figs 3 and 7, and S4 Fig because the same data sets were reported in multiple figures. The ?SPI-14 data should be removed from Fig 3B, 3C and 3D, S4A and S4B Fig. Additionally, the ?loiA data should be removed from Fig 7E. The authors have provided the correct Fig 3, S4 Fig, and Fig 7 files here. There are errors in the captions for Figs 3 and 7, and S4 Fig. The authors have provided the complete, correct captions for Figs 3 and 7, and S4 Fig here. S4 Fig. Lack of loiA did not influence S. Typhimurium systemic infection of BALB/c mice. (A) Survival plots of BALB/c mice after inoculation intraperitoneally (i.p.) with 1×104 CFU of loiA mutant. The wild-type control is the same as that of Fig 1C, which was obtained from the same batch of experiments. Data presented are the combination of two independent experiments, with P value determined by log-rank curve comparison test (ns, not significant). (B) Bacterial counts recovered from liver and spleen of the BALB/c mice i.p. infected with loiA mutant at day 3 post-infection. The wild-type control is the same as that of Fig 1D, which was obtained from the same batch of experiments. Data are combined from two independent experiments. Bars represent mean CFU of all mice, with P value determined by the Mann- Whitney U test (ns, not significant). (Figure Presented).

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Jiang, L., Feng, L., Yang, B., Zhang, W., Wang, P., Jiang, X., & Wang, L. (2019). Correction: Signal transduction pathway mediated by the novel regulator LoiA for low oxygen tension induced salmonella typhimurium invasion (PLoS Pathogens (2017)13(6): e1006429. DOI: 10.1371/journal.ppat.1006429). PLoS Pathogens. Public Library of Science. https://doi.org/10.1371/journal.ppat.1007997

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