TY - JOUR
T1 - Differences in carbon source utilization of Salmonella Oranienburg and Saintpaul isolated from river water
AU - Medrano-Félix, Andrés
AU - Estrada-Acosta, Mitzi
AU - Peraza-Garay, Felipe
AU - Castro-del Campo, Nohelia
AU - Martínez-Urtaza, Jaime
AU - Chaidez, Cristóbal
N1 - Publisher Copyright:
© 2017 Informa UK Limited, trading as Taylor & Francis Group.
PY - 2017/7/4
Y1 - 2017/7/4
N2 - Long-term exposure to river water by non-indigenous micro-organisms such as Salmonella may affect metabolic adaptation to carbon sources. This study was conducted to determine differences in carbon source utilization of Salmonella Oranienburg and Salmonella Saintpaul (isolated from tropical river water) as well as the control strain Salmonella Typhimurium exposed to laboratory, river water, and host cells (Hep-2 cell line) growth conditions. Results showed that Salmonella Oranienburg and Salmonella Saintpaul showed better ability for carbon source utilization under the three growth conditions evaluated; however, S. Oranienburg showed the fastest and highest utilization on different carbon sources, including D-Glucosaminic acid, N-acetyl-D-Glucosamine, Glucose-1-phosphate, and D-Galactonic acid, while Salmonella Saintpaul and S. Typhimurium showed a limited utilization of carbon sources. In conclusion, this study suggests that environmental Salmonella strains show better survival and preconditioning abilities to external environments than the control strain based on their plasticity on diverse carbon sources use.
AB - Long-term exposure to river water by non-indigenous micro-organisms such as Salmonella may affect metabolic adaptation to carbon sources. This study was conducted to determine differences in carbon source utilization of Salmonella Oranienburg and Salmonella Saintpaul (isolated from tropical river water) as well as the control strain Salmonella Typhimurium exposed to laboratory, river water, and host cells (Hep-2 cell line) growth conditions. Results showed that Salmonella Oranienburg and Salmonella Saintpaul showed better ability for carbon source utilization under the three growth conditions evaluated; however, S. Oranienburg showed the fastest and highest utilization on different carbon sources, including D-Glucosaminic acid, N-acetyl-D-Glucosamine, Glucose-1-phosphate, and D-Galactonic acid, while Salmonella Saintpaul and S. Typhimurium showed a limited utilization of carbon sources. In conclusion, this study suggests that environmental Salmonella strains show better survival and preconditioning abilities to external environments than the control strain based on their plasticity on diverse carbon sources use.
KW - environment
KW - metabolism
KW - Salmonella
KW - stress response
UR - https://www.scopus.com/pages/publications/85020198204
U2 - 10.1080/09603123.2017.1332349
DO - 10.1080/09603123.2017.1332349
M3 - Article
C2 - 28565917
AN - SCOPUS:85020198204
SN - 0960-3123
VL - 27
SP - 252
EP - 263
JO - International Journal of Environmental Health Research
JF - International Journal of Environmental Health Research
IS - 4
ER -