TY - JOUR
T1 - Inducible gene expression in Lactobacillus reuteri LTH5531 during type II sourdough fermentation
AU - Jonsson, Hans
AU - Roos, Stefan
AU - Dal Bello, Fabio
AU - Hertel, Christian
AU - Walter, Jens
PY - 2005
Y1 - 2005
N2 - Lactobacillus reuteri LTH5531 is a dominant member of the microbiota of type 11 sourdough fermentations. To investigate the genetic background of the ecological performance of LTH5531, in vivo expression technology was used to identify promoters that show elevated levels of expression during growth of this organism in a type H sourdough fermentation. Thirty-eight sourdough-induced fusions were detected, and 29 genes could be identified on the basis of the available sequence information. Four genes encoded stress-related functions (e.g., acid and general stress response), reflecting the harsh conditions prevailing during sourdough fermentation. Further, eight genes were involved in acquisition and synthesis of amino acids and nucleotides, indicating their limited availability in sourdough. The remaining genes were either part of functionally unrelated pathways or encoded hypothetical proteins. The identification of a putative proteinase and a component of the arginine deiminase pathway is of technological interest, as they are potentially involved in the formation of aroma precursors. Our study allowed insight into the transcriptional response of Lactobacillus reuteri to the dough environment, which establishes the molecular basis to investigate bacterial properties that are likely to contribute to the ecological performance of the organism and influence the final outcome of the fermentation.
AB - Lactobacillus reuteri LTH5531 is a dominant member of the microbiota of type 11 sourdough fermentations. To investigate the genetic background of the ecological performance of LTH5531, in vivo expression technology was used to identify promoters that show elevated levels of expression during growth of this organism in a type H sourdough fermentation. Thirty-eight sourdough-induced fusions were detected, and 29 genes could be identified on the basis of the available sequence information. Four genes encoded stress-related functions (e.g., acid and general stress response), reflecting the harsh conditions prevailing during sourdough fermentation. Further, eight genes were involved in acquisition and synthesis of amino acids and nucleotides, indicating their limited availability in sourdough. The remaining genes were either part of functionally unrelated pathways or encoded hypothetical proteins. The identification of a putative proteinase and a component of the arginine deiminase pathway is of technological interest, as they are potentially involved in the formation of aroma precursors. Our study allowed insight into the transcriptional response of Lactobacillus reuteri to the dough environment, which establishes the molecular basis to investigate bacterial properties that are likely to contribute to the ecological performance of the organism and influence the final outcome of the fermentation.
UR - https://res.slu.se/id/publ/6261
U2 - 10.1128/AEM.71.10.5873-5878.2005
DO - 10.1128/AEM.71.10.5873-5878.2005
M3 - Journal article
C2 - 16204499
SN - 0099-2240
VL - 71
SP - 5873
EP - 5878
JO - Applied and Environmental Microbiology
JF - Applied and Environmental Microbiology
IS - 10
ER -