This paper describes the molecular and metabolic adaptations of Lactococcus lactis during the transition from a growing to a near-zero growth state by using carbon-limited retentostat cultivation. Transcriptomic analyses revealed that metabolic patterns shifted between lactic- and mixed-acid fermentations during retentostat cultivation, which appeared to be controlled at the level of transcription of the corresponding pyruvate dissipation-encoding genes. During retentostat cultivation, cells continued to consume several amino acids but also produced specific amino acids, which may derive from the conversion of glycolytic intermediates. We identify a novel motif containing CTGTCAG in the upstream regions of several genes related to amino aci...
Contains fulltext : 155358.pdf (publisher's version ) (Open Access)This paper desc...
This paper describes the metabolic adaptation of Lactococcus lactis during the transition from a gro...
A commonly observed organismal response to changing growth rate is a metabolic shift from on...
This paper describes the molecular and metabolic adaptations of Lactococcus lactis during the transi...
This paper describes the molecular and metabolic adaptations of Lactococcus lactis during the transi...
This paper describes the molecular and metabolic adaptations of Lactococcus lactis during the transi...
This paper describes the molecular and metabolic adaptations of Lactococcus lactis during the transi...
Contains fulltext : 153413.pdf (publisher's version ) (Open Access)This paper desc...
Lactococcus lactis is an important lactic acid bacteria (LAB) species that is used for the manufactu...
Lactococcus lactis is an important lactic acid bacteria (LAB) species that is used for the manufactu...
This paper describes the transcriptional adaptations of nongrowing, retentostat cultures of Lactococ...
This paper describes the transcriptional adaptations of nongrowing, retentostat cultures of Lactococ...
This paper describes the transcriptional adaptations of nongrowing, retentostat cultures of Lactococ...
This paper describes the transcriptional adaptations of nongrowing, retentostat cultures of Lactococ...
This paper describes the transcriptional adaptations of nongrowing, retentostat cultures of Lactococ...
Contains fulltext : 155358.pdf (publisher's version ) (Open Access)This paper desc...
This paper describes the metabolic adaptation of Lactococcus lactis during the transition from a gro...
A commonly observed organismal response to changing growth rate is a metabolic shift from on...
This paper describes the molecular and metabolic adaptations of Lactococcus lactis during the transi...
This paper describes the molecular and metabolic adaptations of Lactococcus lactis during the transi...
This paper describes the molecular and metabolic adaptations of Lactococcus lactis during the transi...
This paper describes the molecular and metabolic adaptations of Lactococcus lactis during the transi...
Contains fulltext : 153413.pdf (publisher's version ) (Open Access)This paper desc...
Lactococcus lactis is an important lactic acid bacteria (LAB) species that is used for the manufactu...
Lactococcus lactis is an important lactic acid bacteria (LAB) species that is used for the manufactu...
This paper describes the transcriptional adaptations of nongrowing, retentostat cultures of Lactococ...
This paper describes the transcriptional adaptations of nongrowing, retentostat cultures of Lactococ...
This paper describes the transcriptional adaptations of nongrowing, retentostat cultures of Lactococ...
This paper describes the transcriptional adaptations of nongrowing, retentostat cultures of Lactococ...
This paper describes the transcriptional adaptations of nongrowing, retentostat cultures of Lactococ...
Contains fulltext : 155358.pdf (publisher's version ) (Open Access)This paper desc...
This paper describes the metabolic adaptation of Lactococcus lactis during the transition from a gro...
A commonly observed organismal response to changing growth rate is a metabolic shift from on...