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The lactic acid bacterium Lactococcus cremoris is suggested to repress genes involved in sugar metabolism in a hierarchical way, correlating with the growth rate. For cultures grown on glucose, lactose, galactose and maltose, we unraveled the sugar catabolizing hierarchy by combining the proteome co...
ORGANISM(S): Lactococcus lactis subsp. cremoris MG1363 
2024-01-26 | PXD037169 | Pride
Bacteria must adapt their proteome composition to optimize their growth and fitness after an environmental shift. For the lactic acid bacterium Lactococcus cremoris, the shift from galactose to glucose as the main carbon source is associated with large growth rate and physiological changes. This stu...
ORGANISM(S): Lactococcus lactis subsp. cremoris MG1363 
2025-02-17 | PXD041822 | Pride
Growth of L. cremoris NCDO712 was not altered when manganese is omitted from its defined medium. This study was conducted in order to compare protein requirements of Lactococcus cremoris NCDO712 to grow in the presence or absence of manganese in defined medium (1% lactose). The majority of protein a...
ORGANISM(S): Lactococcus cremoris 
2022-05-16 | PXD030123 | Pride
Lactococcus lactis subsp. cremoris RNA-seq
Lactococcus cremoris Raw sequence reads
Lactococcus cremoris Genome sequencing
Growth conditions influence growth rate and the corresponding global proteome composition. It is commonly observed that a higher ribosomal content due to growth rate optimization may impact the level of metabolic proteins. In the case of Lactococcus cremoris, acidification and flavor formation are i...
ORGANISM(S): Lactococcus lactis subsp. cremoris MG1363 
2025-02-17 | PXD042113 | Pride
Lactococcus cremoris Genome sequencing and assembly
Lactococcus cremoris Genome sequencing and assembly
Lactococcus cremoris Genome sequencing and assembly
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