International audienceBackground: The meiotic developmental pathway in yeast enables both differentiation of vegetative cells into haploid spores that ensure long-term survival, and recombination of the parental DNA to create genetic diversity. Despite the importance of proper metabolic regulation for the supply of building blocks and energy, little is known about the reprogramming of central metabolic pathways in meiotically differentiating cells during passage through successive developmental stages. Results: Metabolic regulation during meiotic differentiation in budding yeast was analyzed by integrating information on genome-wide transcriptional activity, 26 enzymatic activities in the central metabolism, the dynamics of 67 metabolites, ...
The IME1 gene is essential for initiation of meiosis in the yeast Saccharomyces cerevisiae, although...
<p>Five metabolic pathways are active during meiosis when acetate serves as the external carbon sour...
BACKGROUND: The control of energy metabolism is fundamental for cell growth and function and anomali...
International audienceBackground: The meiotic developmental pathway in yeast enables both differenti...
International audienceBackground: The meiotic developmental pathway in yeast enables both differenti...
International audienceBackground: The meiotic developmental pathway in yeast enables both differenti...
International audienceBackground: The meiotic developmental pathway in yeast enables both differenti...
Background: The meiotic developmental pathway in yeast enables both differentiation of vegetative ce...
International audienceBackground: The meiotic developmental pathway in yeast enables both differenti...
<div><p>The diploid yeast <i>Saccharomyces cerevisiae</i> undergoes mitosis in glucose-rich medium b...
The diploid yeast Saccharomyces cerevisiae undergoes mitosis in glucose-rich medium but enters meios...
Environmental signals regulate many cell differentiation processes in eukaryotes. In the yeast Sacch...
The coordination of metabolism and growth with cell division is crucial for proliferation. While it ...
Sexual reproduction requires genome haploidization by the two divisions of meiosis and a differentia...
Meiosis in Saccharomyces cerevisiae requires the induction of a large number of genes whose mRNAs ac...
The IME1 gene is essential for initiation of meiosis in the yeast Saccharomyces cerevisiae, although...
<p>Five metabolic pathways are active during meiosis when acetate serves as the external carbon sour...
BACKGROUND: The control of energy metabolism is fundamental for cell growth and function and anomali...
International audienceBackground: The meiotic developmental pathway in yeast enables both differenti...
International audienceBackground: The meiotic developmental pathway in yeast enables both differenti...
International audienceBackground: The meiotic developmental pathway in yeast enables both differenti...
International audienceBackground: The meiotic developmental pathway in yeast enables both differenti...
Background: The meiotic developmental pathway in yeast enables both differentiation of vegetative ce...
International audienceBackground: The meiotic developmental pathway in yeast enables both differenti...
<div><p>The diploid yeast <i>Saccharomyces cerevisiae</i> undergoes mitosis in glucose-rich medium b...
The diploid yeast Saccharomyces cerevisiae undergoes mitosis in glucose-rich medium but enters meios...
Environmental signals regulate many cell differentiation processes in eukaryotes. In the yeast Sacch...
The coordination of metabolism and growth with cell division is crucial for proliferation. While it ...
Sexual reproduction requires genome haploidization by the two divisions of meiosis and a differentia...
Meiosis in Saccharomyces cerevisiae requires the induction of a large number of genes whose mRNAs ac...
The IME1 gene is essential for initiation of meiosis in the yeast Saccharomyces cerevisiae, although...
<p>Five metabolic pathways are active during meiosis when acetate serves as the external carbon sour...
BACKGROUND: The control of energy metabolism is fundamental for cell growth and function and anomali...