Yarrowia lipolytica, located at the frontier of hemiascomycetous yeasts and fungi, is an excellent candidate for studies of metabolism evolution. This yeast, widely recognized for its technological applications, in particular produces volatile sulfur compounds (VSCs) that fully contribute to the flavor of smear cheese. We report here a relevant global vision of sulfur metabolism in Y. lipolytica based on a comparison between high- and low-sulfur source supplies (sulfate, methionine, or cystine) by combined approaches (transcriptomics, metabolite profiling, and VSC analysis). The strongest repression of the sulfate assimilation pathway was observed in the case of high methionine supply, together with a large accumulation of sulfur intermedia...
Assimilation of sulfur is vital to all organisms. In S. cerevisiae, inorganic sulfate is first reduc...
Assimilation of sulfur is vital to all organisms. In S. cerevisiae, inorganic sulfate is first reduc...
Assimilation of sulfur is vital to all organisms. In S. cerevisiae, inorganic sulfate is first reduc...
Yarrowia lipolytica, located at the frontier of hemiascomycetous yeasts and fungi, is an excellent c...
Hemiascomycetes are separated by considerable evolutionary distances and, as a consequence, the mech...
Sulfur metabolism is a central function of the cell. It has been extensively studied in the model ye...
In yeast and filamentous fungi, sulfide can be condensed either with O-acetylhomoserine to generate ...
<div><p>In yeast and filamentous fungi, sulfide can be condensed either with <i>O</i>-acetylhomoseri...
Sulphur metabolism, which has a central role in the cell, is also important during the manufacturing...
Assimilation of sulfur is vital to all organisms. In S. cerevisiae, inorganic sulfate is first reduc...
Background: Wine yeasts can produce undesirable sulfur compounds during alcoholic fermentation, such...
The assimilation, incorporation, and metabolism of sulfur is a fundamental process across all domain...
In this study, we combined metabolic reconstruction, growth assays, and metabolome and transcriptome...
In this study, we combined metabolic reconstruction, growth assays, and metabolome and transcriptome...
Assimilation of sulfur is vital to all organisms. In S. cerevisiae, inorganic sulfate is first reduc...
Assimilation of sulfur is vital to all organisms. In S. cerevisiae, inorganic sulfate is first reduc...
Assimilation of sulfur is vital to all organisms. In S. cerevisiae, inorganic sulfate is first reduc...
Assimilation of sulfur is vital to all organisms. In S. cerevisiae, inorganic sulfate is first reduc...
Yarrowia lipolytica, located at the frontier of hemiascomycetous yeasts and fungi, is an excellent c...
Hemiascomycetes are separated by considerable evolutionary distances and, as a consequence, the mech...
Sulfur metabolism is a central function of the cell. It has been extensively studied in the model ye...
In yeast and filamentous fungi, sulfide can be condensed either with O-acetylhomoserine to generate ...
<div><p>In yeast and filamentous fungi, sulfide can be condensed either with <i>O</i>-acetylhomoseri...
Sulphur metabolism, which has a central role in the cell, is also important during the manufacturing...
Assimilation of sulfur is vital to all organisms. In S. cerevisiae, inorganic sulfate is first reduc...
Background: Wine yeasts can produce undesirable sulfur compounds during alcoholic fermentation, such...
The assimilation, incorporation, and metabolism of sulfur is a fundamental process across all domain...
In this study, we combined metabolic reconstruction, growth assays, and metabolome and transcriptome...
In this study, we combined metabolic reconstruction, growth assays, and metabolome and transcriptome...
Assimilation of sulfur is vital to all organisms. In S. cerevisiae, inorganic sulfate is first reduc...
Assimilation of sulfur is vital to all organisms. In S. cerevisiae, inorganic sulfate is first reduc...
Assimilation of sulfur is vital to all organisms. In S. cerevisiae, inorganic sulfate is first reduc...
Assimilation of sulfur is vital to all organisms. In S. cerevisiae, inorganic sulfate is first reduc...