Metabolomics,Unknown,Transcriptomics,Genomics,Proteomics

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Aspergillus nidulans strains TNO2a3, M-bM-^HM-^FsnfA and M-bM-^HM-^FschA grown on avicel as sole carbon source


ABSTRACT: Transcriptome of A. nidulans TNO2a3, M-bM-^HM-^FsnfA and M-bM-^HM-^FschA strains when grown on complete media (CM) and transferred to minimal media plus avicel as a sole carbon source for 8 and 24 hours. Three conditions: complete media (reference) for 24h, and minimal media plus avicel for 8 and 24 hours. Three strains: TNO2a3, M-bM-^HM-^FsnfA and M-bM-^HM-^FschA. Three biological repetitions of each timepoint of TNO2a3 and M-bM-^HM-^FschA, and two for each timepoint of M-bM-^HM-^FsnfA.

ORGANISM(S): Emericella nidulans

SUBMITTER: Neil Brown 

PROVIDER: E-GEOD-47810 | biostudies-arrayexpress |

REPOSITORIES: biostudies-arrayexpress

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Publications

Functional characterisation of the non-essential protein kinases and phosphatases regulating Aspergillus nidulans hydrolytic enzyme production.

Brown Neil Andrew NA   de Gouvea Paula Fagundes PF   Krohn Nádia Graciele NG   Savoldi Marcela M   Goldman Gustavo Henrique GH  

Biotechnology for biofuels 20130625 1


<h4>Background</h4>Despite recent advances in the understanding of lignocellulolytic enzyme regulation, less is known about how different carbon sources are sensed and the signaling cascades that result in the adaptation of cellular metabolism and hydrolase secretion. Therefore, the role played by non-essential protein kinases (NPK) and phosphatases (NPP) in the sensing of carbon and/or energetic status was investigated in the model filamentous fungus Aspergillus nidulans.<h4>Results</h4>Eleven  ...[more]

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