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Open AccessJournal ArticleDOI

Genome sequencing and analysis of the versatile cell factory Aspergillus niger CBS 513.88

Herman Jan Pel, +70 more
- 01 Feb 2007 - 
- Vol. 25, Iss: 2, pp 221-231
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TLDR
The filamentous fungus Aspergillus niger is widely exploited by the fermentation industry for the production of enzymes and organic acids, particularly citric acid, and the sequenced genome revealed a large number of major facilitator superfamily transporters and fungal zinc binuclear cluster transcription factors.
Abstract
The filamentous fungus Aspergillus niger is widely exploited by the fermentation industry for the production of enzymes and organic acids, particularly citric acid. We sequenced the 33.9-megabase genome of A. niger CBS 513.88, the ancestor of currently used enzyme production strains. A high level of synteny was observed with other aspergilli sequenced. Strong function predictions were made for 6,506 of the 14,165 open reading frames identified. A detailed description of the components of the protein secretion pathway was made and striking differences in the hydrolytic enzyme spectra of aspergilli were observed. A reconstructed metabolic network comprising 1,069 unique reactions illustrates the versatile metabolism of A. niger. Noteworthy is the large number of major facilitator superfamily transporters and fungal zinc binuclear cluster transcription factors, and the presence of putative gene clusters for fumonisin and ochratoxin A synthesis.

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Citations
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Systems biology studies of Aspergilli - from sequence to science

TL;DR: The versatility of a systems biology approach to understanding Aspergillus physiology has been demonstrated through a number of studies with results relevant to biotechnological processes.
Book ChapterDOI

Targeting Ochratoxin Biosynthetic Genes.

TL;DR: A conventional PCR method developed for the detection of OTA-producing molds belonging to Penicillium and Aspergillus genera by Luque et al. is described and its functionality in naturally infected samples was also demonstrated.
Book ChapterDOI

Understanding the Diversity of Aspergillus by Next-Generation Sequencing

TL;DR: There are some initial improvements in the Aspergillus diversity assessments by NGSTs, which speedup the sequencing and also save time, which has enormous potential to further the understanding of microbial biodiversity.
Book ChapterDOI

Molecular Evolution of Aspergillus

TL;DR: Use of gene sequence such as ITS, β-tubulin, and calmodulin genes has allowed us to identify Aspergillus species and identify clusters related with secondary metabolites, and establish gene location.
Book ChapterDOI

Fermentative Production of Secondary Metabolites from Bioengineered Fungal Species and Their Applications

TL;DR: This chapter encompasses outline of solid-state fermentation (SSF) and submerged fermentation (SmF), several secondary metabolites reported from various native and bioengineered fungal strains, and challenges in production of those metabolites through submerged and solid- state fermentation techniques.
References
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Journal ArticleDOI

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TL;DR: A new approach to rapid sequence comparison, basic local alignment search tool (BLAST), directly approximates alignments that optimize a measure of local similarity, the maximal segment pair (MSP) score.
Journal ArticleDOI

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TL;DR: An overview of the statistical methods, computational tools, and visual exploration modules for data input and the results obtainable in MEGA is provided.
Journal ArticleDOI

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TL;DR: TREE-PUZZLE is a program package for quartet-based maximum-likelihood phylogenetic analysis that provides methods for reconstruction, comparison, and testing of trees and models on DNA as well as protein sequences to reduce waiting time for larger datasets.
Journal ArticleDOI

Functional and Genomic Analyses Reveal an Essential Coordination between the Unfolded Protein Response and ER-Associated Degradation

TL;DR: The unfolded protein response and ERAD are dynamic responses required for the coordinated disposal of misfolded proteins even in the absence of acute stress.
Journal ArticleDOI

ER stress and the unfolded protein response.

TL;DR: A model in which the activity of UPR signaling pathways reflects the biosynthetic activity of the ER is proposed, which shows that this information is integrated into control of cellular events, which were previously not considered to be under control of ER signaling pathways.
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