An approach based on Gateway recombination technology to efficiently construct silencing vectors was developed for use in the biotechnologically important fungus Aspergillus niger. The transcription activator of xylanolytic and cellulolytic genes XlnR of A. niger was chosen as target for gene silencing. Silencing was based on the expression vector pXLNRir that was constructed and used in co-transformation. From all the strains isolated (N = 77), nine showed poor xylan-degrading activities in two semi-quantitative plate assays testing different activities for xylan degradation. Upon induction on D-xylose, transcript levels of xlnR were decreased in the xlnR-silenced strains, compared to a wild-type background. Under these conditions, the tra...
The filamentous fungus Aspergillus niger is widely used in the biotechnology industry for the produc...
Abstract Aspergillus niger, as an important industrial strain, is widely used in the production of a...
In this article, we present a method to delete genes in filamentous fungi that allows recycling of t...
An approach based on Gateway recombination technology to efficiently construct silencing vectors was...
By deletion across the promoter region of the xynF1 gene encoding the major Aspergillus oryzae xylan...
By deletion across the promoter region of the xynF1 gene encoding the major Aspergillus oryzae xylan...
Filamentous fungi, such as Aspergillus niger , produce high levels of polysaccharide degrading enzym...
Filamentous fungi, such as Aspergillus niger , produce high levels of polysaccharide degrading enzym...
The analysis of individual gene product should enable to clarify the role of a particular enzyme in ...
International audienceWe recently developed a silencing vector in Aspergillus fumigatus which carrie...
Background: Engineered fungi are attractive platforms for the production of plant cell wall hydrolyt...
Glycosylhydrolases like cellulases and xylanases are of great importance for the ecological recyclin...
Glycosylhydrolases like cellulases and xylanases are of great importance for the ecological recyclin...
In Aspergillus</span><st1:country-region><st1:place><span class=GramE><span lang=EN-GB style='font-s...
The filamentous fungus Aspergillus niger is widely exploited by the fermentation industry for the pr...
The filamentous fungus Aspergillus niger is widely used in the biotechnology industry for the produc...
Abstract Aspergillus niger, as an important industrial strain, is widely used in the production of a...
In this article, we present a method to delete genes in filamentous fungi that allows recycling of t...
An approach based on Gateway recombination technology to efficiently construct silencing vectors was...
By deletion across the promoter region of the xynF1 gene encoding the major Aspergillus oryzae xylan...
By deletion across the promoter region of the xynF1 gene encoding the major Aspergillus oryzae xylan...
Filamentous fungi, such as Aspergillus niger , produce high levels of polysaccharide degrading enzym...
Filamentous fungi, such as Aspergillus niger , produce high levels of polysaccharide degrading enzym...
The analysis of individual gene product should enable to clarify the role of a particular enzyme in ...
International audienceWe recently developed a silencing vector in Aspergillus fumigatus which carrie...
Background: Engineered fungi are attractive platforms for the production of plant cell wall hydrolyt...
Glycosylhydrolases like cellulases and xylanases are of great importance for the ecological recyclin...
Glycosylhydrolases like cellulases and xylanases are of great importance for the ecological recyclin...
In Aspergillus</span><st1:country-region><st1:place><span class=GramE><span lang=EN-GB style='font-s...
The filamentous fungus Aspergillus niger is widely exploited by the fermentation industry for the pr...
The filamentous fungus Aspergillus niger is widely used in the biotechnology industry for the produc...
Abstract Aspergillus niger, as an important industrial strain, is widely used in the production of a...
In this article, we present a method to delete genes in filamentous fungi that allows recycling of t...