نتایج جستجو برای: trichoderma reesei

تعداد نتایج: 6165  

Journal: :Eukaryotic cell 2011
Benjamin Metz Verena Seidl-Seiboth Thomas Haarmann Alexeij Kopchinskiy Patrick Lorenz Bernhard Seiboth Christian P Kubicek

The conidium plays a critical role in the life cycle of many filamentous fungi, being the primary means for survival under unfavorable conditions. To investigate the transcriptional changes taking place during the transition from growing hyphae to conidia in Trichoderma reesei, microarray experiments were performed. A total of 900 distinct genes were classified as differentially expressed, rela...

2016
Christopher P. Landowski Eero Mustalahti Ramon Wahl Laurence Croute Dhinakaran Sivasiddarthan Ann Westerholm-Parvinen Benjamin Sommer Christian Ostermeier Bernhard Helk Juhani Saarinen Markku Saloheimo

BACKGROUND The filamentous fungus Trichoderma reesei has tremendous capability to secrete over 100 g/L of proteins and therefore it would make an excellent host system for production of high levels of therapeutic proteins at low cost. We have developed T. reesei strains suitable for production of therapeutic proteins by reducing the secreted protease activity. Protease activity has been the maj...

2015
Mari Häkkinen Dhinakaran Sivasiddarthan Nina Aro Markku Saloheimo Tiina M Pakula

BACKGROUND Extracellular pH is one of the several environmental factors affecting protein production by filamentous fungi. Regulatory mechanisms ensure that extracellular enzymes are produced under pH-conditions in which the enzymes are active. In filamentous fungi, the transcriptional regulation in different ambient pH has been studied especially in Aspergilli, whereas the effects of pH in the...

Journal: :FEBS letters 1995
J Strauss R L Mach S Zeilinger G Hartler G Stöffler M Wolschek C P Kubicek

In order to investigate the mechanism of carbon catabolite repression in the industrially important fungus Trichoderma reesei, degenerated PCR-primers were designed to amplify a 0.7-bp fragment of the cre1 gene, which was used to clone the entire gene. It encodes a 402-amino acid protein with a calculated M(r) of 43.6 kDa. Its aa-sequence shows 55.6% and 54.7% overall similarity to the correspo...

2017
Simo Ellilä Lucas Fonseca Cristiane Uchima Junio Cota Gustavo Henrique Goldman Markku Saloheimo Vera Sacon Matti Siika-Aho

BACKGROUND During the past few years, the first industrial-scale cellulosic ethanol plants have been inaugurated. Although the performance of the commercial cellulase enzymes used in this process has greatly improved over the past decade, cellulases still represent a very significant operational cost. Depending on the region, transport of cellulases from a central production facility to a biore...

2017
Su Ma Marita Preims François Piumi Lisa Kappel Bernhard Seiboth Eric Record Daniel Kracher Roland Ludwig

BACKGROUND Cellobiose dehydrogenase (CDH) is an extracellular enzyme produced by lignocellulolytic fungi. cdh gene expression is high in cellulose containing media, but relatively low CDH concentrations are found in the supernatant of fungal cultures due to strong binding to cellulose. Therefore, heterologous expression of CDH in Pichia pastoris was employed in the last 15 years, but the obtain...

2012
Gen Zou Shaohua Shi Yanping Jiang Joost van den Brink Ronald P de Vries Ling Chen Jun Zhang Liang Ma Chengshu Wang Zhihua Zhou

BACKGROUND Trichoderma reesei is the preferred organism for producing industrial cellulases. However, a more efficient heterologous expression system for enzymes from different organism is needed to further improve its cellulase mixture. The strong cbh1 promoter of T. reesei is frequently used in heterologous expression, however, the carbon catabolite repressor CREI may reduce its strength by b...

2017
Christian Derntl Fernando Guzmán-Chávez Thiago M. Mello-de-Sousa Hans-Jürgen Busse Arnold J. M. Driessen Robert L. Mach Astrid R. Mach-Aigner

Sorbicillinoids are a diverse group of yellow secondary metabolites that are produced by a range of not closely related ascomycetes, including Penicillium chrysogenum, Acremonium chrysogenum, and Trichoderma reesei. They share a similarity to the name-giving compound sorbicillin, a hexaketide. Previously, a conserved gene cluster containing two polyketide synthases has been identified as the so...

Journal: :Frontiers in Bioengineering and Biotechnology 2018

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