نتایج جستجو برای: piromyces rhizinflata

تعداد نتایج: 81  

2011
Jane Usher Victor Balderas-Hernandez Peter Quon Nicholas D. Gold Vincent J. J. Martin Radhakrishnan Mahadevan Kristin Baetz

Though highly efficient at fermenting hexose sugars, Saccharomyces cerevisiae has limited ability to ferment five-carbon sugars. As a significant portion of sugars found in cellulosic biomass is the five-carbon sugar xylose, S. cerevisiae must be engineered to metabolize pentose sugars, commonly by the addition of exogenous genes from xylose fermenting fungi. However, these recombinant strains ...

2016
Filip Mollerup Emma Master

Herein, we report the extracellular expression of carbohydrate active fusion enzymes in Pichia pastoris. Particularly, CBM29-1-2 from Piromyces equi was separately fused to the N- and C-terminus of galactose 6-oxidase (GaO, D-galactose: oxygen 6-oxidoreductase, EC 1.1.13.9, CAZy family AA5) from Fusarium graminearum, generating CBM29-GaO and GaO-CBM29, respectively. P. pastoris was transformed ...

2017
Maarten D. Verhoeven Misun Lee Lycka Kamoen Marcel van den Broek Dick B. Janssen Jean-Marc G. Daran Antonius J. A. van Maris Jack T. Pronk

Combined overexpression of xylulokinase, pentose-phosphate-pathway enzymes and a heterologous xylose isomerase (XI) is required but insufficient for anaerobic growth of Saccharomyces cerevisiae on d-xylose. Single-step Cas9-assisted implementation of these modifications yielded a yeast strain expressing Piromyces XI that showed fast aerobic growth on d-xylose. However, anaerobic growth required...

2013
Liuyang Diao Yingmiao Liu Fenghui Qian Junjie Yang Yu Jiang Sheng Yang

BACKGROUND It remains a challenge for recombinant S. cerevisiae to convert xylose in lignocellulosic biomass hydrolysates to ethanol. Although industrial diploid strains are more robust compared to laboratory haploid strains, however, industrial diploid S. cerevisiae strains have been less pursued in previous studies. This work aims to construct fast xylose-fermenting yeast using an industrial ...

Journal: :Applied and environmental microbiology 2012
Sun-Mi Lee Taylor Jellison Hal S Alper

The heterologous expression of a highly functional xylose isomerase pathway in Saccharomyces cerevisiae would have significant advantages for ethanol yield, since the pathway bypasses cofactor requirements found in the traditionally used oxidoreductase pathways. However, nearly all reported xylose isomerase-based pathways in S. cerevisiae suffer from poor ethanol productivity, low xylose consum...

Journal: :The Journal of biological chemistry 2001
A C Freelove D N Bolam P White G P Hazlewood H J Gilbert

The recycling of photosynthetically fixed carbon by the action of microbial plant cell wall hydrolases is a fundamental biological process that is integral to one of the major geochemical cycles and, in addition, has considerable industrial potential. Enzyme systems that attack the plant cell wall contain noncatalytic carbohydrate-binding modules (CBMs) that mediate attachment to this composite...

Journal: :Canadian journal of microbiology 2005
Eduardo A Ximenes Huizhong Chen Irina A Kataeva Michael A Cotta Carlos R Felix Lars G Ljungdahl Xin-Liang Li

The anaerobic fungus Orpinomyces sp. strain PC-2 produces a broad spectrum of glycoside hydrolases, most of which are components of a high molecular mass cellulosomal complex. Here we report about a cDNA (manA) having 1924 bp isolated from the fungus and found to encode a polypeptide of 579 amino acid residues. Analysis of the deduced sequence revealed that it had a mannanase catalytic module, ...

2013
Yan Fen Cheng Wei Jin Sheng Yong Mao Wei-Yun Zhu

The metabolomic profile of the anaerobic fungus Piromyces sp. F1, isolated from the rumen of goats, and how this is affected by the presence of naturally associated methanogens, was analyzed by nuclear magnetic resonance spectroscopy. The major metabolites in the fungal monoculture were formate, lactate, ethanol, acetate, succinate, sugars/amino acids and α-ketoglutarate, whereas the co-culture...

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