Coprinopsis cinerea

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Coprinopsis cinerea

Figure 1. Mature Coprinopsis cinerea mushrooms fruiting in a deep Petri dish. (Photo courtesy of Hajime Muraguchi.) What is Coprinopsis cinerea? Coprinopsis cinerea is a small mushroom that has attracted the attention of geneticists and cytologists — and also, apparently, taxonomists, as the species has undergone five name changes in the last 30 years, most recently from Coprinus cinereus to Co...

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Regulation of Fruiting Body Formation in Coprinopsis Cinerea

Fruiting body formation in the edible dung fungus Coprinopsis cinerea is regulated by environmental cues (nutrients, temperature, light, humidity), physiological conditions (mycelial status, age) and genetic control elements (e.g. A and B mating type genes, dst1 and dst2 genes for light regulators). Fruiting body development consists of a series of defined steps occurring in a concerted process...

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Novel Coprinopsis cinerea polyesterase that hydrolyzes cutin and suberin.

Three cutinase gene-like genes from the basidiomycete Coprinopsis cinerea (Coprinus cinereus) found with a similarity search were cloned and expressed in Trichoderma reesei under the control of an inducible cbh1 promoter. The selected transformants of all three polyesterase constructs showed activity with p-nitrophenylbutyrate, used as a model substrate. The most promising transformant of the c...

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Transglycosylation Activity of Glycosynthase Mutants of Endo-β-N-Acetylglucosaminidase from Coprinopsis cinerea

Endo-β-N-acetylglucosaminidase (ENGase), which catalyzes hydrolysis of N-linked oligosaccharides, is a useful tool for analyzing oligosaccharide contents of glycoproteins. However, there are only a few known ENGases that can catalyze the hydrolysis of human complex type oligosaccharides, and although commercially available, they are expensive. Here, we report the cloning of two ENGase encoding ...

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Production of Novel Alkali-thermo-tolerant Cellulase-poor Xylanases from Coprinopsis Cinerea Hk-1 Nfcci-2032

Culture conditions of a newly isolated basidiomycetous strain were optimized for the enhanced production of extracellular alkali-thermotolerant cellulase-poor xylanase using wheat bran as the sole carbon source under solid state fermentation (SSF). SEM and ITS sequencing confirmed it as Coprinopsis cinerea HK-1 NFCCI-2032. Among various inexpensive agro-residues, wheat bran (carbon source) came...

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ژورنال

عنوان ژورنال: Current Biology

سال: 2011

ISSN: 0960-9822

DOI: 10.1016/j.cub.2011.05.042