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Titlebook: Gene Expression Systems in Fungi: Advancements and Applications; Monika Schmoll,Christoph Dattenböck Book 2016 Springer International Publ

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Understanding the Mechanism of Carbon Catabolite Repression to Increase Protein Production in Filamealvage their lignocellulolytic enzymes. . is a prominent producer of penicillin N and can also produce carbohydrate active enzymes (CAZYs). Many involved genes are under the negative control of CreA/1 and repressed by it in presence of .-glucose. Exploiting CCR for protein production means to find a
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Hybrid Infertility: The Dilemma or Opportunity of Applying Sexual Development to Improve , Industriaresulted in speciation, i.e., RUT-C30 and QM9414 are no longer the same species as QM6a and CBS999.97. Our finding is consistent with the classic chromosomal speciation model stating that chromosome rearrangements contribute to heterozygous hybrid infertility and serve as a genetic barrier between r
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ve cellulase complex, whereas advances in the development of molecular biology tools—such as bioinformatics and mating—have provided further refinements in the modern strain development of . for enzyme and other protein production in virtually all segments of industrial biotechnology.
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Dianna DaSilva-Glasgow,Dennis Pile been summarized. Expression of endogenous and exogenous terpenoid and carotenoid biosynthetic genes to enhance and modify the carotene production of . has been detailed. Finally, homologous and heterologous expression of Mucoromycotina fatty acid desaturases and elongases in fungi and plants has be
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e often considered foreign by the ascomycete production systems and therefore targets for their proteolytic systems, reducing the production yields..In this chapter we provide the state of the art of expression of basidiomycete genes involved in plant biomass degradation and the production of the co
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gnin and employ small molecular weight oxidants to rapidly depolymerize cellulose in the absence of hydrolases. Although rapid and efficient, it remains to be seen whether such non-enzymatic processes could be effectively harnessed for conversion of ‘cellulosics’. A complete understanding of lignoce
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