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

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書目名稱Gene Expression Systems in Fungi: Advancements and Applications
編輯Monika Schmoll,Christoph Dattenb?ck
視頻videohttp://file.papertrans.cn/382/381921/381921.mp4
概述We bring together articles of experienced and renowned experts and highlight diverse aspects of gene expression systems of fungi.We will cover a broad array of topics from industrial requirements to r
叢書名稱Fungal Biology
圖書封面Titlebook: Gene Expression Systems in Fungi: Advancements and Applications;  Monika Schmoll,Christoph Dattenb?ck Book 2016 Springer International Publ
描述Biotechnology has emerged as one of the key environmentally safe technologies for the future which enables use of biomass to develop novel smart materials and to replace oil derived products. Fungi are the most efficient producers of the enzymes needed for this purpose and in addition they produce a plethora of secondary metabolites, among which novel antibiotics can be found. Industrial application and exploitation of the metabolic capacities of fungi requires highly productive and robust gene expression systems, which can be achieved by selection of appropriate species and strain improvement.In this book we aim to summarize homologous and heterologous gene expression systems of fungi for production of enzymes and secondary metabolites. A broad overview on requirements, challenges and successful applications shall serve as a basis for further development of fungi as biotechnological workhorses in research and industry.
出版日期Book 2016
關(guān)鍵詞Fungal biotechnology; antibiotics; enzyme production; heterologous protein production; secondary metabol
版次1
doihttps://doi.org/10.1007/978-3-319-27951-0
isbn_softcover978-3-319-80245-9
isbn_ebook978-3-319-27951-0Series ISSN 2198-7777 Series E-ISSN 2198-7785
issn_series 2198-7777
copyrightSpringer International Publishing Switzerland 2016
The information of publication is updating

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Production of Industrial Enzymes in ,el organism for studies on cellulose degradation and its cellulase enzyme complex since the 1940s, which suggested its use for industrial bioethanol manufacturing during the oil crisis in the mid 1970s. Extensive strain development campaigns by different laboratories proved that the wild type isolat
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The Renaissance of ,: How a Classical Model System is Used for Applied Researchrge amounts of enzymes for lignocellulose deconstruction that release fermentable sugars from the plant cell walls. The most commonly used fungi for this purpose are . and several .. However, the saprophytic ascomycete . has already made undeniable contributions to fundamental science in the past, a
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Improvement of Industrially Relevant Biological Activities in Mucoromycotina Fungilent producers of lipases and proteases, organic acids, alcohol, carotenoids and polyunsaturated fatty acids. Here, we overview gene expression and metabolic engineering studies performed to improve industrially relevant activities in different Mucoromycotina fungi in the past decade. Genetic transf
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Gene Expression in Filamentous Fungi: Advantages and Disadvantages Compared to Other Systemsendogenous enzymes. While the genetic engineering tools developed for filamentous fungi expanded the use of fungi for the production of heterologous proteins, the production of recombinant proteins is often limited. Low-cost, high-throughput DNA sequencing technologies, quantitative physiology, meta
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Yeast Expression Systems for Industrial Biotechnologynt of their molecular strategies have advanced the establishment of yeast expression systems for heterologous expression in relation to the production of valuable industrial-related compounds, such as biofuels, chemicals, pharmaceuticals, enzymes and food ingredients. Concerning the complexity of th
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High-Throughput Construction of Genetically Modified Fungire economically important for industry, medicine and agriculture. As a prerequisite for functional studies, gene mutagenesis has been actively implemented and many technological advances developed. Prior to the widespread availability of genome sequences, fungal gene mutations were generated using r
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