Genetics and Biotechnology: The Mycota, cartea 2
Editat de J. Philipp Benz, Kerstin Schipperen Limba Engleză Hardback – 29 oct 2020
With regard to these advances, the first section of this volume, Genetics, illustrates the basic genetic processes underlying inheritance, cell biology, metabolism and “lifestyles” of fungi. The second section, Biotechnology, addresses theapplied side of fungal genetics, ranging from new tools for synthetic biology to the biotechnological potential of fungi from diverse environments. Gathering chapters written by reputed scientists, the book represents an invaluable reference guide for fungal biologists, geneticists and biotechnologists alike.
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Specificații
ISBN-13: 9783030499235
ISBN-10: 3030499235
Pagini: 452
Ilustrații: XXII, 452 p. 59 illus., 42 illus. in color.
Dimensiuni: 178 x 254 x 34 mm
Greutate: 1.04 kg
Ediția:3rd ed. 2020
Editura: Springer International Publishing
Colecția Springer
Seria The Mycota
Locul publicării:Cham, Switzerland
ISBN-10: 3030499235
Pagini: 452
Ilustrații: XXII, 452 p. 59 illus., 42 illus. in color.
Dimensiuni: 178 x 254 x 34 mm
Greutate: 1.04 kg
Ediția:3rd ed. 2020
Editura: Springer International Publishing
Colecția Springer
Seria The Mycota
Locul publicării:Cham, Switzerland
Cuprins
Chromatin Structure and Function in Neurospora crassa.- Origin, function and transmission of accessory chromosomes.- Genetics of the unfolded protein response in fungi.- From genetics to molecular oscillations: the circadian clock in Neurospora crassa.- small RNAs in fungi.- NLR function in fungi as revealed by the study of self/non-self recognition systems.- Genetics and genomics decipher partner biology in arbuscular mycorrhizas.- Coordination of fungal secondary metabolism and development.- Fungal Genomics.- Filamentous fungi as hosts for heterologous production of proteins and secondary metabolites in the post-genomic era.- New Avenues towards drug discovery in fungi.- Exploiting fungal photobiology as a source of novel bio-blocks for optogenetic systems.- Yeast cell factories.- Engineering Saccharomyces cerevisiae for production of fatty acids and their derivatives.- Fungi Involved in the Biodeterioration and Bioconversion of Lignocellulose Substrates.- Biotechnology of marine fungi: New workhorses and new uses - using marine fungal diversity as a source for biotechnology.- The biotechnological potential of anaerobic gut fungi.
Recenzii
“In such a rapidly moving area of mycology, it is not surprising that there is much new to report 16 years on. While badged as a third edition, it is more a collection of in-depth review articles, many on topics which have largely emerged in the years since the second. … a particularly valuable synopsis of the current state of fungal genomics. … and an especially exciting overview of the potential of anaerobic gut fungi.” (IMA Fungus, December 31, 2021)
Notă biografică
J. Philipp Benz (born 1977) studied biology at the TU Braunschweig (2003). The research work for his thesis was done in the laboratory of Nigel Crawford at UC San Diego (CA, USA). He subsequently performed his dissertation at the LMU Munich, working in the research group of Jürgen Soll (Department of Biochemistry and Physiology of Plants) (2009). He then returned to the USA to become a postdoctoral fellow in the laboratory of Chris Somerville at the Energy Biosciences Institute (UC Berkeley, CA, USA) where he started to work on filamentous fungi. In 2014, he was appointed assistant professor for Wood Bioprocesses at the Technical University of Munich (TUM School of Life Sciences Weihenstephan, Holzforschung München). His research group is studying the processes used by filamentous fungi to degrade lignocellulosic biomass. Central questions are how fungi perceive the composition of the plant biomass on a molecular level and how they adapt their metabolism to effectively degrade the substrate.
Kerstin Schipper (born 1980) completed her studies in biology at Osnabrück University in 2005. For the research work of her Master thesis she moved to the laboratory of Heinrich Jung at LMU Munich. She then performed her dissertation and a short post-doctoral time under the supervision of Regine Kahmann at the Max Planck Institute for Terrestrial Microbiology in Marburg in the field of plant-pathogen interactions. Since 2011 she is a group leader at the Institute for Microbiology at Heinrich Heine University Düsseldorf. Her work focusses on fungal biotechnology using the basidiomycete Ustilago maydis. Her major interest is a novel unconventional protein secretion pathway and its exploitation for production of heterologous proteins.
Kerstin Schipper (born 1980) completed her studies in biology at Osnabrück University in 2005. For the research work of her Master thesis she moved to the laboratory of Heinrich Jung at LMU Munich. She then performed her dissertation and a short post-doctoral time under the supervision of Regine Kahmann at the Max Planck Institute for Terrestrial Microbiology in Marburg in the field of plant-pathogen interactions. Since 2011 she is a group leader at the Institute for Microbiology at Heinrich Heine University Düsseldorf. Her work focusses on fungal biotechnology using the basidiomycete Ustilago maydis. Her major interest is a novel unconventional protein secretion pathway and its exploitation for production of heterologous proteins.
Textul de pe ultima copertă
The Series
The fungi represent a heterogenous assemblage of eukaryotic microorganisms and have become favored organisms for research at the cellular and molecular level. Such research involvement has been stimulated by interest in the biotechnological application of fungi in processes related to industry, agriculture and ecology. Considering both yeasts and mycelial fungi, The Mycota highlights developments in both basic and applied research and presents an overview of fungal systematics and cell structure. Foremost authorities in research on mycology have been assembled to edit and contribute to the volumes.
This Volume
The first section of this volume, Genetics, illustrates the basic genetic processes underlying inheritance, cell biology, metabolism and “lifestyles” of fungi. The second section, Biotechnology, addresses the applied side of fungal genetics, ranging from new tools for synthetic biology to the biotechnological potential of fungi from diverse environments. Gathering chapters written by reputed scientists, the book represents an invaluable reference guide for fungal biologists, geneticists and biotechnologists alike.
The fungi represent a heterogenous assemblage of eukaryotic microorganisms and have become favored organisms for research at the cellular and molecular level. Such research involvement has been stimulated by interest in the biotechnological application of fungi in processes related to industry, agriculture and ecology. Considering both yeasts and mycelial fungi, The Mycota highlights developments in both basic and applied research and presents an overview of fungal systematics and cell structure. Foremost authorities in research on mycology have been assembled to edit and contribute to the volumes.
This Volume
The first section of this volume, Genetics, illustrates the basic genetic processes underlying inheritance, cell biology, metabolism and “lifestyles” of fungi. The second section, Biotechnology, addresses the applied side of fungal genetics, ranging from new tools for synthetic biology to the biotechnological potential of fungi from diverse environments. Gathering chapters written by reputed scientists, the book represents an invaluable reference guide for fungal biologists, geneticists and biotechnologists alike.
Caracteristici
New insights into the genetics of fungi underlying cellular processes and potential biotechnological applications Considers major fungal reference systems, including both yeasts and filamentous fungi Also includes novel fungi from underexplored environments (e.g., animal guts)