Zobrazeno 1 - 10
of 12
pro vyhledávání: '"Herman Jan Pel"'
Publikováno v:
Bioresource technology. 320
Two-stage pretreatment conditions were optimized to convert corn fiber, separated from whole stillage in a corn dry grind ethanol plant, to fermentable sugars via hydrolysis. Liquid hot water pretreatment (25% solids) at 180 °C for 10 min, followed
Autor:
Mirjam A. Kabel, Herman Jan Pel, Harry Gruppen, Maaike M. Appeldoorn, Thibaut M.B. Mouthier, Henk A. Schols
Publikováno v:
Industrial Crops and Products, 121, 160-168
Industrial Crops and Products 121 (2018)
Industrial Crops and Products 121 (2018)
In this study, two acid catalysts, acetic acid (HAc) and sulfuric acid (H2SO4), were compared in thermal pretreatments of corn stover, in particular to assess the less understood fate of lignin. HAc-insoluble lignin, analyzed by pyrolysis GC–MS, sh
Autor:
M. Meijer, Herman Jan Pel, Jasmyn Pangilinan, Jette Thykaer, Gerhard H. Braus, Scott E. Baker, Rob Samson, Jens Christian Frisvad, Kristian Fog Nielsen, Erika Lindquist, Susanna A. Braus-Stromeyer, Margarita Salazar, Peter J. I. van de Vondervoort, Peter J. Schaap, Michael Lynge Nielsen, Diego Martinez, Susan Lisette Meijer, Johannes Maarten Van Den Brink, Jakob Blæsbjerg Nielsen, Johannes Andries Roubos, Hein Stam, Jon K. Magnuson, Noël Nicolaas Maria Elisabeth Van Peij, Lars Kongsbak Poulsen, Adrian Tsang, Alex Atkins, Asaf Salamov, Ziyu Dai, Jane Grimwood, Harris Shapiro, Igor V. Grigoriev, Piet W.M. van Dijck, Susan Lucas, Andrea Aerts, Luis M. Corrochano, Hildegard Henna Menke, Albert J. J. van Ooyen, David E. Culley, Gerald Hofmann, Mikael Rørdam Andersen, Randy M. Berka, Jens Nielsen, Linda L. Lasure, Yigong Lou, Kaj Albermann, Christian P. Kubicek, Richard Albang
Publikováno v:
Genome Research 21 (2011) 6
idUS. Depósito de Investigación de la Universidad de Sevilla
instname
Genome Research, 21(6), 885-897. Cold Spring Harbor Laboratory Press
Genome Research, 21(6), 885-897
idUS. Depósito de Investigación de la Universidad de Sevilla
instname
Genome Research, 21(6), 885-897. Cold Spring Harbor Laboratory Press
Genome Research, 21(6), 885-897
The filamentous fungus Aspergillus niger exhibits great diversity in its phenotype. It is found globally, both as marine and terrestrial strains, produces both organic acids and hydrolytic enzymes in high amounts, and some isolates exhibit pathogenic
Autor:
Jaap Visser, Noël Nicolaas Maria Elisabeth Van Peij, Herman Jan Pel, Arthur F. J. Ram, Peter J. I. van de Vondervoort, Sandra M. J. Langeveld, Cees A. M. J. J. van den Hondel
Publikováno v:
Current Genetics
Genetic recombination is an important tool in strain breeding in many organisms. We studied the possibilities of mitotic recombination in strain breeding of the asexual fungus Aspergillus niger. By identifying genes that complemented mapped auxotroph
Autor:
Marc J. E. C. van der Maarel, Marco A. van den Berg, Steven Geysens, Etienne Danchin, Rachel M. van der Kaaij, Hein Stam, Jibin Sun, Kaj Albermann, Maurien M.A. Olsthoorn, Arnold J. M. Driessen, Frans M. Klis, Monika Schmoll, Gerald Hofmann, K. Pal, Thomas Guillemette, Bernard Henrissat, Johannes H. de Winde, David B. Archer, Coenie Goosen, Pedro M. Coutinho, Richard Albang, Michael Cornell, Jens Nielsen, Johannes Andries Roubos, Harrie J. Kools, Peter J.J. Van De Vondervoort, Cornelis Maria Jacobus Sagt, Noël Nicolaas Maria Elisabeth Van Peij, Jannick Dyrløv Bendtsen, Alard Van Dijk, Marga Herweijer, Martin Mortimer, Ursula Rinas, An-Ping Zeng, Roland Contreras, Holger Wedler, Stephen G. Oliver, Cees A. M. J. J. van den Hondel, David W. Ussery, Gert S.P. Groot, Jaap Visser, Mikael Rørdam Andersen, Arthur F. J. Ram, Hildegard Henna Menke, René T. J. M. van der Heijden, Paul S. Dyer, Piet W. J. de Groot, Han A. B. Wösten, Alfons J. M. Debets, Jacques A.E. Benen, János Varga, Lubbert Dijkhuizen, Christian P. Kubicek, Peter J. T. Dekker, Albert J. J. van Ooyen, Johannes Petrus Theodorus Wilhelmus Van Den Hombergh, Ronald P. de Vries, Rogier Meulenberg, Jürgen Lauber, Mark X. Caddick, Geoffrey Turner, Xin Lu, Patricia Ann van Kuyk, Wouter Vervecken, Peter J. Schaap, Piet W.M. van Dijck, Stefaan Breestraat, Herman Jan Pel, Christophe d'Enfert
Publikováno v:
Nature Biotechnology, 25(2), 221-231
Nature Biotechnology
Nature Biotechnology, Nature Publishing Group, 2007, 25 (2), pp.221-231. ⟨10.1038/nbt1282⟩
Nature Biotechnology, 25(2), 221-231. Nature Publishing Group
Nature Biotechnology, 2007, 25 (2), pp.221-231. ⟨10.1038/nbt1282⟩
Nature Biotechnology 25 (2007)
Nature Biotechnology, 25, 221-31
Nature Biotechnology, 25, 2, pp. 221-31
Nature Biotechnology, 25, 221-231
Nature Biotechnology, 25(2), 221. Nature Publishing Group
Technical University of Denmark Orbit
Nature Biotechnology
Nature Biotechnology, Nature Publishing Group, 2007, 25 (2), pp.221-231. ⟨10.1038/nbt1282⟩
Nature Biotechnology, 25(2), 221-231. Nature Publishing Group
Nature Biotechnology, 2007, 25 (2), pp.221-231. ⟨10.1038/nbt1282⟩
Nature Biotechnology 25 (2007)
Nature Biotechnology, 25, 221-31
Nature Biotechnology, 25, 2, pp. 221-31
Nature Biotechnology, 25, 221-231
Nature Biotechnology, 25(2), 221. Nature Publishing Group
Technical University of Denmark Orbit
Contains fulltext : 51722.pdf (Publisher’s version ) (Closed access) The filamentous fungus Aspergillus niger is widely exploited by the fermentation industry for the production of enzymes and organic acids, particularly citric acid. We sequenced t
Autor:
Herman Jan Pel, Lousie L. Major, Warren P. Tate, Daniel N. Wilson, Mark E. Dalphin, John B. Mansell
Publikováno v:
The Ribosome
Termination is beginning to resemble a typical translation mechanism with parallels to other phases of protein synthesis. Concepts such as structural mimicry between the complexes formed at each stage of protein synthesis emphasize this change in per
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_________::6e8132f76dc6f09a0fdc58e1b0241a03
https://doi.org/10.1128/9781555818142.ch40
https://doi.org/10.1128/9781555818142.ch40
Autor:
Johannes Andries Roubos, Liang Wu, Bastiaan A. van den Berg, Marcel J. T. Reinders, Herman Jan Pel, Marc Hulsman, Dick de Ridder
Publikováno v:
PLoS ONE, Vol 7, Iss 10, p e45869 (2012)
PLoS ONE
PLoS ONE, 7 (10), 2012
PLoS ONE
PLoS ONE, 7 (10), 2012
Protein sequence features are explored in relation to the production of over-expressed extracellular proteins by fungi. Knowledge on features influencing protein production and secretion could be employed to improve enzyme production levels in indust
Autor:
Marcel J. T. Reinders, Herman Jan Pel, Bastiaan A. van den Berg, Dick de Ridder, Jurgen F. Nijkamp, Liang Wu, Johannes Andries Roubos
Publikováno v:
Pattern Recognition in Bioinformatics ISBN: 9783642160004
PRIB
PRIB
The cell-factory A spergillus niger is widely used for industrial enzyme production. To select potential proteins for large-scale production, we developed a sequence-based classifier that predicts if an over-expressed homologous protein will successf
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_________::e123ee560f7f2a16ef84ea7d30c5b31b
https://doi.org/10.1007/978-3-642-16001-1_1
https://doi.org/10.1007/978-3-642-16001-1_1
Autor:
Arie J. Verkleij, Hein Stam, Marc S. Roelofs, Stefaan Breestraat, Denise Ilse Jacobs, Noël Nicolaas Maria Elisabeth Van Peij, Arthur F. J. Ram, Rolf Kooistra, Thomas Lapointe, Marcel W. E. M. van Tilborg, Maurien M.A. Olsthoorn, Herman Jan Pel, Johannes Andries Roubos, Rob van der Hoeven, Cees A. M. J. J. van den Hondel, Marijke Misset, Cornelis Maria Jacobus Sagt, Sabrina Rodriguez, Michiel Akeroyd, Rogier Meulenberg, Wally H. Müller, Serge Petrus Donkers, Hildegard Henna Menke, Isabelle Maillet
Publikováno v:
Fungal genetics and biology : FGB. 46
The filamentous fungus Aspergillus niger is widely exploited for industrial production of enzymes and organic acids. An integrated genomics approach was developed to determine cellular responses of A. niger to protein production in well-controlled fe
Autor:
Marjan E. Askarian-Amiri, Elizabeth S. Poole, Kim K. McCaughan, Diane Guévremont, Vicki G. Sumpter, Herman Jan Pel, Warren P. Tate
Publikováno v:
ResearcherID
The yeast Saccharomyces cerevisiae mitochondrial release factor was expressed from the cloned MRF1 gene, purified from inclusion bodies, and refolded to give functional activity. The gene encoded a factor with release activity that recognized cognate