The Model Filamentous Fungus Neurospora crassa: Progress Toward a Systems Understanding of Plant Cell Wall Deconstruction
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Publisher
Springer Singapore
Link
http://link.springer.com/content/pdf/10.1007/978-981-13-0749-2_6
Reference142 articles.
1. Adney WS, Jeoh T, Beckham GT, Chou YC, Baker JO, Michener W, Brunecky R, Himmel ME (2009) Probing the role of N-linked glycans in the stability and activity of fungal cellobiohydrolases by mutational analysis. Cellulose 16(4):699–709. https://doi.org/10.1007/s10570-009-9305-1
2. Agger JW, Isaksen T, Várnai A, Vidalmelgosa S, Willats WG, Ludwig R, Horn SJ, Eijsink VG, Westereng B (2014) Discovery of LPMO activity on hemicelluloses shows the importance of oxidative processes in plant cell wall degradation. Proc Natl Acad Sci U S A 111(17):6287–6292
3. Allgaier S, Taylor RD, Brudnaya Y, Jacobson DJ, Cambareri E, Stuart WD (2009) Vaccine production in Neurospora crassa. Biologicals 37(3):128–132
4. Alvarez-Loayza P, White JF Jr, Torres MS, Balslev H, Kristiansen T, Svenning J-C, Gil N (2011) Light converts endosymbiotic fungus to pathogen, influencing seedling survival and niche-space filling of a common tropical tree, Iriartea deltoidea. PLoS One 6(1):e16386. https://doi.org/10.1371/journal.pone.0016386
5. Aranzazu CO, Estela Q-CR, Ernesto OS, Jorge FM (2015) Erratum to: cloning and expression of a hypothetical Loosenin from Neurospora crassa. Revista Latinoamericana De Biotecnologia Ambiental Y Algal 4(1):1–7. https://doi.org/10.7603/s40682-013-0001-3
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