FAO AGRIS - Sistema Internacional para la Ciencia y Tecnología Agrícola

Cellulose microfibril crystallinity is reduced by mutating C-terminal transmembrane region residues CESA1A903V and CESA3T942I of cellulose synthase

Harris, D. | Corbin, K. | Wang, T. | Gutierrez, R. | Bertolo, A. | Petti, C. | Smilgies, D.-M. | Estevez, J. | Bonetta, D. | Urbanowicz, B. | Ehrhardt, D. | Somerville, C. | Rose, J. | Hong, M. | DeBolt, S.

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Información bibliográfica
Editorial
National Academy of Sciences of the United States of America
Otras materias
Cell wall; Quinoxyphen
Idioma
Inglés
Formato
application/pdf
Licencia
The author(s) retains copyright to individual PNAS articles, and the National Academy of Sciences of the United States of America (NAS) holds copyright to the collective work and retains an exclusive License to Publish these articles, except for open access articles submitted beginning September 2017. For such open access articles, NAS retains a nonexclusive License to Publish, and these articles are distributed under either a CC BY-NC-ND or CC BY license.
ISSN
4098-4103, 0027-8424, 1091-6490
Tipo
Journal Article; Journal Part
Fuente
http://dx.doi.org/10.1073/pnas.1200352109

2024-10-18
2026-02-03
Dublin Core
Proveedor de Datos
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