Resultados da busca - Fabrice Wattebled
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Mutants of <i>Arabidopsis</i> Lacking Starch Branching Enzyme II Substitute Plastidial Starch Synthesis by Cytoplasmic Maltose Accumulation por Sylvain Dumez, Fabrice Wattebled, David Dauvillée, David Delvallé, Véronique Planchot, Steven Ball, Christophe d’Hulst
Publicado em 2006Artigo -
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Further Evidence for the Mandatory Nature of Polysaccharide Debranching for the Aggregation of Semicrystalline Starch and for Overlapping Functions of Debranching Enzymes in Arabid... por Fabrice Wattebled, Véronique Planchot, Ying Dong, Nicolas Szydlowski, Bruno Pontoire, Aline Devin, Steven Ball, Christophe d’Hulst
Publicado em 2008Artigo -
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Integrated functions among multiple starch synthases determine both amylopectin chain length and branch linkage location in Arabidopsis leaf starch por Nicolas Szydlowski, Paula Ragel, Tracie A. Hennen‐Bierwagen, Véronique Planchot, Alan M. Myers, Ángel Mérida, Christophe d’Hulst, Fabrice Wattebled
Publicado em 2011Artigo -
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The phenotype of soluble starch synthase IV defective mutants of <i>Arabidopsis thaliana</i> suggests a novel function of elongation enzymes in the control of starch granule format... por Isaac Roldán, Fabrice Wattebled, M. Mercedes Lucas, David Delvallé, Véronique Planchot, Sebastián Jiménez, Ricardo Pérez, Steven Ball, Christophe d’Hulst, Ángel Mérida
Publicado em 2007Artigo -
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PII1: a protein involved in starch initiation that determines granule number and size in Arabidopsis chloroplast por Camille Vandromme, Corentin Spriet, David Dauvillée, Adeline Courseaux, Jean‐Luc Putaux, Adeline Wychowski, Frédéric Krzewinski, Maud Facon, Christophe d’Hulst, Fabrice Wattebled
Publicado em 2018Artigo -
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Mutants of Arabidopsis Lacking a Chloroplastic Isoamylase Accumulate Phytoglycogen and an Abnormal Form of Amylopectin por Fabrice Wattebled, Ying Dong, Sylvain Dumez, David Delvallé, Véronique Planchot, Pierre Berbezy, Darshna Vyas, Paul Colonna, Manash Chatterjee, Steven Ball, Christophe d’Hulst
Publicado em 2005Artigo -
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Soluble starch synthase I: a major determinant for the synthesis of amylopectin in <i>Arabidopsis thaliana</i> leaves por David Delvallé, Sylvain Dumez, Fabrice Wattebled, Isaac Roldán, Véronique Planchot, Pierre Berbezy, Paul Colonna, Darshna Vyas, Manash Chatterjee, Steven Ball, Ángel Mérida, Christophe d’Hulst
Publicado em 2005Artigo -
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Circadian Clock Regulation of Starch Metabolism Establishes GBSSI as a Major Contributor to Amylopectin Synthesis in <i>Chlamydomonas reinhardtii</i> por Jean‐Philippe Ral, Christophe Colleoni, Fabrice Wattebled, David Dauvillée, Clément Nempont, Philippe Deschamps, Zhongyi Li, Matthew K. Morell, Ravindra N. Chibbar, Saul Purton, Christophe d’Hulst, Steven Ball
Publicado em 2006Artigo -
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Starch Division and Partitioning. A Mechanism for Granule Propagation and Maintenance in the Picophytoplanktonic Green Alga <i>Ostreococcus tauri</i> por Jean‐Philippe Ral, Évelyne Derelle, Conchita Ferraz, Fabrice Wattebled, Benoît Farinas, Florence Corellou, Alain Buléon, Marie‐Christine Slomianny, David Delvallé, Christophe d’Hulst, Stéphane Rombauts, Hervé Moreau, Steven Ball
Publicado em 2004Artigo -
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Plastidial phosphorylase is required for normal starch synthesis in <i>Chlamydomonas reinhardtii</i> por David Dauvillée, Vincent Chochois, Martin Steup, Sophie Haebel, Nora Eckermann, Gerhard Ritte, Jean‐Philippe Ral, Christophe Colleoni, Glenn R. Hicks, Fabrice Wattebled, Philippe Deschamps, Christophe d’Hulst, Luc Liénard, Laurent Cournac, Jean‐Luc Putaux, D. Dupeyre, Steven Ball
Publicado em 2006Artigo
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Assuntos relacionados
Biology
Gene
Biochemistry
Starch
Mutant
Enzyme
Amylopectin
Amylose
Arabidopsis
Starch synthase
Wild type
Chemistry
Arabidopsis thaliana
Botany
Granule (geology)
Paleontology
Amylase
Amyloplast
Chlamydomonas
Chlamydomonas reinhardtii
Chloroplast
Genome
Glycogen debranching enzyme
Glycogen phosphorylase
Isoamylase
Phenotype
Plastid
Pullulanase
ATP synthase
Algae