Camille Rustenholz
University of Strasbourg
8 Papers
17 Citations
Camille Rustenholz is an academic researcher from University of Strasbourg. The author has contributed to research in topics: Gene & Biology. The author has an hindex of 5, co-authored 8 publications.
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Papers
Oak genome reveals facets of long lifespan.
Christophe Plomion,Jean-Marc Aury,Joelle Amselem,Thibault Leroy,Florent Murat,Sébastien Duplessis,Sébastien Faye,Nicolas Francillonne,Karine Labadie,Grégoire Le Provost,Isabelle Lesur,Jérôme Bartholomé,Patricia Faivre-Rampant,Annegret Kohler,Jean-Charles Leplé,Nathalie Chantret,Jun Chen,Anne Dievart,Tina Alaeitabar,Valérie Barbe,Caroline Belser,Hélène Bergès,Catherine Bodénès,Marie-Béatrice Bogeat-Triboulot,Marie-Lara Bouffaud,Benjamin Brachi,Emilie Chancerel,David Cohen,Arnaud Couloux,Corinne Da Silva,Carole Dossat,François Ehrenmann,Christine Gaspin,Jacqueline Grima-Pettenati,Erwan Guichoux,Arnaud Hecker,Sylvie Herrmann,Philippe Hugueney,Irène Hummel,Christophe Klopp,Céline Lalanne,Martin Lascoux,Eric Lasserre,Arnaud Lemainque,Marie-Laure Desprez-Loustau,Isabelle Luyten,Mohammed-Amin Madoui,Sophie Mangenot,Clemence Marchal,Florian Maumus,Jonathan Mercier,Célia Michotey,Olivier Panaud,Nathalie Picault,Nicolas Rouhier,Olivier Rué,Camille Rustenholz,Franck Salin,Marçal Soler,Marçal Soler,Mika T. Tarkka,Amandine Velt,Amy E. Zanne,Francis Martin,Patrick Wincker,Hadi Quesneville,Antoine Kremer,Jérôme Salse +67 more
TL;DR: Through this case study of oak, the accumulation and transmission of somatic mutations and the expansion of disease-resistance gene families in trees are demonstrated.
Alternative splicing regulation appears to play a crucial role in grape berry development and is also potentially involved in adaptation responses to the environment.
Pascale Maillot,Pascale Maillot,Amandine Velt,Camille Rustenholz,Gisèle Butterlin,Didier Merdinoglu,Eric Duchêne +6 more
TL;DR: In this article, the authors report on the regulation of gene AS in developing berries of two grapevine (Vitis vinifera L.) varieties, Gewurztraminer (Gw) and Riesling (Ri), showing distinctive phenotypic characteristics.
Plant apocarotenoid metabolism utilizes defense mechanisms against reactive carbonyl species and xenobiotics.
Julian Koschmieder,Florian Wüst,Patrick Schaub,Daniel Álvarez,Danika Trautmann,Danika Trautmann,Markus Krischke,Camille Rustenholz,Junichi Mano,Martin J. Mueller,Dorothea Bartels,Philippe Hugueney,Peter Beyer,Ralf Welsch +13 more
TL;DR: In this article, the authors characterized the transcriptome of transgenic Arabidopsis (Arabidopsis thaliana) roots accumulating high levels of β-carotene and consequently β-apocarotenoids.
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Annotation, classification, genomic organization and expression of the Vitis vinifera CYPome.
Tina Ilc,Gautier Arista,Raquel Tavares,Nicolas Navrot,Eric Duchêne,Amandine Velt,Frédéric Choulet,Etienne Paux,Marc J. C. Fischer,David R. Nelson,Philippe Hugueney,Danièle Werck-Reichhart,Camille Rustenholz +12 more
TL;DR: This work provides an exhaustive and robust annotation including clear identification, structural organization, evolutionary dynamics and expression patterns for the grapevine cytochrome P450 families, paving the way to efficient functional characterization of genes involved in grapevine defense pathways and aroma biosynthesis.
Severe Stunting Symptoms upon Nepovirus Infection Are Reminiscent of a Chronic Hypersensitive-like Response in a Perennial Woody Fruit Crop.
Isabelle R. Martin,Emmanuelle Vigne,Amandine Velt,Jean-Michel Hily,Shahinez Garcia,Raymonde Baltenweck,Véronique Komar,Camille Rustenholz,Philippe Hugueney,Olivier Lemaire,Corinne Schmitt-Keichinger +10 more
TL;DR: In this article, the authors found that grapevine fanleaf virus induces a strain and cultivar-specific defense reaction similar to a hypersensitive reaction, which leads to a severe stunting phenotype in some grapevines, whereas others are resistant.