Joseph Schacherer, PhS
Affiliations: | University of Strasbourg, Strasbourg, Grand Est, France |
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"Joseph Schacherer"Mean distance: 13.86 | S | N | B | C | P |
Collaborators
Sign in to add collaboratorGilles Fischer | collaborator | (Evolution Tree) | |
Gianni Liti | collaborator | (Evolution Tree) |
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Publications
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Dutta A, Dutreux F, Garin M, et al. (2024) Multiple independent losses of crossover interference during yeast evolutionary history. Plos Genetics. 20: e1011426 |
Caudal É, Loegler V, Dutreux F, et al. (2024) Pan-transcriptome reveals a large accessory genome contribution to gene expression variation in yeast. Nature Genetics |
Muenzner J, Trébulle P, Agostini F, et al. (2024) Natural proteome diversity links aneuploidy tolerance to protein turnover. Nature |
Teyssonnière EM, Trébulle P, Muenzner J, et al. (2024) Species-wide quantitative transcriptomes and proteomes reveal distinct genetic control of gene expression variation in yeast. Proceedings of the National Academy of Sciences of the United States of America. 121: e2319211121 |
Legrand S, Saifudeen A, Bordelet H, et al. (2024) Absence of chromosome axis protein recruitment prevents meiotic recombination chromosome-wide in the budding yeast . Proceedings of the National Academy of Sciences of the United States of America. 121: e2312820121 |
Tsouris A, Brach G, Friedrich A, et al. (2024) Diallel panel reveals a significant impact of low-frequency genetic variants on gene expression variation in yeast. Molecular Systems Biology |
Teyssonniere EM, Shichino Y, Mito M, et al. (2024) Translation variation across genetic backgrounds reveals a post-transcriptional buffering signature in yeast. Nucleic Acids Research |
Avecilla G, Spealman P, Matthews J, et al. (2023) Copy number variation alters local and global mutational tolerance. Genome Research |
Tsouris A, Brach G, Schacherer J, et al. (2023) Non-additive genetic components contribute significantly to population-wide gene expression variation. Biorxiv : the Preprint Server For Biology |
O'Donnell S, Yue JX, Saada OA, et al. (2023) Telomere-to-telomere assemblies of 142 strains characterize the genome structural landscape in Saccharomyces cerevisiae. Nature Genetics |