Joseph Schacherer, PhS

Affiliations: 
University of Strasbourg, Strasbourg, Grand Est, France 
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"Joseph Schacherer"
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Parents

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Leonid Kruglyak post-doc 2005-2007 Princeton (FlyTree)

Collaborators

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Gilles 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
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