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Cécile Courret
Cécile Courret
在 rochester.edu 的电子邮件经过验证 - 首页
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引用次数
引用次数
年份
Meiotic drive mechanisms: lessons from Drosophila
C Courret, CH Chang, KHC Wei, C Montchamp-Moreau, AM Larracuente
Proceedings of the Royal Society B 286 (1913), 20191430, 2019
1042019
Resistance to natural and synthetic gene drive systems
TAR Price, N Windbichler, RL Unckless, A Sutter, JN Runge, PA Ross, ...
Journal of evolutionary biology 33 (10), 1345-1360, 2020
592020
Sex-Ratio Meiotic Drive Shapes the Evolution of the Y Chromosome in Drosophila simulans
Q Helleu, C Courret, D Ogereau, KL Burnham, N Chaminade, M Chakir, ...
Molecular Biology and Evolution 36 (12), 2668-2681, 2019
122019
X-chromosome meiotic drive in Drosophila simulans: a QTL approach reveals the complex polygenic determinism of Paris drive suppression
C Courret, PR Gérard, D Ogereau, M Falque, L Moreau, ...
Heredity 122 (6), 906-915, 2019
112019
Centromere-associated retroelement evolution in Drosophila melanogaster reveals an underlying conflict
LW Hemmer, S Negm, X Geng, C Courret, B Navarro-Domínguez, ...
BioRXiv, 2022.11. 25.518008, 2022
102022
Rapid turnover of centromeric DNA reveals signatures of genetic conflict in Drosophila
C Courret, L Hemmer, X Wei, PD Patel, B Santinello, X Geng, CH Chang, ...
BioRXiv, 2023.08. 22.554357, 2023
72023
High levels of intra-strain structural variation in Drosophila simulans X pericentric heterochromatin
C Courret, AM Larracuente
Genetics 225 (4), iyad176, 2023
42023
The Evolutionary History of Drosophila simulans Y Chromosomes Reveals Molecular Signatures of Resistance to Sex Ratio Meiotic Drive
C Courret, D Ogereau, C Gilbert, AM Larracuente, C Montchamp-Moreau
Molecular Biology and Evolution 40 (7), msad152, 2023
42023
The nanoCUT&RUN technique visualizes telomeric chromatin in Drosophila
T Chen, X Wei, C Courret, M Cui, L Cheng, J Wu, K Ahmad, ...
PLoS Genetics 18 (9), e1010351, 2022
42022
New perspectives on the causes and consequences of male meiotic drive
C Courret, X Wei, AM Larracuente
Current Opinion in Genetics & Development, 102111, 2023
32023
Turnover of retroelements and satellite DNA drives centromere reorganization over short evolutionary timescales in Drosophila
C Courret, LW Hemmer, X Wei, PD Patel, BJ Chabot, NJ Fuda, X Geng, ...
PLoS biology 22 (11), e3002911, 2024
12024
Transcription of a centromere-enriched retroelement and local retention of its RNA are significant features of the CENP-A chromatin landscape
BJ Chabot, R Sun, A Amjad, SJ Hoyt, L Ouyang, C Courret, R Drennan, ...
Genome Biology 25 (1), 295, 2024
12024
Transcription of a centromere-enriched retroelement and local retention of its RNA are significant features of the CENP-A chromatin landscape
B Santinello, R Sun, A Amjad, SJ Hoyt, L Ouyang, C Courret, R Drennan, ...
bioRxiv, 2024
12024
Centromere-associated retroelement evolution inDrosophila melanogasterreveals an underlying conflict
LW Hemmer, S Negm, X Geng, C Courret, B Navarro-Dominguez, ...
12022
A centromere-derived retroelement RNA localizes in cis and is a core element of the transcriptional landscape of Drosophila centromeres
B Santinello, R Sun, A Amjad, SJ Hoyt, L Ouyang, C Courret, R Drennan, ...
bioRxiv, 2024.01. 14.574223, 2024
2024
A centromere-derived retroelement RNA localizes in cis and is a core element of the transcriptional landscape of Drosophila centromeres
BG Mellone, B Santinello, R Sun, A Amjad, SJ Hoyt, O Luoxuan, ...
2024
Bases génétiques et évolution du conflit génétique induit par la distorsion de ségrégation des chromosomes sexuels chez Drosophila simulans
C Courret
Université Paris-Saclay, 2019
2019
The evolution of a sex-linked meiotic drive system in natural and experimental populations of Drosophila simulans
P Gerard, H Bastide, C Courret, Q Helleu, D Ogereau, ...
Réunion du GDR Approche Interdisciplinaire de l’Evolution Moléculaire, np, 2016
2016
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