Daria Gavriouchkina
Affiliations: | 2017- | Molecular Genetics Unit | Okinawa Institute of Science & Technology |
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"https://scholar.google.co.uk/citations?user=Xe9FHTsAAAAJ&hl=en"Mean distance: (not calculated yet)
Parents
Sign in to add mentorDetlev Arendt | grad student | ||
Marc Ballivet | grad student | ||
Marcus Dekens | grad student | Universität Wien | |
Daniel S. Rokhsar | post-doc | ||
Tatjana Sauka-Spengler | post-doc | (Cell Biology Tree) |
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Publications
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Marlétaz F, Timoshevskaya N, Timoshevskiy VA, et al. (2024) The hagfish genome and the evolution of vertebrates. Nature |
Xu F, Deng S, Gavriouchkina D, et al. (2023) Transcriptional regulation analysis reveals the complexity of metamorphosis in the Pacific oyster (). Marine Life Science & Technology. 5: 467-477 |
Ahuja N, Hwaun E, Pungor JR, et al. (2023) Creation of an albino squid line by CRISPR-Cas9 and its application for in vivo functional imaging of neural activity. Current Biology : Cb |
Marlétaz F, Timoshevskaya N, Timoshevskiy V, et al. (2023) The hagfish genome and the evolution of vertebrates. Biorxiv : the Preprint Server For Biology |
Marlétaz F, Couloux A, Poulain J, et al. (2023) Analysis of the sea urchin genome highlights contrasting trends of genomic and regulatory evolution in deuterostomes. Cell Genomics. 3: 100295 |
Gavriouchkina D, Marlétaz F, Miryeganeh M, et al. (2022) Corrigendum. The New Phytologist |
Miryeganeh M, Marlétaz F, Gavriouchkina D, et al. (2021) De novo genome assembly and in natura epigenomics reveal salinity-induced DNA methylation in the mangrove tree Bruguiera gymnorhiza. The New Phytologist |
Xu F, Marlétaz F, Gavriouchkina D, et al. (2021) Evidence from oyster suggests an ancient role for Pdx in regulating insulin gene expression in animals. Nature Communications. 12: 3117 |
Simões FC, Cahill TJ, Kenyon A, et al. (2020) Macrophages directly contribute collagen to scar formation during zebrafish heart regeneration and mouse heart repair. Nature Communications. 11: 600 |
Williams RM, Candido-Ferreira I, Repapi E, et al. (2019) Reconstruction of the Global Neural Crest Gene Regulatory Network In Vivo. Developmental Cell. 51: 255-276.e7 |