bioRxiv
Single-cell transcriptomics reveals evolutionary reconfiguration of embryonic cell fate specification in the sea urchinHeliocidaris erythrogramma
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Massri, A; Berrio, A; Afanassiev, A; Greenstreet, L; Pipho, K; Byrne, M; Schiebinger, G; McClay, D; Wray, G
2024
Duke Scholars
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Massri, A., Berrio, A., Afanassiev, A., Greenstreet, L., Pipho, K., Byrne, M., … Wray, G. (2024). Single-cell transcriptomics reveals evolutionary reconfiguration of embryonic cell fate specification in the sea urchinHeliocidaris erythrogramma. bioRxiv. https://doi.org/10.1101/2024.04.30.591752
Massri, Abdull, Alejandro Berrio, Anton Afanassiev, Laura Greenstreet, Krista Pipho, Maria Byrne, Geoffrey Schiebinger, David McClay, and Gregory Wray. “Single-cell transcriptomics reveals evolutionary reconfiguration of embryonic cell fate specification in the sea urchinHeliocidaris erythrogramma.” BioRxiv, 2024. https://doi.org/10.1101/2024.04.30.591752.
Massri A, Berrio A, Afanassiev A, Greenstreet L, Pipho K, Byrne M, et al. Single-cell transcriptomics reveals evolutionary reconfiguration of embryonic cell fate specification in the sea urchinHeliocidaris erythrogramma. bioRxiv. 2024.
Massri, Abdull, et al. “Single-cell transcriptomics reveals evolutionary reconfiguration of embryonic cell fate specification in the sea urchinHeliocidaris erythrogramma.” BioRxiv, 2024. Epmc, doi:10.1101/2024.04.30.591752.
Massri A, Berrio A, Afanassiev A, Greenstreet L, Pipho K, Byrne M, Schiebinger G, McClay D, Wray G. Single-cell transcriptomics reveals evolutionary reconfiguration of embryonic cell fate specification in the sea urchinHeliocidaris erythrogramma. bioRxiv. 2024.