Andrés, Fernando, Porri, Aimone, Torti, Stefano, Mateos, Julieta, Romera-Branchat, Maida, García-Martínez, José Luis, Fornara, Fabio, Gregis, Veronica, Kater, Martin M., Coupland, George (2014) SHORT VEGETATIVE PHASE reduces gibberellin biosynthesis at theArabidopsisshoot apex to regulate the floral transition. Proceedings of the National Academy of Sciences, 111 (26) doi:10.1073/pnas.1409567111
| Reference Type | Journal (article/letter/editorial) | ||
|---|---|---|---|
| Title | SHORT VEGETATIVE PHASE reduces gibberellin biosynthesis at theArabidopsisshoot apex to regulate the floral transition | ||
| Journal | Proceedings of the National Academy of Sciences | ||
| Authors | Andrés, Fernando | Author | |
| Porri, Aimone | Author | ||
| Torti, Stefano | Author | ||
| Mateos, Julieta | Author | ||
| Romera-Branchat, Maida | Author | ||
| García-Martínez, José Luis | Author | ||
| Fornara, Fabio | Author | ||
| Gregis, Veronica | Author | ||
| Kater, Martin M. | Author | ||
| Coupland, George | Author | ||
| Year | 2014 (July 1) | Volume | 111 |
| Issue | 26 | ||
| Publisher | Proceedings of the National Academy of Sciences | ||
| DOI | doi:10.1073/pnas.1409567111Search in ResearchGate | ||
| Generate Citation Formats | |||
| Mindat Ref. ID | 1828720 | Long-form Identifier | mindat:1:5:1828720:0 |
| GUID | 0 | ||
| Full Reference | Andrés, Fernando, Porri, Aimone, Torti, Stefano, Mateos, Julieta, Romera-Branchat, Maida, García-Martínez, José Luis, Fornara, Fabio, Gregis, Veronica, Kater, Martin M., Coupland, George (2014) SHORT VEGETATIVE PHASE reduces gibberellin biosynthesis at theArabidopsisshoot apex to regulate the floral transition. Proceedings of the National Academy of Sciences, 111 (26) doi:10.1073/pnas.1409567111 | ||
| Plain Text | Andrés, Fernando, Porri, Aimone, Torti, Stefano, Mateos, Julieta, Romera-Branchat, Maida, García-Martínez, José Luis, Fornara, Fabio, Gregis, Veronica, Kater, Martin M., Coupland, George (2014) SHORT VEGETATIVE PHASE reduces gibberellin biosynthesis at theArabidopsisshoot apex to regulate the floral transition. Proceedings of the National Academy of Sciences, 111 (26) doi:10.1073/pnas.1409567111 | ||
| In | (2014, July) Proceedings of the National Academy of Sciences Vol. 111 (26) Proceedings of the National Academy of Sciences | ||
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