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2019

Other Outputs

The Avocado Genome Informs Deep Angiosperm Phylogeny, Highlights Introgressive Hybridization, and Reveals Pathogen-Influenced Gene Space Adaptation

Rendón-Anaya, Martha, Ibarra-Laclette, Enrique, Bravo, Alfonso Méndez, Lan, Tianying, Zheng, Chunfang, Carretero-Paulet, Lorenzo, Perez-Torres, Claudia Anahí, Chacón-López, Alejandra, Hernandez-Guzmán, Gustavo, Chang, Tien-Hao, Farr, Kimberly M., Barbazuk, W. Brad, Chamala, Srikar, Mutwil, Marek, Shivhare, Devendra, Alvarez-Ponce, David, Mitter, Neena, Hayward, Alice, Fletcher, Stephen, Rozas, Julio, Gracia, Alejandro Sánchez, Kuhn, David, Barrientos-Priego, Alejandro F., Salojärvi, Jarkko, Librado, Pablo, Sankoff, David, Herrera-Estrella, Alfredo, Albert, Victor A. and Herrera-Estrella, Luis (2019). The Avocado Genome Informs Deep Angiosperm Phylogeny, Highlights Introgressive Hybridization, and Reveals Pathogen-Influenced Gene Space Adaptation. doi: 10.1101/654285

The Avocado Genome Informs Deep Angiosperm Phylogeny, Highlights Introgressive Hybridization, and Reveals Pathogen-Influenced Gene Space Adaptation

2009

Other Outputs

Interactions between auxin and strigolactone in the control of arabidopsis shoot branching

Hayward, Alice Catherine (2009). Interactions between auxin and strigolactone in the control of arabidopsis shoot branching. PhD Thesis, School of Biological Sciences, The University of Queensland.

Interactions between auxin and strigolactone in the control of arabidopsis shoot branching