Showing results (31-40 of 121) with videos related to
Sort By:
Pageof 13
Methods in Molecular Biology (Clifton, N.J.)|October 11, 2014
Barley (Hordeum vulgare L.) transformation using immature embryosCornelia Marthe, Jochen Kumlehn, Goetz HenselBiotechnology Advances|September 4, 2023
CRISPR/Cas9-mediated genome editing techniques and new breeding strategies in cereals - current status, improvements, and perspectivesSunny Ahmar, Goetz Hensel, Damian GruszkaJournal of Experimental Botany|September 18, 2013
Asymmetric growth of root epidermal cells is related to the differentiation of root hair cells in Hordeum vulgare (L.)Marek Marzec, Michael Melzer, Iwona SzarejkoPlant Physiology|April 16, 2015
Root hair development in the grasses: what we already know and what we still need to knowMarek Marzec, Michael Melzer, Iwona SzarejkoJournal of Experimental Botany|December 4, 2014
Arabinogalactan proteins are involved in root hair development in barleyMarek Marzec, Iwona Szarejko, Michael MelzerInternational Journal of Molecular Sciences|May 1, 2013
The role of strigolactones in nutrient-stress responses in plantsMarek Marzec, Aleksandra Muszynska, Damian GruszkaBMC Plant Biology|June 16, 2012
The barley EST DNA Replication and Repair Database (bEST-DRRD) as a tool for the identification of the genes involved in DNA replication and repairDamian Gruszka, Marek Marzec, Iwona SzarejkoPlant Signaling & Behavior|February 14, 2014
The evolutionary context of root epidermis cell patterning in grasses (Poaceae)Marek Marzec, Michael Melzer, Iwona SzarejkoJournal of Applied Genetics|June 14, 2024
Strigolactone insensitivity affects differential shoot and root transcriptome in barleyMagdalena Korek, R Glen Uhrig, Marek MarzecJournal of Plant Physiology|October 2, 2007
Efficient generation of transgenic barley: the way forward to modulate plant-microbe interactionsGoetz Hensel, Vladimir Valkov, Jill Middlefell-Williams, et al.Pageof 13