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Importance of symplasmic communication in cell differentiationPerception and Signaling of StrigolactonesMutation in HvCBP20 (Cap Binding Protein 20) Adapts Barley to Drought Stress at Phenotypic and Transcriptomic Levels.The evolutionary context of root epidermis cell patterning in grasses (Poaceae)Increased symplasmic permeability in barley root epidermal cells correlates with defects in root hair development.Asymmetric growth of root epidermal cells is related to the differentiation of root hair cells in Hordeum vulgare (L.).Arabinogalactan proteins are involved in root hair development in barleyRoot hair development in the grasses: what we already know and what we still need to know.In silico analysis of the genes encoding proteins that are involved in the biosynthesis of the RMS/MAX/D pathway revealed new roles of Strigolactones in plants.Induced variations in brassinosteroid genes define barley height and sturdiness, and expand the green revolution genetic toolkit.Identification and functional analysis of the HvD14 gene involved in strigolactone signaling in Hordeum vulgare.Key Hormonal Components Regulate Agronomically Important Traits in Barley.Strigolactones as Part of the Plant Defence System.Regulation of Root Development and Architecture by Strigolactones under Optimal and Nutrient Deficiency ConditionsMore precise, more universal and more specific - the next generation of RNA-guided endonucleases for genome editingPlastid differentiation during microgametogenesis determines green plant regeneration in barley microspore cultureBarley strigolactone signaling mutant hvd14.d reveals the role of strigolactones in ABA-dependent response to drought
P50
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P50
description
Pools onderzoeker
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cercetător polonez
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P106
P1153
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P1412
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Marek Marzec
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P21
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P496
0000-0002-5261-6662