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Gerhard Leubner-Metzger

Showing results (31-40 of 67) with videos related to

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The New Phytologist|September 24, 2020
Coleorhiza-enforced seed dormancy: a novel mechanism to control germination in grassesThomas Holloway, Tina Steinbrecher, Marta Pérez, et al.
Plant Physiology|June 5, 2009
In vivo cell wall loosening by hydroxyl radicals during cress seed germination and elongation growthKerstin Müller, Ada Linkies, Robert A M Vreeburg, et al.
The New Phytologist|September 20, 2018
Dispersal biophysics and adaptive significance of dimorphic diaspores in the annual Aethionema arabicum (Brassicaceae)Waheed Arshad, Katja Sperber, Tina Steinbrecher, et al.
Frontiers in Plant Science|April 17, 2023
Distinct hormonal and morphological control of dormancy and germination in <i>Chenopodium album</i> dimorphic seedsEddison Loades, Marta Pérez, Veronika Turečková, et al.
Plos One|November 9, 2013
Transcriptome-wide mapping of pea seed ageing reveals a pivotal role for genes related to oxidative stress and programmed cell deathHongying Chen, Daniel Osuna, Louise Colville, et al.
Plant, Cell & Environment|August 6, 2025
Distinct Molecular Biomechanical Mechanisms Inhibit Endosperm Cell-Wall Weakening and Seed Germination at Cold and Warm Nonoptimal TemperaturesTina Steinbrecher, Antje Voegele, Michael Ignatz, et al.
Planta|August 16, 2019
The biochemistry underpinning industrial seed technology and mechanical processing of sugar beetMichael Ignatz, James E Hourston, Veronika Turečková, et al.
Journal of Experimental Botany|September 1, 2007
1-Aminocyclopropane-1-carboxylic acid and abscisic acid during the germination of sugar beet (Beta vulgaris L.): a comparative study of fruits and seedsKatrin Hermann, Juliane Meinhard, Peter Dobrev, et al.
Plant & Cell Physiology|September 13, 2011
Myrigalone A inhibits Lepidium sativum seed germination by interference with gibberellin metabolism and apoplastic superoxide production required for embryo extension growth and endosperm ruptureKrystyna Oracz, Antje Voegele, Danuse Tarkowská, et al.
Journal of Experimental Botany|July 24, 2012
Embryo growth, testa permeability, and endosperm weakening are major targets for the environmentally regulated inhibition of Lepidium sativum seed germination by myrigalone AAntje Voegele, Kai Graeber, Krystyna Oracz, et al.
Pageof 7

Showing results (31-40 of 67) with videos related to

Sort By:
Pageof 7
The New Phytologist|September 24, 2020
Coleorhiza-enforced seed dormancy: a novel mechanism to control germination in grassesThomas Holloway, Tina Steinbrecher, Marta Pérez, et al.
Plant Physiology|June 5, 2009
In vivo cell wall loosening by hydroxyl radicals during cress seed germination and elongation growthKerstin Müller, Ada Linkies, Robert A M Vreeburg, et al.
The New Phytologist|September 20, 2018
Dispersal biophysics and adaptive significance of dimorphic diaspores in the annual Aethionema arabicum (Brassicaceae)Waheed Arshad, Katja Sperber, Tina Steinbrecher, et al.
Frontiers in Plant Science|April 17, 2023
Distinct hormonal and morphological control of dormancy and germination in <i>Chenopodium album</i> dimorphic seedsEddison Loades, Marta Pérez, Veronika Turečková, et al.
Plos One|November 9, 2013
Transcriptome-wide mapping of pea seed ageing reveals a pivotal role for genes related to oxidative stress and programmed cell deathHongying Chen, Daniel Osuna, Louise Colville, et al.
Plant, Cell & Environment|August 6, 2025
Distinct Molecular Biomechanical Mechanisms Inhibit Endosperm Cell-Wall Weakening and Seed Germination at Cold and Warm Nonoptimal TemperaturesTina Steinbrecher, Antje Voegele, Michael Ignatz, et al.
Planta|August 16, 2019
The biochemistry underpinning industrial seed technology and mechanical processing of sugar beetMichael Ignatz, James E Hourston, Veronika Turečková, et al.
Journal of Experimental Botany|September 1, 2007
1-Aminocyclopropane-1-carboxylic acid and abscisic acid during the germination of sugar beet (Beta vulgaris L.): a comparative study of fruits and seedsKatrin Hermann, Juliane Meinhard, Peter Dobrev, et al.
Plant & Cell Physiology|September 13, 2011
Myrigalone A inhibits Lepidium sativum seed germination by interference with gibberellin metabolism and apoplastic superoxide production required for embryo extension growth and endosperm ruptureKrystyna Oracz, Antje Voegele, Danuse Tarkowská, et al.
Journal of Experimental Botany|July 24, 2012
Embryo growth, testa permeability, and endosperm weakening are major targets for the environmentally regulated inhibition of Lepidium sativum seed germination by myrigalone AAntje Voegele, Kai Graeber, Krystyna Oracz, et al.
Pageof 7