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New prospects for improving microspore embryogenesis induction in highly recalcitrant winter wheat lines |
2024 |
Plants , 13: 363 |
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- Nawrot-Chorabik K.
- Sułkowska M.
- Osmenda M.
- Mohytych V.
- Surówka E.
- Latowski D.
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The impact of biotic and abiotic stress factors on development of european ash tissue cultures |
2022 |
Forests, 13: 59 |
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ROS-scavengers, osmoprotectants and violaxanthin de-epoxidation in salt-stressed Arabidopsis thaliana with different tocopherol composition |
2021 |
International Journal of Molecular Sciences, 22: 11370 |
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Proteins, small peptides and other signaling molecules identified as inconspicuous but possibly important players in microspores reprogramming toward embryogenesis |
2021 |
Frontiers in Sustainable Food Systems, 5: 745865 |
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Comparative proteomic analysis provides new insights into regulation of microspore embryogenesis induction in winter triticale (× Triticosecale Wittm.) after 5-azacytidine treatment |
2021 |
Scientific Reports, 11: 22215 |
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Impact of ascorbate-glutathione cycle components on the Effectiveness of embryogenesis induction in isolated microspore cultures of barley and triticale |
2021 |
Antioxidants, 10: 1254 |
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Triticale and barley microspore embryogenesis induction requires both reactive oxygen species generation and efficient system of antioxidative defence |
2021 |
Plant Cell Tiss Organ Cult, 145: 347–366 |
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Osmoprotectants and nonenzymatic antioxidants in halophytes |
2020 |
In: Handbook of Halophytes. From Molecules to Ecosystems towards Biosaline Agriculture. Grigore MN. (eds); publisher name: Springer, Cham |
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Tocopherols mutual balance is a key player for maintaining Arabidopsis thaliana growth under salt stress |
2020 |
Plant Physiology and Biochemistry, 156: 369-383 |
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Climate change influences the interactive effects of simultaneous impact of abiotic and biotic stresses on plants |
2020 |
Plant Ecophysiology an In: Plant Ecophysiology and Adaptation under Climate Change: Mechanisms and Perspectives I: General Consequences and Plant Responses. Hasanuzzaman M. (ed), Springer Singapore: 1-50 |
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Crassulacean acid metabolism and its role in plant acclimatization to abiotic stresses and defence against pathogens |
2020 |
In: Progress in Botany. Cánovas F.M., Lüttge U., Leuschner C., Risueno M.-C. (eds), Springer, Berlin, Heidelberg: 277-306 |
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Involvement of homocastasterone, salicylic and abscisic acids in the regulation of drought and freezing tolerance in doubled haploid lines of winter barley |
2020 |
Plant Growth Regulation, 90: 173–188 |
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ROS signalling, and antioxidant defence network in halophytes |
2019 |
In: Halophytes and Climate Change: Adaptive Mechanisms and Potential Uses. Hasanuzzaman M. , Shabala S., Fujita M. (eds), CAB International, Boston: 179-195 |
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Nitrogen metabolism-related enzymes in Mesembryanthemum crystallinumafter Botrytis cinerea infection |
2018 |
Biologia Plantarum, 62: 579-587 |
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Changes in protein abundance and activity induced by drought during generative development of winter barley (Hordeum vulgare L.) |
2017 |
Journal of Proteomics, 169: 73-86 |
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Changes in protein abundance and activity involved in freezing tolerance acquisition in winter barley (Hordeum vulgare L.) |
2017 |
Journal of Proteomics, 169: 58-72 |
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Effects of exognously applied hydrogen peroxide on antioxidant and osmoprotectant profiles and the C3-CAM shift in the halophyte Mesembryanthemum crystallinum L. |
2016 |
Journal of Plant Physiology, 200: 102-110 |
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- Rozpądek P.
- Wężowicz K.
- Stojakowska A.
- Malarz J.
- Surówka E.
- Sobczyk Ł.
- Anielska T.
- Ważny R.
- Miszalski Z.
- Turnau K.
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Mycorrhizal fungi modulate phytochemical production and antioxidant activity of Cichorium intybus L. (Asteraceae) under metal toxicity |
2014 |
Chemosphere, 112: 217-224 |
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Comparison of a compatible and an incompatible pepper-tobamovirus interaction by biochemical and non-invasive techniques: chlorophyll a fluorescence, isothermal calorimetry and FT-Raman spectroscopy |
2014 |
Plant Physiology and Biochemistry, 83: 267-278 |
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Pattern of antioxidant enzyme activities and hydrogen peroxide content during developmental stages of rhizogenesis from hypocotyl explants of Mesembryanthemum crystallinum L. |
2014 |
Plant Cell Reports, 33: 165-177 |
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Pathways of ROS homeostasis regulation in Mesembryanthemum crystallinum L. calli exhibiting differences in rhizogenesis |
2012 |
Plant Cell, Tissue and Organ Culture, 110: 123-131 |
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Pathogen induced changes in malate content and NADP-dependent malic enzyme activity in C-3 or CAM performing Mesembryanthemum crystallinum L. plants |
2012 |
Acta Physiologiae Plantarum, 34: 1471-1477 |
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Differences in the activity and concentration of elements of the antioxidant system in different layers of Brassica pekinensis head |
2012 |
Journal of Plant Physiology, 169: 1158-1164 |
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Ultrastructural and metabolic modifications at the plant-pathogen interface in Mesembryanthemum crystallinum leaves infected by Botrytis cinerea |
2012 |
Environmental and Experimental Botany, 77: 33-43 |
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Distribution pattern of antioxidants in white cabbage heads (Brassica oleracea L. var capitata f.alba) |
2011 |
Acta Physiologiae Plantarum, 33: 2125-2134 |
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Effect of Botrytis cinerea and Pseudomonas syringae infection on the antioxidant profile of Mesembryanthemum crystallinum C3/CAM intermediate plant |
2011 |
Journal of Plant Physiology, 168: 1052-1059 |
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Light stress is not effective to enhanced crassulacean acid metabolism |
2010 |
Zeitschrift für Naturforschung, 65c: 79-86 |
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Antioxidative response of Mesembryanthemum crystallinum plants to exogenous SO2 application |
2007 |
Plant Science, 172: 76-84 |
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Osmotic stress induce CAM metabolism in cultures of Mesembryanthemum crystallinum (Aizoaceae) in vitro |
2005 |
Polish Botanical Studies, 19: 219-225 |
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Cu/Zn superoxide dismutase and catalase activities in Pinus mugo needles growing at elevated stands in the mountains, and their photochemical efficiency of PSII |
2005 |
Journal of Plant Physiology, 162: 895-902 |
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The facultative halophyte Mesebranthemum crustallinum L. as a model plant in oxidative stress studies |
2004 |
In: Analytical methods in plant stress biology. Filek M., Biesaga-Kościelniak J., Marcińska I. et al. (eds), Institute of Plant Physiology, PAS, Kraków: 77-85 |
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Redox changes in the chloroplast and hydrogen peroxide are essential for regulation of C3-CAM transition and photooxidative stress responses in the facultative CAM plant Mesembryanthemum crystallinum L. |
2003 |
Plant and Cell Physiology, 44: 573-581 |
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Czy rośliny górskie przeżywają stres? |
2002 |
Aura, 2: 23- 25 |
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Evaluating of the SOD activity and chlorophyll fluorescence in Picea abies leaves growing at different altitudes |
2001 |
Photosynthetica, 38: 379-384 |
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Aktywność dysmutazy anionorodnika ponadtlenkowego u Mesembryanthemum crystallinum w hodowlach in vitro |
2000 |
Zeszyty Problemowe Postępy Nauk Rolniczych, 473: 83- 93 |
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Stres u roślin górskich |
1999 |
Wszechświat, 100: 237-240 |
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Wpływ stresu solnego i natężenia oświetlenia na indukcję metabolizmu typu CAM |
1999 |
Zeszyty Problemowe Postępów Nauk Rolniczych, 469: 49-54 |
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