Search Results - "Garnczarska, Małgorzata"

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  1. 1

    Contribution of Exogenous Proline to Abiotic Stresses Tolerance in Plants: A Review by Hosseinifard, Marjanossadat, Stefaniak, Szymon, Ghorbani Javid, Majid, Soltani, Elias, Wojtyla, Łukasz, Garnczarska, Małgorzata

    “…Abiotic stresses are the major environmental factors that play a significant role in decreasing plant yield and production potential by influencing…”
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  2. 2

    Response of the ascorbate–glutathione cycle to re-aeration following hypoxia in lupine roots by Garnczarska, Małgorzata

    Published in Plant physiology and biochemistry (01-06-2005)
    “…The response of the enzymes and metabolites of the ascorbate–glutathione pathway to oxidative stress caused by re-aeration following hypoxia was studied in…”
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  3. 3

    Different Modes of Hydrogen Peroxide Action During Seed Germination by Wojtyla, Łukasz, Lechowska, Katarzyna, Kubala, Szymon, Garnczarska, Małgorzata

    Published in Frontiers in plant science (04-02-2016)
    “…Hydrogen peroxide was initially recognized as a toxic molecule that causes damage at different levels of cell organization and thus losses in cell viability…”
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  4. 4

    Enhanced expression of the proline synthesis gene P5CSA in relation to seed osmopriming improvement of Brassica napus germination under salinity stress by Kubala, Szymon, Wojtyla, Łukasz, Quinet, Muriel, Lechowska, Katarzyna, Lutts, Stanley, Garnczarska, Małgorzata

    Published in Journal of plant physiology (01-07-2015)
    “…Osmopriming is a pre-sowing treatment that enhances germination performance and stress tolerance of germinating seeds. Brassica napus seeds showed…”
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  5. 5

    Molecular processes induced in primed seeds—increasing the potential to stabilize crop yields under drought conditions by Wojtyla, Łukasz, Lechowska, Katarzyna, Kubala, Szymon, Garnczarska, Małgorzata

    Published in Journal of plant physiology (20-09-2016)
    “…Environmental stress factors such as drought, salinity, temperature extremes and rising CO2 negatively affect crop growth and productivity. Faced with the…”
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  6. 6

    Endogenous Polyamines and Ethylene Biosynthesis in Relation to Germination of Osmoprimed Brassica napus Seeds under Salt Stress by Lechowska, Katarzyna, Wojtyla, Łukasz, Quinet, Muriel, Kubala, Szymon, Lutts, Stanley, Garnczarska, Małgorzata

    “…Currently, seed priming is reported as an efficient and low-cost approach to increase crop yield, which could not only promote seed germination and improve…”
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  7. 7

    Deciphering priming-induced improvement of rapeseed (Brassica napus L.) germination through an integrated transcriptomic and proteomic approach by Kubala, Szymon, Garnczarska, Małgorzata, Wojtyla, Łukasz, Clippe, André, Kosmala, Arkadiusz, Żmieńko, Agnieszka, Lutts, Stanley, Quinet, Muriel

    Published in Plant science (Limerick) (01-02-2015)
    “…•Changes of transcriptome and proteome during seed priming and germination are shown.•Relationship between mRNA and protein profile is discussed.•Soaking,…”
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  8. 8

    New Insight on Water Status in Germinating Brassica napus Seeds in Relation to Priming-Improved Germination by Lechowska, Katarzyna, Kubala, Szymon, Wojtyla, Łukasz, Nowaczyk, Grzegorz, Quinet, Muriel, Lutts, Stanley, Garnczarska, Małgorzata

    “…Seed priming is a pre-sowing method successfully used to improve seed germination. Since water plays a crucial role in germination, the aim of this study was…”
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  9. 9

    Autophagic Machinery of Plant Peroxisomes by Borek, Sławomir, Stefaniak, Szymon, Śliwiński, Jan, Garnczarska, Małgorzata, Pietrowska-Borek, Małgorzata

    “…Peroxisomes are cell organelles that play an important role in plants in many physiological and developmental processes. The plant peroxisomes harbor enzymes…”
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  10. 10

    Lupine embryo axes under salinity stress. II. Mitochondrial proteome response by Wojtyla, Łukasz, Kosmala, Arkadiusz, Garnczarska, Małgorzata

    Published in Acta physiologiae plantarum (2013)
    “…Germination is the first step of plant growth in plant life cycle. An embryonic radicle protruding the seed coat is the first part of plant which has direct…”
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  11. 11

    Water uptake and distribution in germinating lupine seeds studied by magnetic resonance imaging and NMR spectroscopy by Garnczarska, Małgorzata, Zalewski, Tomasz, Kempka, Marek

    Published in Physiologia plantarum (01-05-2007)
    “…Magnetic resonance imaging (MRI) was used to study temporal and spatial water uptake and distribution in germinating lupine (Lupinus luteus L.) seeds. During…”
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  12. 12

    A comparative study of water distribution, free radical production and activation of antioxidative metabolism in germinating pea seeds by Wojtyla, Łukasz, Garnczarska, Małgorzata, Zalewski, Tomasz, Bednarski, Waldemar, Ratajczak, Lech, Jurga, Stefan

    Published in Journal of plant physiology (01-12-2006)
    “…The aim of this study was to investigate whether there is a relationship between hydration of the embryo axes and cotyledons and the resumption of the…”
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  13. 13

    Ability of lupine seeds to germinate and to tolerate desiccation as related to changes in free radical level and antioxidants in freshly harvested seeds by Garnczarska, Małgorzata, Bednarski, Waldemar, Jancelewicz, Mariusz

    Published in Plant physiology and biochemistry (2009)
    “…Seeds of yellow lupine ( Lupinus luteus L. cv. Juno) were collected throughout their development on the mother plant to determine whether the ability to…”
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  14. 14

    Lupine embryo axes under salinity stress. I. Ultrastructural response by Wojtyla, Łukasz, Rucińska-Sobkowiak, Renata, Kubala, Szymon, Garnczarska, Małgorzata

    Published in Acta physiologiae plantarum (01-07-2013)
    “…Embryonic root is the primary site of salinity perception in germinating seeds. To understand better the NaCl stress response of lupine embryo axes,…”
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  15. 15

    Hypoxia induces anoxia tolerance in roots and shoots of lupine seedlings by Garnczarska, Małgorzata, Ratajczak, Lech

    Published in Acta physiologiae plantarum (01-01-2003)
    “…Lupine seedlings were exposed to 4 kPa partial pressure oxygen (hypoxically pretreated) for 18 hours before treatment with strictly anaerobic conditions…”
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  16. 16

    Effect of a short-term hypoxic treatment followed by re-aeration on free radicals level and antioxidative enzymes in lupine roots by Garnczarska, Małgorzata, Bednarski, Waldemar

    Published in Plant physiology and biochemistry (01-03-2004)
    “…To investigate whether re-aeration after a short-term hypoxic pre-treatment (for 2, 12 or 24 h) induces oxidative stress, the temporal sequence of…”
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  17. 17

    Changes in water status and water distribution in maturing lupin seeds studied by MR imaging and NMR spectroscopy by Garnczarska, Małgorzata, Zalewski, Tomasz, Kempka, Marek

    Published in Journal of experimental botany (01-11-2007)
    “…The changes in water distribution in maturing lupin (Lupinus luteus L.) seeds were visualized with magnetic resonance imaging (MRI). MRI data showed local…”
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  18. 18

    Ultrastructural and antioxidative changes in lupine embryo axes in response to salt stress by Wojtyla, Łukasz, Grabsztunowicz, Magda, Garnczarska, Małgorzata

    Published in Acta Societatis Botanicorum Poloniae (01-01-2013)
    “…Embryo axes of lupine (Lupinus luteus L. ‘Mister’) were subjected to 0.1 M NaCl salt stress for 24 and 48 h. The ultrastructure modification and adjustment of…”
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  19. 19

    A comparative study of water distribution and dehydrin protein localization in maturing pea seeds by Garnczarska, Małgorzata, Zalewski, Tomasz, Wojtyla, Łukasz

    Published in Journal of plant physiology (01-12-2008)
    “…In this study, the distribution of water in pea seeds after harvesting at different seed stages was traced by magnetic resonance imaging (MRI). MRI visualized…”
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  20. 20

    Differential response of antioxidative enzymes in embryonic axes and cotyledons of germinating lupine seeds by Garnczarska, Małgorzata, Wojtyla, Łukasz

    Published in Acta physiologiae plantarum (01-07-2008)
    “…Germination of lupine ( Lupinus luteus L.) seeds was accompanied by an increase in concentration of free radicals with g 1 and g 2 values of 2.0056 ± 0.0003…”
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