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Zbigniew Miszalski

Explore the profile of Zbigniew Miszalski including associated specialties, affiliations and a list of published articles. Areas
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Articles 45
Citations 597
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Recent Articles
11.
Dymova O, Khristin M, Miszalski Z, Kornas A, Strzalka K, Golovko T
Funct Plant Biol . 2020 Apr; 45(5):519-527. PMID: 32290991
The chlorophyll and carotenoid content, and the spectra of low-temperature fluorescence of the leaves, chloroplasts and isolated pigment-protein complexes in the perennial herbaceous wintergreen plant Ajuga reptans L. (bugle) in...
12.
Nosek M, Kaczmarczyk A, Jedrzejczyk R, Supel P, Kaszycki P, Miszalski Z
Plants (Basel) . 2020 Apr; 9(4). PMID: 32283631
Many areas intended for crop production suffer from the concomitant occurrence of heavy metal pollution and elevated salinity; therefore, halophytes seem to represent a promising perspective for the bioremediation of...
13.
Nosek M, Kaczmarczyk A, Sliwa M, Jedrzejczyk R, Kornas A, Supel P, et al.
J Plant Physiol . 2019 Jul; 240:153005. PMID: 31271976
Many areas exhibiting increased concentrations of soluble salts are simultaneously polluted with heavy metals (HM), and halophytes with extended tolerance to heavy metal toxicity seem to represent a promising tool...
14.
Slesak I, Kula M, Slesak H, Miszalski Z, Strzalka K
Free Radic Biol Med . 2019 Mar; 140:61-73. PMID: 30862543
One of the former definitions of "obligate anaerobiosis" was based on three main criteria: 1) it occurs in organisms, so-called obligate anaerobes, which live in environments without oxygen (O), 2)...
15.
Sekulska-Nalewajko J, Kornas A, Goclawski J, Miszalski Z, Kuzniak E
Plant Methods . 2019 Mar; 15:18. PMID: 30828357
Background: Chlorophyll fluorescence analysis is one of the non-invasive techniques widely used to detect and quantify the stress-induced changes in the photosynthetic apparatus. Quantitative information is obtained as a series...
16.
Nosek M, Gawronska K, Rozpadek P, Szechynska-Hebda M, Kornas A, Miszalski Z
J Plant Physiol . 2018 Aug; 229:151-157. PMID: 30092447
In Mesembryanthemum crystallinum, crassulacean acid metabolism (CAM) is seemingly reversible, but unequivocal evidence for functional CAM withdrawal has yet to be shown. In this study, we confirmed the rapid downregulation...
17.
Kornas A, Filek M, Sieprawska A, Bednarska-Kozakiewicz E, Gawronska K, Miszalski Z
J Sci Food Agric . 2018 May; 99(1):482-485. PMID: 29808470
Background: The aim of this study was to investigate whether the application of selenium (Se) ions directly to the leaf surface can protect plants against infection by the fungal toxin...
18.
Miszalski Z, Skoczowski A, Silina E, Dymova O, Golovko T, Kornas A, et al.
J Plant Physiol . 2016 Aug; 204:36-43. PMID: 27500555
Photosynthetic processes in the leaf lamina and midribs of Plantago media were investigated using plants grown in high light (HL) or low light (LL) conditions. The fluorescence parameters, which indicate...
19.
Surowka E, Dziurka M, Kocurek M, Goraj S, Rapacz M, Miszalski Z
J Plant Physiol . 2016 Jul; 200:102-10. PMID: 27368070
Exogenously applied H2O2 (50, 100 and 200mM) to Mesembryanthemum crystallinum root medium induced a transition from C3 to Crassulacean Acid Metabolism (CAM), as evaluated by diurnal malate (Δmal) fluctuations. A...
20.
Kuzniak E, Kornas A, Kazmierczak A, Rozpadek P, Nosek M, Kocurek M, et al.
Ann Bot . 2016 Apr; 117(7):1141-51. PMID: 27091507
Background And Aims: Leaf veins are usually encircled by specialized bundle sheath cells. In C4 plants, they play an important role in CO2 assimilation, and the photosynthetic activity is compartmentalized...