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Frontiers in Plant Science|November 2, 2020
Maize Response to Low Temperatures at the Gene Expression Level: A Critical Survey of Transcriptomic StudiesPaweł Sowiński, Jan Fronk, Maciej Jończyk, et al.Protoplasma|May 20, 2016
Low temperature caused modifications in the arrangement of cell wall pectins due to changes of osmotic potential of cells of maize leaves (Zea mays L.)Anna Bilska-Kos, Danuta Solecka, Aleksandra Dziewulska, et al.Journal of Experimental Botany|March 3, 2019
Increased photosensitivity at early growth as a possible mechanism of maize adaptation to cold springsMarcin Grzybowski, Józef Adamczyk, Maciej Jończyk, et al.BMC Plant Biology|February 13, 2025
Diverse coping modes of maize in cool environment at early growthPaweł Sowiński, Katarzyna Wieliczko-Manowska, Marcin Grzybowski, et al.Plant Molecular Biology|March 14, 2014
Genome-wide transcriptomic analysis of response to low temperature reveals candidate genes determining divergent cold-sensitivity of maize inbred linesAlicja Sobkowiak, Maciej Jończyk, Emilia Jarochowska, et al.Plos One|August 23, 2011
Rhythmic diel pattern of gene expression in juvenile maize leafMaciej Jończyk, Alicja Sobkowiak, Paweł Siedlecki, et al.Physiologia Plantarum|February 5, 2019
Expression of maize calcium-dependent protein kinase (ZmCPK11) improves salt tolerance in transgenic Arabidopsis plants by regulating sodium and potassium homeostasis and stabilizing photosystem IILidia Borkiewicz, Lidia Polkowska-Kowalczyk, Jarosław Cieśla, et al.BMC Genomics|February 22, 2016
Molecular foundations of chilling-tolerance of modern maizeAlicja Sobkowiak, Maciej Jończyk, Józef Adamczyk, et al.Pageof 1