Cold Response of Dedifferentiated Barley Cells at the Gene Expression, Hormone Composition, and Freezing Tolerance Levels: Studies on Callus Cultures

被引:0
作者
Ildikó Vashegyi
Zsuzsa Marozsán-Tóth
Gábor Galiba
Petre I. Dobrev
Radomira Vankova
Balázs Tóth
机构
[1] Hungarian Academy of Sciences,Department of Plant Molecular Biology, Agricultural Institute, Centre for Agricultural Research
[2] University of Pannonia,Research Institute of Chemical and Process Engineering
[3] Academy of Sciences of the Czech Republic,Laboratory of Hormonal Regulations in Plants, Institute of Experimental Botany
来源
Molecular Biotechnology | 2013年 / 54卷
关键词
ABA; Barley; Callus; CBF; Cold; COR14b; Dicamba; IAA;
D O I
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学科分类号
摘要
In this study, data is presented how dark-grown, embryogenic barley callus cells respond to cold without any light-dependent, chloroplast-related mechanism, independently of the systemic signals. The expression of HvCBF9, HvCBF14, and HvCOR14b genes, members of one of the most important cold-inducible regulatory system, was measured by real-time PCR. Characteristic of the cold response was similar in the crowns of seedlings and in dark-grown callus cultures, however, gene expression levels were lower in calli. Endogenous concentration of auxins, abscisic acid, and salicylic acid did not change, but phaseic acid and neophaseic acid showed robust accumulation after cold acclimation. Freezing tolerance of the cultures was also higher after 7 days of cold-hardening. The results suggest the presence of a basal, light-independent, cold-responsive activation of the CBF–COR14b pathway in barley cultures. The effects of Dicamba, the exogenous auxin analog used for maintaining tissue cultures were also studied. Dicamba seems to be a general enhancer of the gene expression and physiological responses to cold stress, but has no specific effect on the activation. Our data along with previous findings show that this system might be a suitable model for studying certain basic cellular mechanisms involved in the cold acclimation process in cereals.
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页码:337 / 349
页数:12
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[71]  
Galiba G(undefined)Sugars regulate cold-induced gene expression and freezing-tolerance in barley cell cultures undefined undefined undefined-undefined
[72]  
Cattivelli L(undefined)Characterization of growth-phase-specific responses to cold in undefined undefined undefined-undefined
[73]  
Knox AK(undefined) suspension-cultured cells undefined undefined undefined-undefined
[74]  
Li C(undefined)Somatic embryogenesis: A model for early development in higher plants undefined undefined undefined-undefined
[75]  
Vágújfalvi A(undefined)An ultrastructural study of chloroplast structure and dedifferentiation in tissue culture of undefined undefined undefined-undefined
[76]  
Galiba G(undefined) (Cruciferae) undefined undefined undefined-undefined
[77]  
Stockinger EJ(undefined)Studies on barley calluses cultured in vitro I. Establishment, maintenance and growth of 2 different tissue strains undefined undefined undefined-undefined
[78]  
Dubcovsky J(undefined)Plant regeneration and multiplication of the emergent wetland monocot undefined undefined undefined-undefined
[79]  
Fricano A(undefined)Apical meristems: The plant’s fountain of youth undefined undefined undefined-undefined
[80]  
Rizza F(undefined)The stem cell concept in plants: A matter of debate undefined undefined undefined-undefined