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Bozena Chrost

Publications and source records attributed to Bozena Chrost.

2 recordsLinked to original sources

An alpha-galactosidase with an essential function during leaf development.

The putative alpha-galactosidase gene HvSF11 of barley, previously shown to be expressed during dark induced senescence, is expressed in the growing/elongating zone of primary foliage leaves of barley. The amino acid sequence deduced from the full length HvSF11 cDNA contains a hydrophobic signal sequence at the N-terminus. Phylogenetic relationship of the HvSF11 encoded barley alpha-galactosidase to other alpha-galactosidases revealed high homology with the alpha-galactosidase encoded by the gene At5g08370 from Arabidopsis thaliana. We have isolated two independent heterozygous At5g08370 T-DNA insertion mutants from Arabidopsis thaliana, both of which have a higher number of rosette leaves with a curly surface leaf morphology and delayed flowering time in comparison to wildtype plants. Localization of the Arabidopsis alpha-galactosidase protein via GUS-tag revealed that the protein is associated with the cell wall. This result was confirmed by immunological detection of the orthologous barley protein in a protein fraction derived from cell walls of barley leaves. It is concluded that the alpha-galactosidase proteins from barley and Arabidopsis might fulfill an important role in leaf development by functioning in cell wall loosening and cell wall expansion.

Amino Acid Sequence↗

Regulation of alpha-galactosidase gene expression in primary foliage leaves of barley ( Hordeum vulgare L) during dark-induced senescence.

alpha-Galactosidase activity (alpha- d-galactoside galactohydrolase, EC 3.2.1.22) increased during dark-induced senescence in primary foliage leaves of barley ( Hordeum vulgare L. cv. Steffi). The changes in activity were accompanied by parallel changes in expression of the HvSF11 gene encoding a putative alpha-galactosidase. The transcript level of HvSF23 encoding a second putative alpha-galactosidase stayed constant during leaf senescence. Both alpha-galactosidase activity and the level of the HvSF11 transcript decreased after exogenous application of sucrose and glucose to detached dark-incubated leaves. In contrast, the HvSF23 transcript level was not influenced by sugars. Application of glucose analogs to detached and dark-incubated leaves revealed that phosphorylation of hexose by hexokinase modulates both the alpha-galactosidase activity and the expression of HvSF11. These results indicate that the expression of the genes coding for two alpha-galactosidase isoenzymes is regulated by different signalling pathways, suggesting different functions for the two gene products.

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