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1.
J Plant Physiol ; 168(6): 558-65, 2011 Apr 15.
Article in English | MEDLINE | ID: mdl-20950891

ABSTRACT

Rhizophores of Vernonia herbacea, an Asteraceae found in the Brazilian Cerrado, store high amounts of fructans that vary in composition over the phenological cycle. Fructan 1-exohydrolase (1-FEH) activity is detectable during the sprouting phase, mainly in the proximal regions of rhizophores, of plants induced to sprout by defoliation and/or cold storage. We found an increase in 1-FEH gene expression during natural and induced sprouting and further enhancement through low-temperature treatment. Furthermore, a comparative analysis of 1-FEH gene expression in different regions of the rhizophores during the transition from dormancy to sprouting is presented. Transcripts were detected mainly in the proximal region, coinciding with high 1-FEH activity and a high concentration of free fructose. Low temperature promoted the accumulation of fructans of a low degree of polymerization (DP) and enhanced 1-FEH activity and gene expression. It is hypothesized that a set of 1-FEH proteins acts in two different ways during fructan mobilization: (1) by hydrolyzing fructo-oligosaccharides and -polysaccharides in sprouting plants (naturally or induced) for carbon supply and (2) by hydrolyzing preferably fructo-polysaccharides under low temperature to maintain the oligosaccharide pool for plant cold acclimation.


Subject(s)
Glycoside Hydrolases/chemistry , Plant Roots/enzymology , Vernonia/enzymology , Brazil , Cold Temperature , Fructans/biosynthesis , Fructans/chemistry , Gene Expression Regulation, Plant , Glycoside Hydrolases/genetics , Glycoside Hydrolases/metabolism , Oligosaccharides/genetics , Plant Proteins/chemistry , Plant Proteins/genetics , Plant Proteins/metabolism , Plant Roots/genetics , Plant Roots/growth & development , Vernonia/chemistry , Vernonia/genetics , Vernonia/metabolism
2.
Plant Cell Physiol ; 49(8): 1185-95, 2008 Aug.
Article in English | MEDLINE | ID: mdl-18567893

ABSTRACT

Variations in the inulin contents have been detected in rhizophores of Vernonia herbacea during the phenological cycle. These variations indicate the occurrence of active inulin synthesis and depolymerization throughout the cycle and a role for this carbohydrate as a reserve compound. 1-Fructan exohydrolase (1-FEH) is the enzyme responsible for inulin depolymerization, and its activity has been detected in rhizophores of sprouting plants. Defoliation and low temperature are enhancer conditions of this 1-FEH activity. The aim of the present work was the cloning of this enzyme. Rhizophores were collected from plants induced to sprout, followed by storage at 5 degrees C. A full length 1-FEH cDNA sequence was obtained by PCR and inverse PCR techniques, and expressed in Pichia pastoris. Cold storage enhances FEH gene expression. Vh1-FEH was shown to be a functional 1-FEH, hydrolyzing predominantly beta-2,1 linkages, sharing high identity with chicory FEH sequences, and its activity was inhibited by 81% in the presence of 10 mM sucrose. In V. herbacea, low temperature and sucrose play a role in the control of fructan degradation. This is the first study concerning the cloning and functional analysis of a 1-FEH cDNA of a native species from the Brazilian Cerrado. Results will contribute to understanding the role of fructans in the establishment of a very successful fructan flora of the Brazilian Cerrado, subjected to water limitation and low temperature during winter.


Subject(s)
Glycoside Hydrolases/genetics , Glycoside Hydrolases/metabolism , Plant Proteins/genetics , Plant Proteins/metabolism , Vernonia/genetics , Vernonia/metabolism , Amino Acid Sequence , Cloning, Molecular , Gene Expression Regulation, Plant/physiology , Molecular Sequence Data , Phylogeny , Plant Proteins/chemistry
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