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1.
Plant Physiol Biochem ; 73: 161-7, 2013 Dec.
Article in English | MEDLINE | ID: mdl-24121417

ABSTRACT

Flavonoid are known to have various functions in growth, development, reproduction, and also involved in diverse stress responses in plants. However, little is known about the roles of the key enzymes in the flavonoid biosynthetic pathway in response to environmental stress, such as UV-B radiation and drought. To understand this problem, we investigated the participation of flavanone 3-hydroxylase gene (F3H), a key enzyme in flavonoid biosynthetic pathway under UV-B radiation and drought stress in the desert plant Reaumuria soongorica. A novel cDNA sequence, named as RsF3H, was isolated from R. soongorica. The deduced amino acids showed high identities to other F3Hs. A phylogenetic analysis indicated that RsF3H appeared to be most homologous to F3H from Malus domestica (MdF3H). RsF3H protein structure contained all five conserved motifs for 2-oxoglutarate-dependent dioxygenases (2-ODDs) and an Arg-X-Ser motif, all of which were also found in other F3Hs. Quantitative real-time RT-PCR analysis showed that there was a rapid increase in gene expression of RsF3H under stress. Both UV-B radiation and drought stress induced an increase in RsF3H enzyme activity and the accumulation of the products in the flavonoid biosynthetic pathway (total flavonoid and anthocyanin). The antioxidant ability (inhibition of lipid oxidation) of total flavonoid was enhanced during this study. The results suggested that one explanation of the stress tolerance of R. soongorica may be a combination of an increase in RsF3H gene expression, RsF3H enzyme activity and the anti-oxidative ability of the metabolic end products in the flavonoid biosynthetic pathway in response to UV-B radiation and drought.


Subject(s)
Adaptation, Physiological/genetics , Droughts , Flavonoids/genetics , Gene Expression Regulation, Plant , Mixed Function Oxygenases/genetics , Tamaricaceae/genetics , Ultraviolet Rays , Amino Acid Sequence , Desert Climate , Flavanones/genetics , Flavanones/metabolism , Flavonoids/biosynthesis , Genes, Plant , Mixed Function Oxygenases/metabolism , Molecular Sequence Data , Plant Proteins/genetics , Plant Proteins/metabolism , Stress, Physiological/genetics , Tamaricaceae/enzymology , Tamaricaceae/physiology , Tamaricaceae/radiation effects
2.
Phytochemistry ; 72(16): 1978-89, 2011 Nov.
Article in English | MEDLINE | ID: mdl-21831401

ABSTRACT

Shoot cultures of Tamarix tetrandra on Linsmaier-Skoog (LS) agar medium with 30 g l(-1) sucrose, 2.13 mg l(-1) indoleacetic acid and 2.25 mg l(-1) benzyl adenine produced ellagitannins found in intact plants of the Tamaricaceae. This was demonstrated by the isolation of 14 monomeric-tetrameric ellagitannins from the aq. Me2CO extract of the cultured tissues. This is the first report on the production of ellagitannin tetramers by plant tissue culture. The effects of light and certain medium constituents on tissue growth and ellagitannin production were examined. The contents of representative tannins of different types [i.e., tellimagrandin II (monomer), hirtellin A (linear GOG-type dimer), hirtellin B (hellinoyl-type dimer), hirtellin C (macrocyclic-type dimer), and hirtellin T1 (linear GOG-type trimer)] in the resultant tissues in response to these factors were estimated by HPLC, and the optimal condition for production of these tannins were established. Shoots cultured on LS hormone-free medium promoted root development, and regenerated plants could adapt to ordinary soil and climate. Acclimatized and intact T. tetrandra plants that were collected in November and May, respectively, demonstrated seasonal differences in individual ellagitannin contents. HPLC comparison of individual ellagitannin contents in different plant materials (i.e., leaves, stems, and roots) of intact T. tetrandra plants is also reported. The results are discussed with respect to cellular deposition and biosynthetic relationship of tannins.


Subject(s)
Hydrolyzable Tannins/metabolism , Tamaricaceae/metabolism , Copper/pharmacology , Culture Media , Hydrolyzable Tannins/chemistry , Hydrolyzable Tannins/isolation & purification , Nitrogen/pharmacology , Plant Shoots/drug effects , Plant Shoots/growth & development , Plant Shoots/metabolism , Plant Shoots/radiation effects , Seasons , Sucrose/pharmacology , Tamaricaceae/drug effects , Tamaricaceae/growth & development , Tamaricaceae/radiation effects , Tissue Culture Techniques
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