Molecular cloning and functional characterization of two kinds of betaine-aldehyde dehydrogenase in betaine-accumulating mangrove Avicennia marina (Forsk.) Vierh.
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作者:
Takashi Hibino
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机构:Meijo University,Faculty of Science & Technology
Takashi Hibino
Yu-Ling Meng
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机构:Meijo University,Faculty of Science & Technology
Yu-Ling Meng
Yoshinobu Kawamitsu
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机构:Meijo University,Faculty of Science & Technology
Yoshinobu Kawamitsu
Naoko Uehara
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机构:Meijo University,Faculty of Science & Technology
Naoko Uehara
Nobuyuki Matsuda
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机构:Meijo University,Faculty of Science & Technology
Nobuyuki Matsuda
Yoshito Tanaka
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机构:Meijo University,Faculty of Science & Technology
Yoshito Tanaka
Hiroshi Ishikawa
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机构:Meijo University,Faculty of Science & Technology
Hiroshi Ishikawa
Shigeyuki Baba
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机构:Meijo University,Faculty of Science & Technology
Shigeyuki Baba
Tetsuko Takabe
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机构:Meijo University,Faculty of Science & Technology
Tetsuko Takabe
Keishiro Wada
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机构:Meijo University,Faculty of Science & Technology
Keishiro Wada
Tadashi Ishii
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机构:Meijo University,Faculty of Science & Technology
Tadashi Ishii
Teruhiro Takabe
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机构:Meijo University,Faculty of Science & Technology
Teruhiro Takabe
机构:
[1] Meijo University,Faculty of Science & Technology
[2] Research Institute of Meijo University,Faculty of Agriculture
[3] University of the Ryukyus,Graduate School of Agricultural Science
[4] Nagoya University,Faculty of Science
[5] Kanazawa University,undefined
[6] Forestry and Products Research Institute,undefined
betaine;
betaine aldehyde dehydrogenase;
mangrove;
salt tolerance;
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摘要:
Glycinebetaine is an important osmoprotectant in bacteria, plants, and animals, but only little information is available on the synthesis of glycinebetaine in tree plants. Among four mangrove species, glycinebetaine could be detected only in Avicennia marina. Pinitol was the main osmoprotectant in the other three species. The level of glycinebetaine in A. marina increased under high salinity. Betaine-aldehyde dehydrogenase (BADH) was detected in all four species, but choline monooxygenase could not be detected. A cDNA library was constructed from the leaves of A. marina. Two kinds of BADH cDNAs were isolated, one homologous to the spinach chloroplast BADH, and the other with unique residues SKL at the end of C-terminus. The BADH transcription levels of the former were higher than those of the latter. The levels of the former BADH increased at high salinity whereas those of the latter were independent of salinity. BADHs were expressed in Escherichia coli and purified. Two kinds of A. marina BADHs exhibited similar kinetic and stability properties, but were significantly different from those of spinach BADH. A. marina BADHs efficiently catalyzed the oxidation of betainealdehyde, but not the oxidation of ω-aminoaldehydes and were more stable at high temperature than the spinach BADH.