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Journal of Experimental Botany 2007 58(15-16):4203-4212; doi:10.1093/jxb/erm278
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© The Author [2007]. Published by Oxford University Press [on behalf of the Society for Experimental Biology]. All rights reserved. For Permissions, please e-mail: journals.permissions@oxfordjournals.org

RESEARCH PAPER

Regulation of betaine synthesis by precursor supply and choline monooxygenase expression in Amaranthus tricolor

Nazmul H. Bhuiyan1, Akira Hamada1, Nana Yamada2, Vandna Rai1, Takashi Hibino2 and Teruhiro Takabe1,*

1Research Institute, Meijo University, Nagoya, 468-8502, Japan
2Graduate School of Environmental and Human Sciences, Meijo University, Nagoya, 468-8502, Japan

* To whom correspondence should be addressed. E-mail: takabe{at}ccmfs.meijo-u.ac.jp

In plants, betaine is synthesized upon abiotic stress via choline oxidation, in which choline monooxygenase (CMO) is a key enzyme. Although it had been thought that betaine synthesis is well regulated to protect abiotic stress, it is shown here that an exogenous supply of precursors such as choline, serine, and glycine in the betaine-accumulating plant Amaranthus tricolor further enhances the accumulation of betaine under salt stress, but not under normal conditions. Addition of isonicotinic acid hydrazide, an inhibitor of glycine decarboxylase, inhibited the salinity-induced accumulation of betaine. Salt-induced accumulation of A. tricolor CMO (AmCMO) and betaine was much slower in roots than in leaves, and a transient accumulation of proline was observed in the roots. Antisense expression of AmCMO mRNA suppressed the salt-induced accumulation of AmCMO and betaine, but increased the level of choline ~2– 3-fold. This indicates that betaine synthesis is highly regulated by AmCMO expression. The genomic DNA, including the upstream region (1.6 kbp), of AmCMO was isolated. Deletion analysis of the AmCMO promoter region revealed that the 410 bp fragment upstream of the translation start codon contains the sequence responsive to salt stress. These data reveal that the promoter sequence of CMO, in addition to precursor supply, is important for the accumulation of betaine in the betaine-accumulating plant A. tricolor.

Key words: Abiotic stress, Amaranthus, betaine, choline monooxygenase, glycine, salt stress, serine

Received 18 June 2007; Revised 15 October 2007 Accepted 18 October 2007


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