Literature DB >> 1600940

A novel methyl transferase induced by osmotic stress in the facultative halophyte Mesembryanthemum crystallinum.

D M Vernon1, H J Bohnert.   

Abstract

Molecular mechanisms of osmotic stress tolerance were studied in Mesembryanthemum crystallinum (ice plant), a facultative halophyte capable of adjusting to and surviving in highly saline conditions. We screened a subtracted cDNA library enriched for salt stress-induced mRNAs to identify transcripts involved in this plant's adaptation to salinity. One mRNA, Imt1, was found to be up-regulated in leaves and, transiently, in roots. Nuclear run-on assays indicated that this mRNA is transcriptionally regulated. Imt1 encoded a predicted polypeptide of M(r) 40,250 which exhibited sequence similarity to several hydroxymethyl transferases. Expression of the protein in Escherichia coli and subsequent activity assays identified the protein as a novel myoinositol O-methyl transferase which catalyzes the first step in the biosynthesis of the cyclic sugar alcohol pinitol. Pinitol accumulates in salt-stressed M.crystallinum and is abundant in a number of salt- and drought-tolerant plants. The presence of high levels of sugar alcohols correlates with osmotolerance in a diverse range of organisms, including bacteria, fungi and algae, as well as higher plants. The stress-initiated transcriptional induction of IMT1 expression in a facultative halophyte provides strong support for the importance of sugar alcohols in establishing tolerance to osmotic stress in higher plants.

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Year:  1992        PMID: 1600940      PMCID: PMC556674          DOI: 10.1002/j.1460-2075.1992.tb05266.x

Source DB:  PubMed          Journal:  EMBO J        ISSN: 0261-4189            Impact factor:   11.598


  32 in total

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2.  Version 5 of the Mount-Conrad-Myers Sequence Analysis Software Package now available.

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Authors:  J Gómez; D Sánchez-Martínez; V Stiefel; J Rigau; P Puigdomènech; M Pagès
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Journal:  Plant Physiol       Date:  1991-09       Impact factor: 8.340

5.  Expression of two soybean vegetative storage protein genes during development and in response to water deficit, wounding, and jasmonic acid.

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6.  Characterization of a rice gene showing organ-specific expression in response to salt stress and drought.

Authors:  B Claes; R Dekeyser; R Villarroel; M Van den Bulcke; G Bauw; M Van Montagu; A Caplan
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7.  Molecular cloning and nucleotide sequence of cDNA encoding hydroxyindole O-methyltransferase of bovine pineal glands.

Authors:  I Ishida; M Obinata; T Deguchi
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Authors:  J A Ostrem; D M Vernon; H J Bohnert
Journal:  J Biol Chem       Date:  1990-02-25       Impact factor: 5.157

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Authors:  S Ghosh; S Gepstein; J J Heikkila; E B Dumbroff
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Authors:  J Mundy; N H Chua
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  51 in total

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Authors:  Jyisy Yang; Hungchen E Yen
Journal:  Plant Physiol       Date:  2002-10       Impact factor: 8.340

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Authors:  C B Michalowski; H J Bohnert
Journal:  Plant Physiol       Date:  1992-09       Impact factor: 8.340

4.  Adaptations to Environmental Stresses.

Authors:  H. J. Bohnert; D. E. Nelson; R. G. Jensen
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8.  Root-Zone Salinity Alters Raffinose Oligosaccharide Metabolism and Transport in Coleus.

Authors:  G. A. Gilbert; C. Wilson; M. A. Madore
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9.  L-myo-lnositol 1-Phosphate Synthase from Plant Sources (Characteristics of the Chloroplastic and Cytosolic Enzymes).

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10.  Long term transcript accumulation during the development of dehydration adaptation in Cicer arietinum.

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