Literature DB >> 8038607

Gene expression in tobacco low-nicotine mutants.

N Hibi1, S Higashiguchi, T Hashimoto, Y Yamada.   

Abstract

Two nuclear genes, Nic1 and Nic2, regulate nicotine levels in tobacco. nic1 and nic2 are semidominant mutations in Burley 21 that reduce leaf nicotine levels and the activities of multiple enzymes in the nicotine pathway and simultaneously increase polyamine levels in cultured roots. Cultured roots homozygous for both mutations were used to isolate two cDNAs by subtraction hybridization; the transcript levels of these two cDNAs were much lower in the mutant roots than in the wild-type roots. The A411 gene encodes a 41-kD protein with considerable homology to mammalian spermidine synthase, whereas the A622 gene encodes a 35-kD protein with high homology to isoflavone reductase. When these genes were expressed in Escherichia coli, A411 had no spermidine synthase activity but did show putrescine N-methyltransferase activity, which is the first enzyme committed to the nicotine biosynthetic pathway, and A622 did not show isoflavone reductase activity. Both the methyltransferase and A622 genes are predominantly expressed in the root, and their expression levels in cultured roots are coordinately decreased by the nic mutations in the order of wild type > nic2 > nic1 > nic1 nic2. Removal of tobacco flower heads and young leaves rapidly and coordinately induced both genes in the root. Further, exogenous supply of auxin down-regulated both genes in cultured tobacco roots. These results suggest that Nic1 and Nic2 are regulatory genes for nicotine biosynthesis.

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Year:  1994        PMID: 8038607      PMCID: PMC160471          DOI: 10.1105/tpc.6.5.723

Source DB:  PubMed          Journal:  Plant Cell        ISSN: 1040-4651            Impact factor:   11.277


  17 in total

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Review 2.  Genetic and developmental control of anthocyanin biosynthesis.

Authors:  H K Dooner; T P Robbins; R A Jorgensen
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Review 4.  Hybridization of nucleic acids immobilized on solid supports.

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Journal:  Nucleic Acids Res       Date:  1980-10-10       Impact factor: 16.971

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7.  Putrescine N-Methyltransferase in Cultured Roots of Hyoscyamus albus: n-Butylamine as a Potent Inhibitor of the Transferase both in Vitro and in Vivo.

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8.  Control of anthocyanin biosynthesis in flowers of Antirrhinum majus.

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9.  Pterocarpan phytoalexin biosynthesis in elicitor-challenged chickpea (Cicer arietinum L.) cell cultures. Purification, characterization and cDNA cloning of NADPH:isoflavone oxidoreductase.

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Journal:  Eur J Biochem       Date:  1991-09-15

10.  Studies of inhibition of rat spermidine synthase and spermine synthase.

Authors:  H Hibasami; R T Borchardt; S Y Chen; J K Coward; A E Pegg
Journal:  Biochem J       Date:  1980-05-01       Impact factor: 3.857

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  73 in total

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Journal:  Proc Natl Acad Sci U S A       Date:  2011-10-17       Impact factor: 11.205

4.  Putrescine N-methyltransferases--a structure-function analysis.

Authors:  Michael Teuber; Mohammad E Azemi; Foroogh Namjoyan; Anna-Carolin Meier; Anja Wodak; Wolfgang Brandt; Birgit Dräger
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6.  Isolation and Characterization of Reticuline N-Methyltransferase Involved in Biosynthesis of the Aporphine Alkaloid Magnoflorine in Opium Poppy.

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7.  The promoter of a gene encoding an isoflavone reductase-like protein in coffee (Coffea arabica) drives a stress-responsive expression in leaves.

Authors:  Marcos Brandalise; Fabio E Severino; Mirian P Maluf; Ivan G Maia
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8.  Engineering tropane biosynthetic pathway in Hyoscyamus niger hairy root cultures.

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9.  Alteration of the alkaloid profile in genetically modified tobacco reveals a role of methylenetetrahydrofolate reductase in nicotine N-demethylation.

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10.  Intraspecific variability of the tandem repeats in Nicotiana putrescine N-methyltransferases.

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