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Journal Abstract Search


332 related items for PubMed ID: 15148388

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  • 4. TRANSCRIPTION ACTIVATOR-LIKE EFFECTOR NUCLEASE-Mediated Generation and Metabolic Analysis of Camalexin-Deficient cyp71a12 cyp71a13 Double Knockout Lines.
    Müller TM, Böttcher C, Morbitzer R, Götz CC, Lehmann J, Lahaye T, Glawischnig E.
    Plant Physiol; 2015 Jul; 168(3):849-58. PubMed ID: 25953104
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  • 6. Disease resistance of Arabidopsis to Phytophthora brassicae is established by the sequential action of indole glucosinolates and camalexin.
    Schlaeppi K, Abou-Mansour E, Buchala A, Mauch F.
    Plant J; 2010 Jun 01; 62(5):840-51. PubMed ID: 20230487
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  • 8. Regulation of Pathogen-Triggered Tryptophan Metabolism in Arabidopsis thaliana by MYB Transcription Factors and Indole Glucosinolate Conversion Products.
    Frerigmann H, Piślewska-Bednarek M, Sánchez-Vallet A, Molina A, Glawischnig E, Gigolashvili T, Bednarek P.
    Mol Plant; 2016 May 02; 9(5):682-695. PubMed ID: 26802248
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  • 12. Indole Glucosinolate Biosynthesis Limits Phenylpropanoid Accumulation in Arabidopsis thaliana.
    Kim JI, Dolan WL, Anderson NA, Chapple C.
    Plant Cell; 2015 May 02; 27(5):1529-46. PubMed ID: 25944103
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  • 14. The multifunctional enzyme CYP71B15 (PHYTOALEXIN DEFICIENT3) converts cysteine-indole-3-acetonitrile to camalexin in the indole-3-acetonitrile metabolic network of Arabidopsis thaliana.
    Böttcher C, Westphal L, Schmotz C, Prade E, Scheel D, Glawischnig E.
    Plant Cell; 2009 Jun 02; 21(6):1830-45. PubMed ID: 19567706
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  • 18. A fast and precise method to identify indolic glucosinolates and camalexin in plants by combining mass spectrometric and biological information.
    Zandalinas SI, Vives-Peris V, Gómez-Cadenas A, Arbona V.
    J Agric Food Chem; 2012 Sep 05; 60(35):8648-58. PubMed ID: 22870889
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