Literature DB >> 12231791

Induction of UDP-Glucose:Salicylic Acid Glucosyltransferase Activity in Tobacco Mosaic Virus-Inoculated Tobacco (Nicotiana tabacum) Leaves.

A. J. Enyedi1, I. Raskin.   

Abstract

Salicylic acid (SA) is a putative signal that activates plant resistance to pathogens. SA levels increase systemically following the hypersensitive response produced by tobacco mosaic virus (TMV) inoculation of tobacco (Nicotiana tabacum L. cv Xanthi-nc) leaves. The SA increase in the inoculated leaf coincided with the appearance of a [beta]-glucosidase-hydrolyzable SA conjugate identified as [beta]-O-D-glucosylsalicylic acid (GSA). SA and GSA accumulation in the TMV-inoculated leaf paralleled the increase in the activity of a UDP-glucose:salicylic acid 3-O-glucosyltransferase (EC 2.4.1.35) ([beta]-GTase) capable of converting SA to GSA. Healthy tissues had constitutive [beta]-GTase activity of 0.076 milliunits g-1 fresh weight. This activity started to increase 48 h after TMV inoculation, reaching its maximum (6.7-fold induction over the basal levels) 72 h after TMV inoculation. No significant GSA or elevated [beta]-Gtase activity could be detected in the healthy leaf immediately above the TMV-inoculated leaf. The effect of TMV inoculation on the [beta]-GTase and GSA accumulation could be duplicated by infiltrating tobacco leaf discs with SA at the levels naturally produced in TMV-inoculated leaves (2.7-27.0 [mu]g g-1 fresh weight). Pretreatment of leaf discs with the protein synthesis inhibitor cycloheximide inhibited the induction of [beta]-GTase by SA and prevented the formation of GSA. Of 12 analogs of SA tested, only 2,6-dihydroxybenzoic acid induced [beta]-GTase activity.

Entities:  

Year:  1993        PMID: 12231791      PMCID: PMC160662          DOI: 10.1104/pp.101.4.1375

Source DB:  PubMed          Journal:  Plant Physiol        ISSN: 0032-0889            Impact factor:   8.340


  9 in total

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3.  Temperature-Dependent Induction of Salicylic Acid and Its Conjugates during the Resistance Response to Tobacco Mosaic Virus Infection.

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Journal:  Plant Physiol       Date:  1982-07       Impact factor: 8.340

5.  Localization, conjugation, and function of salicylic acid in tobacco during the hypersensitive reaction to tobacco mosaic virus.

Authors:  A J Enyedi; N Yalpani; P Silverman; I Raskin
Journal:  Proc Natl Acad Sci U S A       Date:  1992-03-15       Impact factor: 11.205

6.  Coordinate Gene Activity in Response to Agents That Induce Systemic Acquired Resistance.

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Journal:  Plant Cell       Date:  1991-10       Impact factor: 11.277

7.  Increase in salicylic Acid at the onset of systemic acquired resistance in cucumber.

Authors:  J P Métraux; H Signer; J Ryals; E Ward; M Wyss-Benz; J Gaudin; K Raschdorf; E Schmid; W Blum; B Inverardi
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8.  Salicylic Acid: a likely endogenous signal in the resistance response of tobacco to viral infection.

Authors:  J Malamy; J P Carr; D F Klessig; I Raskin
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9.  Salicylic acid is a systemic signal and an inducer of pathogenesis-related proteins in virus-infected tobacco.

Authors:  N Yalpani; P Silverman; T M Wilson; D A Kleier; I Raskin
Journal:  Plant Cell       Date:  1991-08       Impact factor: 11.277

  9 in total
  19 in total

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Journal:  Plant Mol Biol       Date:  1994-12       Impact factor: 4.076

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4.  Induction of Benzoic Acid 2-Hydroxylase in Virus-Inoculated Tobacco.

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Journal:  Plant Physiol       Date:  1993-10       Impact factor: 8.340

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6.  Biosynthesis and metabolism of salicylic acid.

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Authors:  P. Silverman; M. Seskar; D. Kanter; P. Schweizer; J. P. Metraux; I. Raskin
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8.  Hydrogen Peroxide Stimulates Salicylic Acid Biosynthesis in Tobacco.

Authors:  J. Leon; M. A. Lawton; I. Raskin
Journal:  Plant Physiol       Date:  1995-08       Impact factor: 8.340

9.  Local and Systemic Biosynthesis of Salicylic Acid in Infected Cucumber Plants.

Authors:  P. Meuwly; W. Molders; A. Buchala; J. P. Metraux
Journal:  Plant Physiol       Date:  1995-11       Impact factor: 8.340

10.  The GH3 acyl adenylase family member PBS3 regulates salicylic acid-dependent defense responses in Arabidopsis.

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