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H₂O₂ and NO: redox signals in disease resistance

Wim Van Camp (UGent) , Marc Van Montagu (UGent) and Dirk Inzé (UGent)
(1998) TRENDS IN PLANT SCIENCE. 3(9). p.330-334
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ACCUMULATION, ACTIVATION, PLANTS, CELL-DEATH, DEFENSE RESPONSES, TRANSLOCATED SIGNAL, SYSTEMIC ACQUIRED-RESISTANCE, SALICYLIC-ACID, TRANSGENIC TOBACCO, OXIDATIVE BURST

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Citation

Please use this url to cite or link to this publication:

Chicago
Van Camp, Wim, Marc Van Montagu, and Dirk Inzé. 1998. “H₂O₂ and NO: Redox Signals in Disease Resistance.” Trends in Plant Science 3 (9): 330–334.
APA
Van Camp, Wim, Van Montagu, M., & Inzé, D. (1998). H₂O₂ and NO: redox signals in disease resistance. TRENDS IN PLANT SCIENCE, 3(9), 330–334.
Vancouver
1.
Van Camp W, Van Montagu M, Inzé D. H₂O₂ and NO: redox signals in disease resistance. TRENDS IN PLANT SCIENCE. 1998;3(9):330–4.
MLA
Van Camp, Wim, Marc Van Montagu, and Dirk Inzé. “H₂O₂ and NO: Redox Signals in Disease Resistance.” TRENDS IN PLANT SCIENCE 3.9 (1998): 330–334. Print.
@article{179947,
  author       = {Van Camp, Wim and Van Montagu, Marc and Inz{\'e}, Dirk},
  issn         = {1360-1385},
  journal      = {TRENDS IN PLANT SCIENCE},
  keyword      = {ACCUMULATION,ACTIVATION,PLANTS,CELL-DEATH,DEFENSE RESPONSES,TRANSLOCATED SIGNAL,SYSTEMIC ACQUIRED-RESISTANCE,SALICYLIC-ACID,TRANSGENIC TOBACCO,OXIDATIVE BURST},
  language     = {eng},
  number       = {9},
  pages        = {330--334},
  title        = {H\unmatched{2082}O\unmatched{2082} and NO: redox signals in disease resistance},
  url          = {http://dx.doi.org/10.1016/S1360-1385(98)01297-7},
  volume       = {3},
  year         = {1998},
}

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