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1.
Indian J Exp Biol ; 2004 Jul; 42(7): 728-31
Artículo en Inglés | IMSEAR | ID: sea-56454

RESUMEN

Perception of microbial signal molecules is part of the strategy evolved by plants to survive attacks by potential pathogens. To gain a more complete understanding of the early signaling events involved in these responses, we used fungal components of Fusarium under in vitro condition and checked the rise in signal molecule, salicylic acid (SA), and marker enzymes in defense reactions against the pathogen. SA level increased by 21 folds in elicitor treated plantlets as compared to that of control plantlets and there was marked increase in phenylalanine ammonia-lyase(PAL), peroxidase(POX), polyphenol oxidase(PPO) along with higher total phenolic content. Present results indicated that use of fungal components had successfully induced systemic resistance in in vitro cultured banana plantlets.


Asunto(s)
Catecol Oxidasa/metabolismo , Fusarium/fisiología , Musa/enzimología , Peroxidasas/metabolismo , Fenilanina Amoníaco-Liasa/metabolismo , Ácido Salicílico/metabolismo
2.
Indian J Exp Biol ; 2004 Mar; 42(3): 244-52
Artículo en Inglés | IMSEAR | ID: sea-61433

RESUMEN

Plant immunization is the process of activating natural defense system present in plant induced by biotic or abiotic factors. Plants are pre-treated with inducing agents stimulate plant defense responses that form chemical or physical barriers that are used against the pathogen invasion. Inducers used usually give the signals to rouse the plant defense genes ultimately resulting into induced systemic resistance. In many plant-pathogen interactions, R-Avr gene interactions results in localized acquired resistance or hypersensitive response and at distal ends of plant, a broad spectrum resistance is induced known as systemic acquired resistance (SAR). Various biotic or abiotic factors induce systemic resistance in plants that is phenotypically similar to pathogen-induced systemic acquired resistance (SAR). Some of the biotic or abiotic determinants induce systemic resistance in plants through salicylic acid (SA) dependent SAR pathway, others require jasmonic acid (JA) or ethylene. Host plant remains in induced condition for a period of time, and upon challenge inoculation, resistance responses are accelerated and enhanced. Induced systemic resistance (ISR) is effective under field conditions and offers a natural mechanism for biological control of plant disease.


Asunto(s)
Regulación de la Expresión Génica de las Plantas , Genes de Plantas , Inmunidad Innata , Inmunización , Enfermedades de las Plantas , Plantas/inmunología , Especies Reactivas de Oxígeno , Transducción de Señal
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