African Journal of
Microbiology Research

  • Abbreviation: Afr. J. Microbiol. Res.
  • Language: English
  • ISSN: 1996-0808
  • DOI: 10.5897/AJMR
  • Start Year: 2007
  • Published Articles: 5242

Full Length Research Paper

Induction of defense mechanisms from filtrates of saprophytic fungi against early blight disease in tomato

Antônio Jussiê da Silva Solino
  • Antônio Jussiê da Silva Solino
  • University State of Maringa, Brazil.
  • Google Scholar
Kátia Regina Freitas Schwan-Estrada
  • Kátia Regina Freitas Schwan-Estrada
  • University State of Maringa, Brazil.
  • Google Scholar
Juliana Santos Batista Oliveira
  • Juliana Santos Batista Oliveira
  • University State of Maringa, Brazil.
  • Google Scholar
Marianna dos Santos Rodrigues Alencar
  • Marianna dos Santos Rodrigues Alencar
  • University State of Maringa, Brazil.
  • Google Scholar
Lilianne Martins Ribeiro
  • Lilianne Martins Ribeiro
  • University State of Maringa, Brazil.
  • Google Scholar


  •  Received: 12 May 2016
  •  Accepted: 31 August 2016
  •  Published: 28 November 2016

References

Akram W, Anjum T (2011). Quantitative changes in defense system of tomato induced by two strains of Bacillus against Fusarium Wilt. Ind. J. Fund. Appl. Life Sci. 1(3):7-13.

 

Apel K, Hirt H (2004). Reactive oxygen species: metabolism, oxidative stress, and signal transduction. Annu. Rev. Plant Biol. 55:373-399.
Crossref

 
 

Balbi-Pe-a MI, Becker A, Stangarlin JR, Franzener G, Lopes MC, Schwan-Estrada KRF (2006). Controle de Alternaria solani em Tomateiro por Extratos de Curcuma longa e Curcumina - II. Avaliação in vivo. Fitopatol. Bras. 31(4):401-404.

 
 

Boff P (1988). Epidemiologia e controle químico da mancha de estenfílio (Stemphylium solani Weber) e da pinta preta (Alternaria solani (Ellis, Martin) Jones, Grout em dois sistemas de condução do tomateiro (Lycopersicon esculentum Mill). Viçosa, Brasil: Universidade Federal de Viçosa, PhD dissertation.

 
 

Brencic A, Winans SC (2005). Detection of and Response to Signals Involved in Host-Microbe Interactions by Plant-Associated Bacteria. Microbiol. Mol. Biol. Rev. 69(1):155-194.
Crossref

 
 

Campbell CL, Madden LV (1990). Introduction to Plant Disease Epidemiology. New York, NY: Wiley & Sons.

 
 

Cavalcanti FR, Resende MLV, Lima JPM, Silveira JAF, Oliveira JTA (2006). Activities of antioxidant enzymes and photosynthetic responses in tomato pre-treated by plant activators and inoculated by Xanthomonas vesicatoria. Physiol. Mol. Plant Pathol. 68:198-208.
Crossref

 
 

Cavalcanti FR, Resende MLV, Oliveira JT A (2007). Peroxidases ativadas por frações protéicas de extrato biológico eficaz na proteção do tomateiro contra a mancha bacteriana. Fitop. Brasileira, 32(6):507-511.

 
 

Chmielowska J, Deckert J, Díaz J (2008). Activity of peroxidases and phenylalanine ammonia-lyase in lupine and soybean seedlings treated with copper and an ethylene inhibitor. Biol. Lett. 45:59-67.

 
 

Choudhary DK, Johri APJ (2007). Induced systemic resistance (ISR) in plants: mechanism of action. Ind. J. Microbiol. 47:289-297.
Crossref

 
 

Chowdappa P, Mohan Kumar SP, Jyothi Lakshmi M, Upreti KK (2013). Growth stimulation and induction of systemic resistance in tomato against early and late blight by Bacillus subtilis OTPB1 or Trichoderma harzianumm OTPB2. Biol. Control 65(1):109-111.
Crossref

 
 

Conrath U, Beckers GJM, Flors V, García-Agustín P, Jakab G, Mauch F, Newman M, Pieterse CMJ, Poinssot B, Pozo MJ, Pugin A, Schaffrath U, Ton J, Wendehenne D, Zimmerli Laurent, Mauch-Mani B (2006). Priming:Getting Ready for Battle. Mol. Plant Microbe Interact. 19(10):1062-1071.
Crossref

 
 

Conrath U, Pieterse CMJ, Mauch-Mani B (2002). Priming in plant-pathogen interactions. Trends Plant Sci. 7(1): 210-216.
Crossref

 
 

Dubery IA, Sanabria NM, Huang JC (2012). Nonself perception in plant innate immunity. In. Lopes-Larrea C, eds. Self and Nonself. Landes Bioscience and Springer Science+Business Media. 738:79-107.
Crossref

 
 

Garcia-Cristobal J, Garcia-Villaraco A, Ramos B, Gutirrez-Ma-ero J, Lucas JA (2015). Priming of pathogenesis related proteins and enzymes relate to oxidative stress by plant growth promoting Rhizobacteria on rice plants upon abiotic and biotic stress challenge. J. Plant Physiol. 1(188):72-79.
Crossref

 
 

Góth L (1991). A simple method for determination of serum catalase activity and revision of reference range. Clin. Chim. Acta 196(2-3):143-151.
Crossref

 
 

Han C, Liu Q, Yang DY (2009). Short-term effects of experimental warming and enhanced ultraviolet-B radiation on photosynthesis and antioxidant defense of Picea asperata seedlings. Plant Growth Regul. 58(2):153-162.
Crossref

 
 

Henry G, Thonart P, Ongena M (2012). PAMPs, MAMPs, DAMPs and others: an update on the diversity of plant immunity elicitors. Biotechnol. Agron. Soc. Environ. 16(2):257-268.

 
 

Kishor PB, Sangam S, Amrutha RN, Laxmi PS, Naidu KR, Rao KRSS, Rao S, Reddy KJ, Theriappan P, Sreenviasulu N (2005). Regulation of proline biosynthesis, degradation, uptake and transport in higher plants: Its implications in plant growth and abiotic stress tolerance. Curr. Sci. 88(3):424-438.

 
 

Lister CE, Lancaster JE (1996). Phenylalanine ammonia-lyase (PAL) activity and its relationship to anthocyanin and flavonoid levels in New Zealand-grown apple cultivars. J. Am. Soc. Hortic. Sci. 121(2):281-285.

 
 

Mallick N, Mohn FH (2000). Reactive oxygen species: response of algal cells. J. Plant Physiol. 157:183-193.
Crossref

 
 

Maschietto V, Lanubile A, Leonardes S, Marocco A, Paciolla C (2016). Constituitive expression of pathogenesis-related proteins and antioxydant enzyme activities triggers maize resistance towards Fusarium verticillioides. J. Plant Physiol. 200:53-61.
Crossref

 
 

Nakazawa A, Nozue M, Yasuda H, Takeda G, Kubo H (2001). Expression pattern and gene structure of phenylalanine ammonia-lyase in Pharbitis nil. J. Plant Res. 114:323-328.
Crossref

 
 

Resende RS, Milagres CA, Rezende D, Aucique-Perez CE, Rodrigues FA (2015). Bioprospecting of Saprobe Fungi from the Semi-Arid North-East of Brazil for the Control of Anthracnose on Sorghum. J. Phytopathol. 163(10):787-794.
Crossref

 
 

Sen P, Mukherjee S, Bhhaumik G, Dasb P, Ganguly S, Choudhury N, Raha S (2003). Enhancement of catalase activity by repetitive low-grade H2O2 exposures protects fibroblasts from subsequente stress-induced apoptosis. Mutat. Res. 529:87-94.
Crossref

 
 

Sharma P, Jha AB, Dubey RS, Pessarakli M (2012). Reactive oxygen species, oxidative damage, and antioxidative defense mechanism in plants under stressful conditions. J. Bot. 1:1-26.
Crossref

 
 

Tofoli JG, Domingues RJ, Garcia Junior O, Kurozawa C (2003). Controle da pinta preta do tomateiro por fungicidas e seus impactos na produção. Summa Phytopol. 29(3):225-233.

 
 

Umesha S (2006). Phenylalanine ammonia liase activity in tomato seedings and its relationship to bacterial canker disease resistance. Phytoparasitica 34:68-71.
Crossref

 
 

Van Loon LC, Rep M, Pieterse CMJ (2006). Significance of inducible defense-related proteins in infected plants. Ann. Rev. Phytopathol. 44:155-162.
Crossref