African Journal of
Microbiology Research

  • Abbreviation: Afr. J. Microbiol. Res.
  • Language: English
  • ISSN: 1996-0808
  • DOI: 10.5897/AJMR
  • Start Year: 2007
  • Published Articles: 5233

Full Length Research Paper

In vitro activities of Trichoderma species against Phytophthora parasitica and Fusarium oxysporum

E. Osorio-Hernández*
  • E. Osorio-Hernández*
  • Facultad de Ingeniería y Ciencias de la Universidad Autónoma de Tamaulipas, Cd. Vitoria, 87000, Tamaulipas, México.
  • Google Scholar
J. Hernández-Morales
  • J. Hernández-Morales
  • Colegio de Postgraduados, Montecillo, 56230, Estado de México, México.
  • Google Scholar
V. Conde-Martínez
  • V. Conde-Martínez
  • Colegio de Postgraduados, Montecillo, 56230, Estado de México, México.
  • Google Scholar
A. C. Michel-Aceves
  • A. C. Michel-Aceves
  • Centro de Estudios Profesionales del Colegio Superior Agropecuario del Estado de Guerrero, Colonia Centro. Iguala, 40000, Guerrero, México.
  • Google Scholar
J. A. Lopez-Santillan
  • J. A. Lopez-Santillan
  • Facultad de Ingeniería y Ciencias de la Universidad Autónoma de Tamaulipas, Cd. Vitoria, 87000, Tamaulipas, México.
  • Google Scholar
J. A. Torres-Castillo
  • J. A. Torres-Castillo
  • Universidad Autónoma de Tamaulipas-Instituto de Ecología Aplicada, Cd. Vitoria, 87029 Tamaulipas, México.
  • Google Scholar


  •  Received: 09 February 2016
  •  Accepted: 08 April 2016
  •  Published: 21 April 2016

References

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Anitha A, Rabeeth M (2010). Degradation of fungal cell walls of phytopathogenic fungi by lytic enzyme of Streptomyces griseus. Afr. J. Plant Sci. 4:061-066.

 

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Esparza-Luna, LL (2009). In vitro effectivity natives strains of Trichoderma spp. In isolates of Phytophythora parasitica D. that was obtained of plants of roselle. Master Thesis, Colegio de Postgraduados, campus Montecillo.

 

Gajera HP, Bambharolia RP, Patel SV, Khatrani TJ, Goalkiya BA (2012). Antagonism of Trichoderma spp. against Macrophomina phaseolina: Evaluation of Coiling and Cell Wall Degrading Enzymatic Activities. J. Plant Pathol. Microb. 3:149.

 

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González I, Infante D, Peteira B, Martínez B, Arias Y, González N, Miranda I (2011). Biochemical characterization of promising isolates of Trichoderma spp. as biological control agents. II. Expression of glucanase activity. Rev. Protección Veg. 26:23-29.

 

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Lee CK, Darah I, Ibrahim CO (2012). Production and optimization of cellulase enzyme using Aspergillus niger USM AI 1 and comparison with Trichoderma reesei via solid state fermentation system. Biotechnol. Res. Int. pp. 1-6.

 

Leslie JF, Summerell BA (2006). The Laboratory Fusarium. Manual. Blackwell Publishing. Ames, Iowa, USA. 2:10.
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Lima L, De Marco JL, Ulhoa CJ, Felix CR (1999). Synthesis of Trichoderma chitinase which affects the Sclerotium rolfsii and Rhizoctonia solani cell walls. Folia Microbiol. 44:45-49.
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Lucas AJ, Bower LA, Coffey MD (2008). Fungicide resistance in soil-borne Phytophthora species. EPPO Bull. 1365-2338.

 

Martin NF, Blair J, Coffey E, Michael DA (2014). Combined mitochondrial and nuclear multilocus phylogeny of the genus Phytophthora. Fung. Genet. Biol. 66:19-32.
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Medentsev AG, Arinbasarova AY, Akimenko VK (2005). Biosynthesis of naphthoquinone pigments by fungi of the genus Fusarium. Appl. Biochem. Microbiol. 41(5):573-577.
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Michel-Aceves AC, Otero-Sánchez MA, Rebolledo-Domínguez O, Lezama-Gutiérrez R, Ochoa-Moreno ME (2005). Production and antagonistic effect of chitinases and glucanases from Trichoderma spp. in the inhibition of Fusarium oxysporum and Fusarium subglutinans in vitro. Revista Chapingo Serie Horticultura 11:273-278.

 

Nelson PE, Desjardins AE, Plattner RD (1993). Fumonisins, mycotoxins produced by Fusarium species: Biology, chemistry, and significance. Ann. Rev. Phytopathol. 31:233-252.
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Parmar HJ, Bodar NP, Lakhani HN, Patel SV, Umrania VV, Hassan MM (2015). Production of lytic enzymes by Trichoderma strains during in vitro antagonism with Sclerotium rolfsii, the causal agent of stem rot of groundnut. Afr. J. Microbiol. Res. 9(6):365-372.
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SAS OnlineDoc® 9 Copyright © (2002). By SAS Institute Inc. Cary NC USA.

 

Vinale F, Sivasithamparam K, Ghisalberti EL, Woo SL, Nigro M, Marra R, Lombardi N, Pascale A, Ruocco M, Lanzuise S, Manganiello G, Lorito M (2014). Trichoderma Secondary Metabolites Active on Plants and Fungal Pathogens. Open Mycol. J. 8:127-139.
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Zeilinger S, Omann M (2007). Trichoderma biocontrol: Signal transduction pathways involved in host sensing and mycoparasitism. Gene. Regul. Syst. Biol. 1:227-234.