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Soils from HNV agriculture systems as source of microorganisms with antifungal activity


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McQuilken MP, Gemmmel J, Lahdenpera ML. Gliocladium catenulatum as a potential biocontrol agent of damping-off in bedding plants. J Phytopathol 2001; 149: 171-178.10.1046/j.1439-0434.2001.00602.xMcQuilkenMPGemmmelJLahdenperaMLGliocladium catenulatum as a potential biocontrol agent of damping-off in bedding plantsJ Phytopathol2001149171178Open DOISearch in Google Scholar

Hassan S, Gupta G, Anand S, Chaturvedi A, Kaur H. Biopotential of microbial antagonists against soil borne fungal plant pathogens. Int J Agr Food Sci Technol 2013; 4(2): 37-39.HassanSGuptaGAnandSChaturvediAKaurHBiopotential of microbial antagonists against soil borne fungal plant pathogensInt J Agr Food Sci Technol2013423739Search in Google Scholar

Bergey DH, Holt JG. Bergey’s manual of determinative bacteriology 9. Williams & Wilkins Eds., Baltimore 1994.BergeyDHHoltJGBergey’s manual of determinative bacteriology 9Williams & Wilkins EdsBaltimore1994Search in Google Scholar

Domsch KH, Gams W. Fungi in agricultural soils. T&A Constable Ltd. Edinburg, London 1970.DomschKHGamsWFungi in agricultural soilsT&A Constable LtdEdinburg, London1970Search in Google Scholar

Watanabe T. Pictorial Atlas of Soil and Seed Fungi: Morphologies of Cultured Fungi and Key to Species 2nd ed. 2002; CRC PRESS.WatanabeTPictorial Atlas of Soil and Seed Fungi: Morphologies of Cultured Fungi and Key to Species 2nd ed2002CRC PRESS10.1201/9781420040821Search in Google Scholar

Matei S. Determination of soil respiration and microbial biomass. In: Dumitru M, Manea A(coord). Methods of chemical and microbiological analysis (utilized in soil monitoring system), (in Romanian). Ed. SITECH, Craiova 2011; p. 283-288.MateiSDetermination of soil respiration and microbial biomassDumitruMManeaAMethods of chemical and microbiological analysis (utilized in soil monitoring system), (in Romanian)Ed. SITECHCraiova2011283288Search in Google Scholar

Phuoc NT. Biological control of tomato root and stem rot caused by Sclerotinium rolfsii Sacc., ARC Training, 1988 Report-Tomato, p. 1-11.PhuocNTBiological control of tomato root and stem rot caused by Sclerotinium rolfsii SaccARC Training1988Report-Tomato111Search in Google Scholar

Rini CR, Sulochana KK. Usefulness of Trichoderma and Pseudomonas against Rhizoctonia solani and Fusarium oxysporum infecting tomato. Jpn J Trop Agr 2007; 45: 21-28.RiniCRSulochanaKKUsefulness of Trichoderma and Pseudomonas against Rhizoctonia solani and Fusarium oxysporum infecting tomatoJpn J Trop Agr2007452128Search in Google Scholar

Shahid M. Evaluation of antagonistic activity and shelf life study of Trichoderma viride (01-PP-8315/11). Adv In Life Sci 2012; 1: 138-140.ShahidMEvaluation of antagonistic activity and shelf life study of Trichoderma viride (01-PP-8315/11)Adv In Life Sci20121138140Search in Google Scholar

Matarese F, Sarrocco S, Gruber S, Seidl-Seiboth V, Vannacci G. Biocontrol of Fusarium head blight: interactions between Trichoderma and mycotoxigenic Fusarium Microbiol 2012; 158: 98-106.10.1099/mic.0.052639-0MatareseFSarroccoSGruberSSeidl-SeibothVVannacciGBiocontrol of Fusarium head blight: interactions between Trichoderma and mycotoxigenic FusariumMicrobiol20121589810621980117Open DOISearch in Google Scholar

Mitra J, Bhuvaneshwari V, Paul PK. Broad spectrum management of plant diseases by phylloplane microfungal metabolites. Arch Phytopatol Plant Prot 2013; http://dx.doi.org/1080/03235408.2013.782648MitraJBhuvaneshwariVPaulPKBroad spectrum management of plant diseases by phylloplane microfungal metabolitesArch Phytopatol Plant Prot2013http://dx.doi.org/1080/03235408.2013.78264810.1080/03235408.2013.782648Search in Google Scholar

Kukuc C, Kivanc M. Isolation of Trichoderma spp. and determination of their antifungal, biochemical and physiological features. Turk J Biol 2003; 27: 247-253.KukucCKivancMIsolation of Trichoderma spp. and determination of their antifungal, biochemical and physiological featuresTurk J Biol200327247253Search in Google Scholar

Zeilinger S, Osmann M. Trichoderma biocontrol: signal transduction pathways involved in host sensing and mycoparasitism. Gene Reg Sys Biol 2007; 1: 227-234.ZeilingerSOsmannMTrichoderma biocontrol: signal transduction pathways involved in host sensing and mycoparasitismGene Reg Sys Biol2007122723410.4137/GRSB.S397275914119936091Search in Google Scholar

Matei GM, Matei S, Mocanu V, Dumitru S. Microbiological characterization of suppressive forest soil from Enisala, Ann Univ Craiova, Agr Montan Cad 2016; 46: 341-347.MateiGMMateiSMocanuVDumitruSMicrobiological characterization of suppressive forest soil from Enisala, Ann Univ CraiovaAgr Montan Cad201646341347Search in Google Scholar

Montes E. Understanding Trichoderma between biotechnology and microbial ecology. Int Microbiol 2001; 4: 1-4.11770814MontesEUnderstanding Trichoderma between biotechnology and microbial ecologyInt Microbiol2001414Search in Google Scholar

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