Literature DB >> 18720503

Ecophysiological requirements and survival of a Trichoderma atroviride isolate with biocontrol potential.

Claudia Maria Oliveira Longa1, Ilaria Pertot, Solveig Tosi.   

Abstract

Trichoderma atroviride SC1, isolated from decayed hazelnut wood in northern Italy in 2000, is a promising fungal agent for biological control of soil-borne plant pathogens. The objective of this research was to characterize the biology and ecology of this fungus, in order to determine its environmental parameter tolerance levels and its behavior in the phylloplane and soil systems. To better characterize T. atroviride SC1, the influences of pH, temperature, water activity and different nitrogen and carbon sources on its in vitro growth were evaluated. T. atroviride SC1 survival was assessed on strawberry leaves under controlled conditions in a greenhouse and in sterilized and non-sterilized soil samples kept at room temperature. Results showed that isolate SC1 is mesophilic and grows best at 25 degrees C. The fungus tolerates a wide range of pH levels, but growth was reduced on alkaline media (pH >or= 8). The nitrogen and carbon sources peptone, tryptone, nitrate, mannose, galactose and sucrose were associated with the highest mycelial biomass production, as compared with other potential sources of nitrogen and carbon. The fungus survived on strawberry leaves under greenhouse conditions (25 +/- 2 degrees C, RH = 60 +/- 10%) and grew in sterilized soils at room temperature (23 +/- 2 degrees C) for 45 d. However, no increase in mycelial dry weight was observed in non-sterilized soils. T. atroviride SC1 survived under the test conditions, showing a good potential for use in soil and foliar biocontrol applications. (c) 2008 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim.

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Year:  2008        PMID: 18720503     DOI: 10.1002/jobm.200700396

Source DB:  PubMed          Journal:  J Basic Microbiol        ISSN: 0233-111X            Impact factor:   2.281


  7 in total

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2.  Transcriptomic responses of a simplified soil microcosm to a plant pathogen and its biocontrol agent reveal a complex reaction to harsh habitat.

Authors:  Michele Perazzolli; Noemí Herrero; Lieven Sterck; Luisa Lenzi; Alberto Pellegrini; Gerardo Puopolo; Yves Van de Peer; Ilaria Pertot
Journal:  BMC Genomics       Date:  2016-10-27       Impact factor: 3.969

3.  The effect of lyophilization and storage time on the survival rate and hydrolytic activity of Trichoderma strains.

Authors:  Monika Grzegorczyk; Anna Kancelista; Wojciech Łaba; Michał Piegza; Danuta Witkowska
Journal:  Folia Microbiol (Praha)       Date:  2018-01-05       Impact factor: 2.099

Review 4.  Epidemiology, Biotic Interactions and Biological Control of Armillarioids in the Northern Hemisphere.

Authors:  Orsolya Kedves; Danish Shahab; Simang Champramary; Liqiong Chen; Boris Indic; Bettina Bóka; Viktor Dávid Nagy; Csaba Vágvölgyi; László Kredics; György Sipos
Journal:  Pathogens       Date:  2021-01-16

5.  PacC and pH-dependent transcriptome of the mycotrophic fungus Trichoderma virens.

Authors:  Naomi Trushina; Michal Levin; Prasun K Mukherjee; Benjamin A Horwitz
Journal:  BMC Genomics       Date:  2013-02-28       Impact factor: 3.969

6.  Dispersal of Bacillus subtilis and its effect on strawberry phyllosphere microbiota under open field and protection conditions.

Authors:  Feng Wei; Xiaoping Hu; Xiangming Xu
Journal:  Sci Rep       Date:  2016-03-03       Impact factor: 4.379

7.  The Biocontrol Potential of Endophytic Trichoderma Fungi Isolated from Hungarian Grapevines. Part I. Isolation, Identification and In Vitro Studies.

Authors:  Csilla Kovács; András Csótó; Károly Pál; Antal Nagy; Erzsébet Fekete; Levente Karaffa; Christian P Kubicek; Erzsébet Sándor
Journal:  Pathogens       Date:  2021-12-10
  7 in total

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