Affiliation:
1. Departamento de Microbiologı́a y Genética, CSIC/Universidad de Salamanca, 37002 Salamanca, Spain
Abstract
ABSTRACT
The most common biological control agents (BCAs) of the genus
Trichoderma
have been reported to be strains of
Trichoderma virens
,
T. harzianum
, and
T. viride
. Since
Trichoderma
BCAs use different mechanisms of biocontrol, it is very important to explore the synergistic effects expressed by different genotypes for their practical use in agriculture. Characterization of 16 biocontrol strains, previously identified as “
Trichoderma harzianum
” Rifai and one biocontrol strain recognized as
T. viride
, was carried out using several molecular techniques. A certain degree of polymorphism was detected in hybridizations using a probe of mitochondrial DNA. Sequencing of internal transcribed spacers 1 and 2 (ITS1 and ITS2) revealed three different ITS lengths and four different sequence types. Phylogenetic analysis based on ITS1 sequences, including type strains of different species, clustered the 17 biocontrol strains into four groups:
T. harzianum-T. inhamatum
complex,
T. longibrachiatum
,
T. asperellum
, and
T. atroviride-T. koningii
complex. ITS2 sequences were also useful for locating the biocontrol strains in
T. atroviride
within the complex
T. atroviride-T. koningii
. None of the biocontrol strains studied corresponded to biotypes Th2 or Th4 of
T. harzianum
, which cause mushroom green mold. Correlation between different genotypes and potential biocontrol activity was studied under dual culturing of 17 BCAs in the presence of the phytopathogenic fungi
Phoma betae
,
Rosellinia necatrix
,
Botrytis cinerea
, and
Fusarium oxysporum
f. sp.
dianthi
in three different media.
Publisher
American Society for Microbiology
Subject
Ecology,Applied Microbiology and Biotechnology,Food Science,Biotechnology
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