Javascript must be enabled to continue!
Trichothecene Genotype Profiling of Wheat Fusarium graminearum Species Complex in Paraguay
View through CrossRef
Paraguay is a non-traditional wheat-producing country in one of the warmest regions in South America. Fusarium Head Blight (FHB) is a critical disease affecting this crop, caused by the Fusarium graminearum species complex (FGSC). A variety of these species produce trichothecenes, including deoxynivalenol (DON) and its acetylated forms (3-ADON and 15-ADON) or nivalenol (NIV). This study characterized the phylogenetic relationships, and chemotype diversity of 28 strains within FGSC collected from wheat fields across different country regions. Phylogenetic analysis based on the sequence of elongation factor-1α gene (EF-1α) from 28 strains revealed the presence of four species in the FGSC: F. graminearum sensu stricto, F. asiaticum, F. meridionale and F. cortaderiae. Ten strains selected for further analysis revealed that all F. graminearum strains were 15-ADON chemotype, while the two strains of F. meridionale and one strain of F. asiaticum were NIV chemotype. Thus, the 15-ADON chemotype of F. graminearum sensu stricto was predominant within the Fusarium strains isolated in the country. This work is the first report of phylogenetic relationships and chemotype diversity among Fusarium strains which will help understand the population diversity of this pathogen in Paraguay.
MDPI AG
Andrea Alejandra Arrua Alvarenga
Julio César Masaru Iehisa Ouchi
Cinthia Carolina Cazal Martínez
Juliana Moura Mendes
Adans Agustín Colmán
Danilo Fernández Ríos
Pablo David Arrua
Claudia Adriana Barboza Guerreño
Man Mohan Kohli
María Laura Ramírez
Ana Acuña Ruíz
María Magdalena Sarmiento
María Cecilia Ortíz
Adriana Nuñez
Horacio D. Lopez-Nicora
Title: Trichothecene Genotype Profiling of Wheat Fusarium graminearum Species Complex in Paraguay
Description:
Paraguay is a non-traditional wheat-producing country in one of the warmest regions in South America.
Fusarium Head Blight (FHB) is a critical disease affecting this crop, caused by the Fusarium graminearum species complex (FGSC).
A variety of these species produce trichothecenes, including deoxynivalenol (DON) and its acetylated forms (3-ADON and 15-ADON) or nivalenol (NIV).
This study characterized the phylogenetic relationships, and chemotype diversity of 28 strains within FGSC collected from wheat fields across different country regions.
Phylogenetic analysis based on the sequence of elongation factor-1α gene (EF-1α) from 28 strains revealed the presence of four species in the FGSC: F.
graminearum sensu stricto, F.
asiaticum, F.
meridionale and F.
cortaderiae.
Ten strains selected for further analysis revealed that all F.
graminearum strains were 15-ADON chemotype, while the two strains of F.
meridionale and one strain of F.
asiaticum were NIV chemotype.
Thus, the 15-ADON chemotype of F.
graminearum sensu stricto was predominant within the Fusarium strains isolated in the country.
This work is the first report of phylogenetic relationships and chemotype diversity among Fusarium strains which will help understand the population diversity of this pathogen in Paraguay.
Related Results
Investigation of species composition of the fungi of the Fusarium genus and the resistance of the Chornobyl radio-mutants to fusarium head blight for the purposes of winter wheat
Investigation of species composition of the fungi of the Fusarium genus and the resistance of the Chornobyl radio-mutants to fusarium head blight for the purposes of winter wheat
Aim. To investigate the field resistance of collection spelt-like samples of the Chornobyl radio-mutants (RM) of
winter wheat to Fusarium head blight and to determine the species c...
Isolation, characterization, and pathogenicity of Fusarium species causing crown rot of wheat
Isolation, characterization, and pathogenicity of Fusarium species causing crown rot of wheat
Fusarium crown rot (FCR) is one of the most important soilborne diseases affecting wheat production. To investigate the diversity of the pathogens causing this disease, 199 disease...
TRI5 positive
Fusarium graminearum
strains isolated from different hosts cause root rot and head blight diseases of wheat (
Triticum aestivum
L.)
TRI5 positive
Fusarium graminearum
strains isolated from different hosts cause root rot and head blight diseases of wheat (
Triticum aestivum
L.)
Fusarium graminearum is
an economically important pathogen of cereal crops. It causes
Fusarium
root rot (FRR) and
...
Antagonistic properties of rhizobacteria in relation to phytopatogens of wheat
Antagonistic properties of rhizobacteria in relation to phytopatogens of wheat
Plant protection from phytopathogens is becoming an increasingly severe problem in modern agriculture and agricultural microbiology. Today, there is a trend around the world toward...
Evaluation of Alternative Break Crops in Rotation with Bread Wheat (triticum aestivum l.) in South-Eastern Ethiopia
Evaluation of Alternative Break Crops in Rotation with Bread Wheat (triticum aestivum l.) in South-Eastern Ethiopia
Crop rotation could be a possible intervention to resolve multifaceted problems of monoculture. In recent years, there is a concern about soil depletion caused by intensive farming...
The Impact of IL28B Gene Polymorphisms on Drug Responses
The Impact of IL28B Gene Polymorphisms on Drug Responses
To achieve high therapeutic efficacy in the patient, information on pharmacokinetics, pharmacodynamics, and pharmacogenetics is required. With the development of science and techno...
Isolation and Identification of Six Newly Recorded Wheat Fusarium Crown Rot-Associated Fusarium Species
Isolation and Identification of Six Newly Recorded Wheat Fusarium Crown Rot-Associated Fusarium Species
Fusarium crown rot (FCR) has become one of the most serious diseases affecting wheat production worldwide. To date, many Fusarium species associated with wheat FCR disease have bee...
Breeding wheat and rye for resistance to Fusarium diseases
Breeding wheat and rye for resistance to Fusarium diseases
Abstract Fusarium culmorum and F. graminearum Groups 1 and 2 cause seedling blight, crown rot, foot rot and head blight in wheat and rye that may affect grain yield and quality for...

