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dc.creatorPasquali, Matias
dc.creatorBeyer, Marco
dc.creatorHoffmann, Lucien
dc.creatorPallez-Barthel, Marine
dc.creatorPiec, Jonathan
dc.creatorLogrieco, Antonio
dc.creatorMoretti, Antonio
dc.creatorAudenaert, Kris
dc.creatorVanheule, Adriaan
dc.creatorBalmas, Virgilio
dc.creatorMigheli, Quirico
dc.creatorScherm, Barbara
dc.creatorBasler, Ryan
dc.creatorBoutigny, Anne-Laure
dc.creatorChrpova, Jana
dc.creatorCzembor, Elzbieta
dc.creatorGagkaeva, Tatiana
dc.creatorGonzalez-Jaen, Maria
dc.creatorMarin, Patricia
dc.creatorHofgaard, Ingerd S.
dc.creatorKoycu, Nagehan D.
dc.creatorLević, Jelena
dc.creatorStanković, Slavica
dc.creatorMiedaner, Thomas
dc.creatorMueller, Marina E. H.
dc.creatorMunaut, Francoise
dc.creatorScauflaire, Jonathan
dc.creatorParikka, Paivi
dc.creatorThrane, Ulf
dc.creatorUhlig, Silvio
dc.creatorYli-Mattila, Tapani
dc.creatorVogelgsang, Susanne
dc.date.accessioned2019-05-16T12:20:09Z
dc.date.available2019-05-16T12:20:09Z
dc.date.issued2016
dc.identifier.issn1664-302X
dc.identifier.urihttp://rik.mrizp.rs/handle/123456789/655
dc.description.abstractFusarium species, particularly Fusarium graminearum and F culmorum, are the main cause of trichothecene type B contamination in cereals. Data on the distribution of Fusarium trichothecene genotypes in cereals in Europe are scattered in time and space. Furthermore, a common core set of related variables (sampling method, host cultivar, previous crop, etc.) that would allow more effective analysis of factors influencing the spatial and temporal population distribution, is lacking. Consequently, based on the available data, it is difficult to identify factors influencing chemotype distribution and spread at the European level. Here we describe the results of a collaborative integrated work which aims (1) to characterize the trichothecene genotypes of strains from three Fusarium species, collected over the period 2000-2013 and (2) to enhance the standardization of epidemiological data collection. Information on host plant, country of origin, sampling location, year of sampling and previous crop of 1147 F graminearurn, 479 F culmorum, and 3 F cortaderiae strains obtained from 17 European countries was compiled and a map of trichothecene type B genotype distribution was plotted for each species. All information on the strains was collected in a freely accessible and updatable database (www.catalogueeu.luxmcc.lu), which will serve as a starting point for epidemiological analysis of potential spatial and temporal trichothecene genotype shifts in Europe. The analysis of the currently available European dataset showed that in F. grarninearum, the predominant genotype was 15-acetyldeoxynivalenol (15-ADON) (82.9%), followed by 3-acetyldeoxynivalenol (3-ADON) (13.6%), and nivalenol (NIV) (3.5%). In F culmorum, the prevalent genotype was 3-ADON (59.9%), while the NIV genotype accounted for the remaining 40.1%. Both, geographical and temporal patterns of trichothecene genotypes distribution were identified.en
dc.publisherFrontiers Media Sa, Lausanne
dc.relationMinistere de l'Agriculture, de la Viticulture et de la Protection des Consommateurs-Administration d
dc.relationM.I.U.R. Project AGROGEN (Laboratory of GENomics for traits of AGROnomic importance in durum wheat: Identification of useful genes, functional analysis and assisted selection by biological markers for the development of the national seed chain) - 602/Ric
dc.relationFelix Thornley Cobbold Trust
dc.relationJohn Oldacre Foundation
dc.relationMinistry of Agriculture of the Czech Republic - 800415
dc.relationSpanish Ministry MINECO - AGL201.4-53928-C2-2-R
dc.relationMinistry of Agriculture and Food, Norway
dc.relationFederal Ministry of Education and Research (BMBF) (GABI-KANADA), Bonn - FKZ 0313711A
dc.relationGerman Academic Exchange Service (DAAD), Bonn - A/06/92183
dc.relationFinnish Ministry of Agriculture and Forestry
dc.relationDirection Generale de l'Agriculture, Direction de la Recherche - D31-3159
dc.relationDirection Generale de l'Agriculture, Direction de la Recherche - D31-1162
dc.relationDirection Generale de l'Agriculture, Direction de la Recherche - D31-7055
dc.relationP.O.R. SARDEGNA F.S.
dc.relationDanish Directorate for Food, Fisheries and Agri Business - FFS05-3
dc.relationAcademy of Finland - 126917
dc.relationAcademy of Finland - 131957
dc.relationAcademy of Finland - 250904
dc.relationAcademy of Finland - 252162
dc.relationAcademy of Finland - 267188
dc.relationAcademy of Finland - 266984
dc.relationOlvi Foundation
dc.relationTurku University Foundation
dc.relationCIMO travel grant
dc.relationNordic network project New Emerging Mycotoxins and Secondary Metabolites in Toxigenic Fungi of Northern Europe - Nordic Research Board - 090014
dc.rightsopenAccess
dc.rights.urihttps://creativecommons.org/licenses/by/4.0/
dc.sourceFrontiers in Microbiology
dc.subjectacetyldeoxynivalenolen
dc.subjectchemotypeen
dc.subjectdatabaseen
dc.subjectFusariumen
dc.subjectgenotypeen
dc.subjectmycotoxinen
dc.subjectnivalenolen
dc.subjecttrichotheceneen
dc.titleA European Database of Fusarium graminearum and F-culmorum Trichothecene Genotypesen
dc.typearticle
dc.rights.licenseBY
dc.citation.volume7
dc.citation.other7: -
dc.citation.rankM21
dc.identifier.wos000373502900002
dc.identifier.doi10.3389/fmicb.2016.00406
dc.identifier.pmid27092107
dc.identifier.scopus2-s2.0-84966322357
dc.identifier.fulltexthttp://rik.mrizp.rs//bitstream/id/2598/653.pdf
dc.type.versionpublishedVersion


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