Literature DB >> 30481135

Marasas et al. 1984 "Toxigenic Fusarium Species: Identity and Mycotoxicology" revisited.

Kerry O'Donnell1, Susan P McCormick1, Mark Busman1, Robert H Proctor1, Todd J Ward1, Gail Doehring1, David M Geiser2, Johanna F Alberts3, John P Rheeder3.   

Abstract

This study was conducted to determine the species identity and mycotoxin potential of 158 Fusarium strains originally archived in the South African Medical Research Council's Mycotoxigenic Fungal Collection (MRC) that were reported to comprise 17 morphologically distinct species in the classic 1984 compilation by Marasas et al., Toxigenic Fusarium Species: Identity and Mycotoxicology. Maximum likelihood and maximum parsimony molecular phylogenetic analyses of single and multilocus DNA sequence data indicated that the strains represented 46 genealogically exclusive phylogenetically distinct species distributed among eight species complexes. Moreover, the phylogenetic data revealed that 80/158 strains were received under a name that is not accepted today (ex F. moniliforme) or classified under a different species name. In addition, gas chromatography-mass spectrometry (GC-MS) and/or high-performance liquid chromatography-mass spectrometry (HPLC-MS)-based mycotoxin analyses were conducted to determine which toxins the strains could produce in liquid and/or solid cultures. All of the trichothecene toxin-producing fusaria were nested within the F. sambucinum (FSAMSC) or F. incarnatum-equiseti (FIESC) species complexes. Consistent with this finding, GC-MS analyses detected trichothecenes in agmatine-containing broth or rice culture extracts of all 13 FSAMSC and 10/12 FIESC species tested. Species in six and seven of the eight species complexes were able to produce moniliformin and beauvericin, respectively, whereas B-type fumonisins were only detected in extracts of cracked maize kernel cultures of three species in the F. fujikuroi (FFSC) species complex.

Entities:  

Keywords:  Beauvericin; fumonisin; moniliformin; mycotoxins; phylogenetics; trichothecene; zearalenone

Mesh:

Substances:

Year:  2018        PMID: 30481135     DOI: 10.1080/00275514.2018.1519773

Source DB:  PubMed          Journal:  Mycologia        ISSN: 0027-5514            Impact factor:   2.696


  11 in total

1.  Evaluation of Mycotoxin Production and Phytopathogenicity of the Entomopathogenic Fungi Fusarium caatingaense and F. pernambucanum from Brazil.

Authors:  Marília de H C Maciel; Ana Cláudia T do Amaral; Túlio Diego da Silva; Jadson D P Bezerra; Cristina M de Souza-Motta; Antonio Félix da Costa; Patricia Vieira Tiago; Neiva Tinti de Oliveira
Journal:  Curr Microbiol       Date:  2021-02-24       Impact factor: 2.188

2.  High-Resolution Melting (HRM) Curve Assay for the Identification of Eight Fusarium Species Causing Ear Rot in Maize.

Authors:  Simon Schiwek; Lukas Beule; Maria Vinas; Annette Pfordt; Andreas von Tiedemann; Petr Karlovsky
Journal:  Pathogens       Date:  2020-04-07

3.  Discovery of novel fungal species and pathogens on bat carcasses in a cave in Yunnan Province, China.

Authors:  Samantha Chandranath Karunarathna; Yang Dong; Seigi Karasaki; Saowaluck Tibpromma; Kevin David Hyde; Saisamorn Lumyong; Jianchu Xu; Jun Sheng; Peter Edward Mortimer
Journal:  Emerg Microbes Infect       Date:  2020-12       Impact factor: 7.163

4.  Phylogenetic diversity, trichothecene potential, and pathogenicity within Fusarium sambucinum species complex.

Authors:  Imane Laraba; Susan P McCormick; Martha M Vaughan; David M Geiser; Kerry O'Donnell
Journal:  PLoS One       Date:  2021-01-12       Impact factor: 3.240

5.  Citizen science project reveals novel fusarioid fungi (Nectriaceae, Sordariomycetes) from urban soils.

Authors:  P W Crous; M Hernández-Restrepo; A L van Iperen; M Starink-Willemse; M Sandoval-Denis; J Z Groenewald
Journal:  Fungal Syst Evol       Date:  2021-10-12

6.  Fusarium and allied fusarioid taxa (FUSA). 1.

Authors:  P W Crous; M Sandoval-Denis; M M Costa; J Z Groenewald; A L van Iperen; M Starink-Willemse; M Hernández-Restrepo; H Kandemir; B Ulaszewski; W de Boer; A M Abdel-Azeem; J Abdollahzadeh; A Akulov; M Bakhshi; J D P Bezerra; C S Bhunjun; M P S Câmara; P Chaverri; W A S Vieira; C A Decock; E Gaya; J Gené; J Guarro; D Gramaje; M Grube; V K Gupta; V Guarnaccia; R Hill; Y Hirooka; K D Hyde; R S Jayawardena; R Jeewon; Ž Jurjević; L Korsten; S C Lamprecht; L Lombard; S S N Maharachchikumbura; G Polizzi; K C Rajeshkumar; C Salgado-Salazar; Q-J Shang; R G Shivas; R C Summerbell; G Y Sun; W J Swart; Y P Tan; A Vizzini; J W Xia; R Zare; C D González; T Iturriaga; O Savary; M Coton; E Coton; J-L Jany; C Liu; Z-Q Zeng; W-Y Zhuang; Z-H Yu; M Thines
Journal:  Fungal Syst Evol       Date:  2022-06-23

7.  Characterization of Host-Specific Genes from Pine- and Grass-Associated Species of the Fusarium fujikuroi Species Complex.

Authors:  Claudette Dewing; Magrieta A Van der Nest; Quentin C Santana; Robert H Proctor; Brenda D Wingfield; Emma T Steenkamp; Lieschen De Vos
Journal:  Pathogens       Date:  2022-07-29

8.  Redefining species limits in the Fusarium fujikuroi species complex.

Authors:  N Yilmaz; M Sandoval-Denis; L Lombard; C M Visagie; B D Wingfield; P W Crous
Journal:  Persoonia       Date:  2021-03-30       Impact factor: 11.658

9.  Evolution of Fusarium tricinctum and Fusarium avenaceum mitochondrial genomes is driven by mobility of introns and of a new type of palindromic microsatellite repeats.

Authors:  Nadia Ponts; Charlotte Gautier; Jérôme Gouzy; Laetitia Pinson-Gadais; Marie Foulongne-Oriol; Christine Ducos; Florence Richard-Forget; Jean-Michel Savoie; Chen Zhao; Gérard Barroso
Journal:  BMC Genomics       Date:  2020-05-12       Impact factor: 3.969

10.  Phenyllactic Acid Produced by Geotrichum candidum Reduces Fusarium sporotrichioides and F. langsethiae Growth and T-2 Toxin Concentration.

Authors:  Hiba Kawtharani; Selma Pascale Snini; Sorphea Heang; Jalloul Bouajila; Patricia Taillandier; Florence Mathieu; Sandra Beaufort
Journal:  Toxins (Basel)       Date:  2020-03-26       Impact factor: 4.546

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