Literature DB >> 21872187

Genetic analysis of growth, morphology and pathogenicity in the F(1) progeny of an interspecific cross between Fusarium circinatum and Fusarium subglutinans.

Lieschen De Vos1, Magriet A van der Nest, Nicolaas A van der Merwe, Alexander A Myburg, Michael J Wingfield, Brenda D Wingfield.   

Abstract

Fusarium circinatum and Fusarium subglutinans are two distinct species in the Gibberella fujikuroi species complex. A genetic linkage map produced from an interspecific cross between these species was used to identify quantitative trait loci (QTLs) associated with variation in mycelial growth and morphology of colony margins (CMs) in the 94 F(1) progeny. Mycelial growth was assessed by measuring culture size at 25°C and 30°C, while CM morphology was characterized in the parents and assessed in their F(1) progeny. In order to test the pathogenicity of the progeny, Pinus patula seedlings were inoculated and lesion lengths were measured after 3weeks. Seven putative QTLs were associated with mycelial growth, three for growth at 25°C and four at 30°C. One highly significant QTL (P<0.001) was present at both growth temperatures. For CM morphology, a QTL was identified at the same position (P<0.001) as the QTL responsible for growth at the two temperatures. The putative QTLs accounted for 45 and 41% of the total mycelial growth variation at 25°C and 30°C, respectively, and for 21% of the variation in CM morphology. Only one of the 94 F(1) progeny was pathogenic on P. patula seedlings. This observation could be explained by the genetic constitution of this F(1) isolate, namely that ∼96% of its genome originated from the F. circinatum parent. This F(1) individual also grew significantly faster at 25°C than the F. circinatum parent (P<0.05), as well as more rapidly than the average growth for the remaining 93 F(1) progeny (P<0.05). However, no association was found between mycelial growth and pathogenicity at 25°C. The highly significant QTL associated with growth at two temperatures, suggests that this is a principal genomic region involved in mycelial growth at both temperatures, and that the same region is also responsible for CM morphology.
Copyright © 2011 British Mycological Society. Published by Elsevier Ltd. All rights reserved.

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Year:  2011        PMID: 21872187     DOI: 10.1016/j.funbio.2011.07.003

Source DB:  PubMed          Journal:  Fungal Biol


  3 in total

1.  Nine draft genome sequences of Claviceps purpurea s.lat., including C. arundinis, C. humidiphila, and C. cf. spartinae, pseudomolecules for the pitch canker pathogen Fusarium circinatum, draft genome of Davidsoniella eucalypti, Grosmannia galeiformis, Quambalaria eucalypti, and Teratosphaeria destructans.

Authors:  Brenda D Wingfield; Miao Liu; Hai D T Nguyen; Frances A Lane; Seamus W Morgan; Lieschen De Vos; P Markus Wilken; Tuan A Duong; Janneke Aylward; Martin P A Coetzee; Kasia Dadej; Z Wilhelm De Beer; Wendy Findlay; Minette Havenga; Miroslav Kolařík; Jim G Menzies; Kershney Naidoo; Olivia Pochopski; Parivash Shoukouhi; Quentin C Santana; Keith A Seifert; Nicole Soal; Emma T Steenkamp; Catherine T Tatham; Margriet A van der Nest; Michael J Wingfield
Journal:  IMA Fungus       Date:  2018-12-14       Impact factor: 3.515

2.  IMA Genome-F 5: Draft genome sequences of Ceratocystis eucalypticola, Chrysoporthe cubensis, C. deuterocubensis, Davidsoniella virescens, Fusarium temperatum,Graphilbum fragrans, Penicillium nordicum, and Thielaviopsis musarum.

Authors:  Brenda D Wingfield; Irene Barnes; Z Wilhelm de Beer; Lieschen De Vos; Tuan A Duong; Aquillah M Kanzi; Kershney Naidoo; Hai D T Nguyen; Quentin C Santana; Mohammad Sayari; Keith A Seifert; Emma T Steenkamp; Conrad Trollip; Nicolaas A van der Merwe; Magriet A van der Nest; P Markus Wilken; Michael J Wingfield
Journal:  IMA Fungus       Date:  2015-12-01       Impact factor: 3.515

3.  Multiple independent origins for a subtelomeric locus associated with growth rate in Fusarium circinatum.

Authors:  Stephanie Van Wyk; Brenda D Wingfield; Lieschen De Vos; Quentin C Santana; Nicolaas A Van der Merwe; Emma T Steenkamp
Journal:  IMA Fungus       Date:  2018-02-27       Impact factor: 3.515

  3 in total

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