Literature DB >> 20565578

Functional analysis of H(2)O(2)-generating systems in Botrytis cinerea: the major Cu-Zn-superoxide dismutase (BCSOD1) contributes to virulence on French bean, whereas a glucose oxidase (BCGOD1) is dispensable.

Yvonne Rolke1, Songji Liu, Thomas Quidde, Brian Williamson, Alexander Schouten, Klaus-Michael Weltring, Verena Siewers, Klaus B Tenberge, Bettina Tudzynski, Paul Tudzynski.   

Abstract

SUMMARY The oxidative burst, a transient and rapid accumulation of reactive oxygen species (ROS), is a widespread defence mechanism of higher plants against pathogen attack. There is increasing evidence that the necrotrophic fungal pathogen Botrytis cinerea itself generates ROS, and that this capability could contribute to the virulence of the fungus. Two potential H(2)O(2)-generating systems were studied with respect to their impact on the interaction of B. cinerea and its host plant Phaseolus vulgaris. A Cu-Zn-superoxide dismutase gene (bcsod1) and a putative glucose oxidase gene (bcgod1) were cloned and characterized, and deletion mutants were created using a gene-replacement methodology. Whereas the Deltabcgod1-mutants displayed normal virulence on bean leaves, the Deltabcsod1 mutants showed a significantly retarded development of lesions, indicating that the Cu-Zn SOD-activity is an important single virulence factor in this interaction system. Whether dismutation of (fungal or host) superoxide, or generation of H(2)O(2) (or both), are important for pathogenesis in this system remains to be elucidated.

Entities:  

Year:  2004        PMID: 20565578     DOI: 10.1111/j.1364-3703.2004.00201.x

Source DB:  PubMed          Journal:  Mol Plant Pathol        ISSN: 1364-3703            Impact factor:   5.663


  48 in total

1.  The bZIP transcription factor MeaB mediates nitrogen metabolite repression at specific loci.

Authors:  Dominik Wagner; Anne Schmeinck; Magdalena Mos; Igor Y Morozov; Mark X Caddick; Bettina Tudzynski
Journal:  Eukaryot Cell       Date:  2010-08-20

2.  Involvement of BcStr2 in methionine biosynthesis, vegetative differentiation, multiple stress tolerance and virulence in Botrytis cinerea.

Authors:  Wenyong Shao; Yalan Yang; Yu Zhang; Chiyuan Lv; Weichao Ren; Changjun Chen
Journal:  Mol Plant Pathol       Date:  2015-09-18       Impact factor: 5.663

3.  Genomic analysis of the necrotrophic fungal pathogens Sclerotinia sclerotiorum and Botrytis cinerea.

Authors:  Joelle Amselem; Christina A Cuomo; Jan A L van Kan; Muriel Viaud; Ernesto P Benito; Arnaud Couloux; Pedro M Coutinho; Ronald P de Vries; Paul S Dyer; Sabine Fillinger; Elisabeth Fournier; Lilian Gout; Matthias Hahn; Linda Kohn; Nicolas Lapalu; Kim M Plummer; Jean-Marc Pradier; Emmanuel Quévillon; Amir Sharon; Adeline Simon; Arjen ten Have; Bettina Tudzynski; Paul Tudzynski; Patrick Wincker; Marion Andrew; Véronique Anthouard; Ross E Beever; Rolland Beffa; Isabelle Benoit; Ourdia Bouzid; Baptiste Brault; Zehua Chen; Mathias Choquer; Jérome Collémare; Pascale Cotton; Etienne G Danchin; Corinne Da Silva; Angélique Gautier; Corinne Giraud; Tatiana Giraud; Celedonio Gonzalez; Sandrine Grossetete; Ulrich Güldener; Bernard Henrissat; Barbara J Howlett; Chinnappa Kodira; Matthias Kretschmer; Anne Lappartient; Michaela Leroch; Caroline Levis; Evan Mauceli; Cécile Neuvéglise; Birgitt Oeser; Matthew Pearson; Julie Poulain; Nathalie Poussereau; Hadi Quesneville; Christine Rascle; Julia Schumacher; Béatrice Ségurens; Adrienne Sexton; Evelyn Silva; Catherine Sirven; Darren M Soanes; Nicholas J Talbot; Matt Templeton; Chandri Yandava; Oded Yarden; Qiandong Zeng; Jeffrey A Rollins; Marc-Henri Lebrun; Marty Dickman
Journal:  PLoS Genet       Date:  2011-08-18       Impact factor: 5.917

4.  Tolerance to oxidative stress is associated with both oxidative stress response and inherent growth in a fungal wheat pathogen.

Authors:  Ziming Zhong; Bruce A McDonald; Javier Palma-Guerrero
Journal:  Genetics       Date:  2021-02-09       Impact factor: 4.562

5.  A copper-transporting ATPase BcCCC2 is necessary for pathogenicity of Botrytis cinerea.

Authors:  Yoshimoto Saitoh; Kosuke Izumitsu; Atsushi Morita; Chihiro Tanaka
Journal:  Mol Genet Genomics       Date:  2010-06-05       Impact factor: 3.291

6.  Plant defense mechanisms are activated during biotrophic and necrotrophic development of Colletotricum graminicola in maize.

Authors:  Walter A Vargas; José M Sanz Martín; Gabriel E Rech; Lina P Rivera; Ernesto P Benito; José M Díaz-Mínguez; Michael R Thon; Serenella A Sukno
Journal:  Plant Physiol       Date:  2012-01-12       Impact factor: 8.340

7.  Identification of an abscisic acid gene cluster in the grey mold Botrytis cinerea.

Authors:  Verena Siewers; Leonie Kokkelink; Jørn Smedsgaard; Paul Tudzynski
Journal:  Appl Environ Microbiol       Date:  2006-07       Impact factor: 4.792

8.  Characterization of a CuZn superoxide dismutase gene in the arbuscular mycorrhizal fungus Glomus intraradices.

Authors:  Manuel González-Guerrero; Elodie Oger; Karim Benabdellah; Concepción Azcón-Aguilar; Luisa Lanfranco; Nuria Ferrol
Journal:  Curr Genet       Date:  2010-04-09       Impact factor: 3.886

9.  BcSAK1, a stress-activated mitogen-activated protein kinase, is involved in vegetative differentiation and pathogenicity in Botrytis cinerea.

Authors:  Nadja Segmüller; Ursula Ellendorf; Bettina Tudzynski; Paul Tudzynski
Journal:  Eukaryot Cell       Date:  2006-12-22

10.  Cch1 and Mid1 are functionally required for vegetative growth under low-calcium conditions in the phytopathogenic ascomycete Botrytis cinerea.

Authors:  Karin Harren; Bettina Tudzynski
Journal:  Eukaryot Cell       Date:  2013-03-08
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