Botrytis cinerea virulence factors: new insights into a necrotrophic and polyphageous pathogen.
Mathias Choquer,Elisabeth Fournier,Caroline Kunz,Caroline Levis,Jean Marc Pradier,Adeline Simon,Muriel Viaud +6 more
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TL;DR: It is shown that this fungus shares conserved virulence factors with other phytopathogens, but also highlight some Botrytis-specific features, and suggests a possible host adaptation of the strains.
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Abstract: Botrytis cinerea is responsible for the gray mold disease on more than 200 host plants. This necrotrophic ascomycete displays the capacity to kill host cells through the production of toxins, reactive oxygen species and the induction of a plant-produced oxidative burst. Thanks to an arsenal of degrading enzymes, B. cinerea is then able to feed on different plant tissues. Recent molecular approaches, for example on characterizing components of signal transduction pathways, show that this fungus shares conserved virulence factors with other phytopathogens, but also highlight some Botrytis-specific features. The discovery of some first strain-specific virulence factors, together with population data, even suggests a possible host adaptation of the strains. The availability of the genome sequence now stimulates the development of high-throughput functional analysis to decipher the mechanisms involved in the large host range of this species.
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Citations
Genomic Analysis of the Necrotrophic Fungal Pathogens Sclerotinia sclerotiorum and Botrytis cinerea
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,Elisabeth Fournier,Lilian Gout,Matthias Hahn,Linda M. Kohn,Nicolas Lapalu,Kim M. Plummer,Jean-Marc Pradier,Emmanuel Quévillon,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,Mathias Choquer,Jérôme Collemare,Jérôme Collemare,Pascale Cotton,Etienne Danchin,Corinne Da Silva,Angélique Gautier,Corinne Giraud,Tatiana Giraud,Celedonio González,Sandrine Grossetete,Ulrich Güldener,Bernard Henrissat,Barbara J. Howlett,Chinnappa D. Kodira,Matthias Kretschmer,Anne Lappartient,Michaela Leroch,Caroline Levis,Evan Mauceli,Cécile Neuvéglise,Birgitt Oeser,Matthew D. Pearson,Julie Poulain,Nathalie Poussereau,Hadi Quesneville,Christine Rascle,Julia Schumacher,Béatrice Segurens,Adrienne Sexton,Evelyn Silva,Catherine Sirven,Darren M. Soanes,Nicholas J. Talbot,Matthew D. Templeton,Chandri Yandava,Oded Yarden,Qiandong Zeng,Jeffrey A. Rollins,Marc-Henri Lebrun,Marc-Henri Lebrun,Marty Dickman +76 more
TL;DR: Comparative genome analysis revealed the basis of differing sexual mating compatibility systems between S. sclerotiorum and B. cinerea, and shed light on the evolutionary and mechanistic bases of the genetically complex traits of necrotrophic pathogenicity and sexual mating.
Botrytis – the Fungus, the Pathogen and its Management in Agricultural Systems
Sabine Fillinger,Yigal Elad +1 more
- 01 Jan 2016
TL;DR: This work outlines the review of these pathogens, as well as highlighting the major advances of the past 10 years in studying Botrytis in interaction with its hosts.
531
The role of the cell wall in plant immunity.
TL;DR: This review describes the major molecular and cellular mechanisms that underlie the roles of cell walls in plant defense against pathogen attack, and briefly describes the analytical potential of molecular probes used in conjunction with carbohydrate microarray technology.
Botrytis cinerea Manipulates the Antagonistic Effects between Immune Pathways to Promote Disease Development in Tomato
Mohamed El Oirdi,Taha Abd El Rahman,Luciano A. Rigano,Abdelbasset El Hadrami,María Cecilia Rodríguez,Fouad Daayf,Adrián Alberto Vojnov,Kamal Bouarab +7 more
TL;DR: This work reports that B. cinerea secretes a virulence factor that hijacks the plant’s own crosstalk network to promote disease development, and shows that the JA signaling pathway required for tomato resistance against B.cinerea is mediated by the systemin elicitor.
•Book
Fruit and vegetable phytochemicals: chemistry, nutritional value and stability
Laura A. de la Rosa,Emilio Alvarez-Parrilla,Gustavo A. González-Aguilar +2 more
- 01 Jan 2009
TL;DR: The contribution of fruit and vegetable consumption to human health is discussed in this article, where Elhadi M. Yahia and Jose de Jesus Ornelas-Paz discuss the relationship between fruit and vegetables consumption and health.
337
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Yigal Elad,B. Williamson,Paul Tudzynski,Nafiz Delen +3 more
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TL;DR: The aim of this work was to demonstrate the versatility and adaptability of the genome of Botrytis, and to investigate the role of transcriptional regulation in the development of resistance to infection.
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