Comparative genome sequence analysis underscores mycoparasitism as the ancestral life style of Trichoderma
- Christian P. Kubicek
- Alfredo Herrera‐Estrella
- Verena Seidl‐Seiboth
- Diego Martinez
- Irina S. Druzhinina
- Michael R. Thon
- Susanne Zeilinger
- Sergio Casas‐Flores
- Benjamin A. Horwitz
- Prasun K. Mukherjee
- Mala Mukherjee
- László Kredics
- Luis David Alcaraz
- Andrea Aerts
- Zsuzsanna Antal
- Lea Atanasova
- Mayte Guadalupe Cervantes-Badillo
- Jean F. Challacombe
- Olga Chertkov
- Kevin McCluskey
- Fanny Coulpier
- Nandan Deshpande
- Hans von Döhren
- Daniel J. Ebbole
- Edgardo Ulises Esquivel‐Naranjo
- Erzsébet Fekete
- Michel Flipphi
- Fabian Glaser
- Elida Yazmín Gómez-Rodríguez
- Sabine Gruber
- Cliff Han
- Bernard Henrissat
- Rosa Hermosa
- Miguel Ángel Hernández‐Oñate
- Levente Karaffa
- Idit Kosti
- Stéphane Le Crom
- Erika Lindquist
- Susan Lucas
- Mette Lübeck
- Peter Stephensen Lübeck
- Antoine Margeot
- Benjamin Metz
- Monica Misra
- Helena Nevalainen
- Markus Omann
- Nicolle H. Packer
- Giancarlo Perrone
- Edith Elena Uresti‐Rivera
- Asaf Salamov
- Monika Schmoll
- Bernhard Seiboth
- Harris Shapiro
- Serenella A. Sukno
- Juan Antonio Tamayo‐Ramos
- Doris Tisch
- Aric Wiest
- Heather H. Wilkinson
- Michael Zhang
- Pedro M. Coutinho
- Charles M. Kenerley
- Enrique Monte
- SBScott Baker
- Igor V. Grigoriev
- SBScott Baker
- SBScott Baker
- SBScott Baker
- SBScott Baker
Genome biology · 2011 · BioMed Central
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Abstract
BACKGROUND: Mycoparasitism, a lifestyle where one fungus is parasitic on another fungus, has special relevance when the prey is a plant pathogen, providing a strategy for biological control of pests for plant protection. Probably, the most studied biocontrol agents are species of the genus Hypocrea/Trichoderma. RESULTS: Here we report an analysis of the genome sequences of the two biocontrol species Trichoderma atroviride (teleomorph Hypocrea atroviridis) and Trichoderma virens (formerly Gliocladium virens, teleomorph Hypocrea virens), and a comparison with Trichoderma reesei (teleomorph Hypocrea jecorina). These three Trichoderma species display a remarkable conservation of gene order (78 to 96%), and a lack of active mobile elements probably due to repeat-induced point mutation. Several gene families are expanded in the two mycoparasitic species relative to T. reesei or other ascomycetes, and are overrepresented in non-syntenic genome regions. A phylogenetic analysis shows that T. reesei and T. virens are derived relative to T. atroviride. The mycoparasitism-specific genes thus arose in a common Trichoderma ancestor but were subsequently lost in T. reesei. CONCLUSIONS: The data offer a better understanding of mycoparasitism, and thus enforce the development of improved biocontrol strains for efficient and environmentally friendly protection of plants.
