低潮区
生物
里氏木霉
木霉菌
下实相
基因组
植物
遗传学
基因
子囊菌纲
生物化学
纤维素酶
纤维素
作者
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,Shatavisa Mukherjee,László Kredics,Luis David Alcaraz,Andrea Aerts,Zsuzsanna Antal,Lea Atanasova,Mayte Guadalupe Cervantes-Badillo,Jean F. Challacombe,Olga Chertkov,Kevin McCluskey
出处
期刊:Genome Biology
[BioMed Central]
日期:2011-04-01
卷期号:12 (4)
被引量:705
标识
DOI:10.1186/gb-2011-12-4-r40
摘要
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.
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