2007•PhytopathologyRequires access

Evidence of a Gene-for-Gene Relationship in the Oryza sativa - Magnaporthe grisea Pathosystem

Drissa Silué, Jean Loup Notteghem, Didier Tharreau

Open publisher page 222 citations

Abstract

A cross was made between two field isolates of Magnaporthe grisea pathogenic to rice. Full-sib crosses between F 1 ascospores, followed by backcrosses to the female fertile parent GUY11, produced perithecia fertile enough for tetrad isolation. Genetic analysis of the pathogen revealed that avirulence to the rice cultivar Pi-n°4 is controlled by one gene ( Avr1-Pi-n°4) unlinked to the gene MAT1-1, which is responsible for mating type. Additionally, resistance of Pi-n°4 was found to be controlled by one gene. Thus, existence of a gene-for-gene relationship was shown for the pathosystem Oryza sativa-M. grisea.

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What this paper is about

A cross was made between two field isolates of Magnaporthe grisea pathogenic to rice. Full-sib crosses between F 1 ascospores, followed by backcrosses to the female fertile parent GUY11, produced perithecia fertile enough for tetrad isolation. Genetic analysis of the pathogen revealed that avirulence to the rice cultivar Pi-n°4 is controlled by one gene ( Avr1-Pi-n°4) unlinked to the gene MAT1-1, which is responsible for mating type. Additionally, resistance of Pi-n°4 was found to be controlled by one gene. Thus, existence of a gene-for-gene relationship was shown for the pathosystem Oryza sativa-M. grisea.

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Available abstract

A cross was made between two field isolates of Magnaporthe grisea pathogenic to rice. Full-sib crosses between F 1 ascospores, followed by backcrosses to the female fertile parent GUY11, produced perithecia fertile enough for tetrad isolation. Genetic analysis of the pathogen revealed that avirulence to the rice cultivar Pi-n°4 is controlled by one gene ( Avr1-Pi-n°4) unlinked to the gene MAT1-1, which is responsible for mating type. Additionally, resistance of Pi-n°4 was found to be controlled by one gene. Thus, existence of a gene-for-gene relationship was shown for the pathosystem Oryza sativa-M. grisea.

Key concepts: Pathosystem, Biology, Magnaporthe grisea, Oryza sativa, Gene, Genetics, Botany

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Evidence of a Gene-for-Gene Relationship in the Oryza sativa - Magnaporthe grisea Pathosystem — Research Paper | ScholarLens