The ACE1 avirulence gene allele from the rice blast fungus Magnaporthe grisea was characterized in virulent isolate 2/0/3, revealing the insertion of a 1.9 kb MINE retrotransposon in the last ACE1 exon. MINE is a novel chimeric element composed of a transcribed non-coding sequence of 1.1 kb (WEIRD) fused to a 5'-truncated MGL retrotransposon. MINEs were found in high copy number in M. grisea isolates from rice (68 copies) and as a single copy in isolate CD156 from Eleusine. MINEs vary in size (1.3-6.7 kb) with conserved 5' WEIRD sequences and variable 3' MGL sequences. MGLs fused to WEIRDs correspond to different 5'-truncated MGLs with conserved 3' ends. The organization and diversity of MINEs suggest that these retrotransposons result from...
Rice cDNAs whose genes exhibited elevated expression during rice blast infection have been isolated ...
Transposons are an important source of genetic variation. The phytopathogen Moniliophthora pernicios...
Abstract: Two fungal pathogens, Cercospora zeae-maydis Groups I and II, cause gray leaf spot of maiz...
This dissertation describes the characterization of a novel transposable element isolated from the p...
Magnaporthe grisea is a filamentous ascomycete fungus that causes blast disease on rice and other gr...
Three genetically independent avirulence genes, AVR1-Irat7, AVR1-MedNoï, and AVR1-Ku86, were identif...
A short interspersed nuclear element, Mg-SINE, was isolated and characterized from the genome of the...
'The ascomycetal fungus Magnaporthe grisea causes the most damaging fungal disease of rice, blast. R...
We report the cloning and characterisation of Pot2, a putative transposable element from Magnaporthe...
Rice blast disease, caused by Magnaporthe grisea, is the major disease that threatens the rice produ...
Molecular mechanisms for the specific recognition of fungal pathogens by their host plant remain poo...
Insertional mutagenesis is an effective way to study the infection mechanism of fungal pathogens. In...
Molecular mechanisms for the specific recognition of fungal pathogens by their host plant remain poo...
BackgroundOne of the ways genomes respond to stress is by producing extrachromosomal circular DNAs (...
The ACE1 and RAP1 genes from the avirulence signalling gene cluster of the rice blast fungus Magnapo...
Rice cDNAs whose genes exhibited elevated expression during rice blast infection have been isolated ...
Transposons are an important source of genetic variation. The phytopathogen Moniliophthora pernicios...
Abstract: Two fungal pathogens, Cercospora zeae-maydis Groups I and II, cause gray leaf spot of maiz...
This dissertation describes the characterization of a novel transposable element isolated from the p...
Magnaporthe grisea is a filamentous ascomycete fungus that causes blast disease on rice and other gr...
Three genetically independent avirulence genes, AVR1-Irat7, AVR1-MedNoï, and AVR1-Ku86, were identif...
A short interspersed nuclear element, Mg-SINE, was isolated and characterized from the genome of the...
'The ascomycetal fungus Magnaporthe grisea causes the most damaging fungal disease of rice, blast. R...
We report the cloning and characterisation of Pot2, a putative transposable element from Magnaporthe...
Rice blast disease, caused by Magnaporthe grisea, is the major disease that threatens the rice produ...
Molecular mechanisms for the specific recognition of fungal pathogens by their host plant remain poo...
Insertional mutagenesis is an effective way to study the infection mechanism of fungal pathogens. In...
Molecular mechanisms for the specific recognition of fungal pathogens by their host plant remain poo...
BackgroundOne of the ways genomes respond to stress is by producing extrachromosomal circular DNAs (...
The ACE1 and RAP1 genes from the avirulence signalling gene cluster of the rice blast fungus Magnapo...
Rice cDNAs whose genes exhibited elevated expression during rice blast infection have been isolated ...
Transposons are an important source of genetic variation. The phytopathogen Moniliophthora pernicios...
Abstract: Two fungal pathogens, Cercospora zeae-maydis Groups I and II, cause gray leaf spot of maiz...