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1 a mays), and one from the rice blast fungus (Magnaporthe grisea).
2 reted enzyme from the phytopathogenic fungus Magnaporthe grisea.
3 arium moniliforme, Fusarium graminearum, and Magnaporthe grisea.
4 n and infectious growth by the rice pathogen Magnaporthe grisea.
5 ulence was explored in the rice blast fungus Magnaporthe grisea.
6 o fungal pathogens, Fusarium graminearum and Magnaporthe grisea.
7 chromosome 3 in the plant pathogenic fungus Magnaporthe grisea.
8 elated development of the rice blast fungus, Magnaporthe grisea.
9 visiae, Mkc1 of Candida albicans and Mps1 of Magnaporthe grisea.
10 host infection by the fungal plant pathogen Magnaporthe grisea.
11 ice plants from the fungal disease caused by Magnaporthe grisea.
12 n synthesis in Colletotrichum lagenarium and Magnaporthe grisea.
13 ysis of an mpg1(-) gene disruption mutant in Magnaporthe grisea.
14 ressorium formation in the rice blast fungus Magnaporthe grisea.
15 osons Fot1 of Fusarium oxysporum and Pot2 of Magnaporthe grisea.
16 ense response against the rice blast fungus (Magnaporthe grisea), a large-scale expressed sequence ta
17 erization of ICL1 from the rice blast fungus Magnaporthe grisea, a gene that encodes isocitrate lyase
18 Podospora anserina and the pathogenic fungi Magnaporthe grisea and Cryphonectria parasitica, respect
19 t in glycans isolated from the rice pathogen Magnaporthe grisea and from the plant pathogen Botryotin
20 al for the biosynthesis of fungal melanin by Magnaporthe grisea and is a focus of inhibitor design st
22 were constructed for the ascomycete fungus, Magnaporthe grisea and the basidiomycete fungus, Ustilag
23 significantly enhanced resistance to fungal (Magnaporthe grisea) and bacterial (Burkholderia glumae)
24 wing challenge with the rice blast pathogen (Magnaporthe grisea) and wheat/barley yellow stripe rusts
25 s were found to be present on the conidia of Magnaporthe grisea, and plant surface waxes were found t
26 hydroxy-2-butanone-4-phosphate synthase from Magnaporthe grisea are reported for the E-SO(4)(2-), E-S
27 O39 was previously mapped to chromosome 1 of Magnaporthe grisea between cosegregating markers CH5-120
30 ine synthases of Mycobacterium tuberculosis, Magnaporthe grisea, Candida albicans, and Schizosaccharo
33 on alleles of the MPG1 hydrophobin gene from Magnaporthe grisea causes severe defects in development
36 sistant to strains of the rice blast fungus, Magnaporthe grisea, expressing AVR-Pita in a gene-for-ge
43 blast disease, caused by the fungal pathogen Magnaporthe grisea, is an excellent model system to stud
44 l grass species Brachypodium distachyon with Magnaporthe grisea (rice blast), together with modificat
47 ene resistance against strains of the fungus Magnaporthe grisea that express avirulent alleles of AVR
49 sing metabolite fingerprinting, we show that Magnaporthe grisea, the causal agent of rice blast disea
50 d a federated database for genome studies of Magnaporthe grisea, the causal agent of rice blast disea
52 of F. graminearum with the myosin I gene of Magnaporthe grisea, the causal agent of rice blast, also
53 ressorium formation and infectious growth in Magnaporthe grisea, the fungal pathogen responsible for
57 ite changes occurring during interactions of Magnaporthe grisea--the cause of rice blast disease--wit
58 we show that in the plant pathogenic fungus Magnaporthe grisea trehalose-6-phosphate (T6P) synthase
59 egion in O-137, a rice pathogenic isolate of Magnaporthe grisea, uncovered a novel gene, designated T
60 ases of unknown function from the ascomycete Magnaporthe grisea were found to be the closest relative
62 e economically important rice blast pathogen Magnaporthe grisea, which is required for exocytosis dur
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