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Quantitative Proteome and Phosphoproteome Profiling in Magnaporthe oryzae

2021
The quality and consistency in every sample preparation procedure is crucial for any scientific output. Therefore, it is of utmost importance to have easy, economic, and robust sample preparation protocols. Here, we describe a simple and robust bottom-up proteomic sample preparation strategy for identification and label-free quantification (LFQ) of ...
Thomas, Michna, Stefan, Tenzer
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Emerging antifungal azoles and effects on Magnaporthe grisea

Mycological Research, 2006
Derivatives of pyrazolo[1,5-a][1, 3, 5]triazine-2,4-dione,pyrazolo[1,5-c][1, 3, 5]thiadiazine-2-one, pyrazolo[3,4-d][1, 3]thiazine-4-one, and pyrazolo[3,4-d][1, 3]thiazine-4-thione were screened for antifungal activity against the causal agent of rice blast disease, Magnaporthe grisea. The compounds were tested at doses ranging from 10 to 200mugml(-1),
MARES, Donatella   +5 more
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Meiotic behavior of a supernumerary chromosome in Magnaporthe oryzae

Current Genetics, 2003
A 1.2-Mb DNA band from an isolate of Magnaporthe oryzae was detected in a pulsed-field gel. A chromosomal entity corresponding to this band was observed at the mitotic metaphase stage. This minichromosome, carrying many transposable elements and two telomeres, was transmitted to ascosporic F(1) cultures in a non-Mendelian manner with frequent changes ...
I, Chuma   +4 more
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Mechanism of resistance to carpropamid in Magnaporthe grisea

Pest Management Science, 2004
Abstract The inhibitory activity of carpropamid on scytalone dehydratase (SDH) extracted from a carpropamid‐resistant strain of Magnaporthe grisea (Hebert) Barr was dramatically reduced in comparison with that on SDH extracted from the sensitive strain.
Makiichi, Takagaki   +7 more
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Regions of Microsynteny in Magnaporthe grisea and Neurospora crassa

Fungal Genetics and Biology, 2001
A bacterial artificial chromosome (BAC) clone containing 110,467 bp of genomic DNA from Magnaporthe grisea was sequenced, annotated, and compared to the genomes of Neurospora crassa, Candida albicans, and Saccharomyces cerevisiae. Twenty-six open reading frames (ORFs), involved in multiple biochemical pathways, were identified in the BAC sequence.
L, Hamer   +6 more
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Infection by Magnaporthe: An In Vitro Analysis

1991
Rice blast disease, described over 300 years ago, has been the subject of research in plant pathology labs throughout the world [17]. The fungus Magnaporthe grisea (anamorph, Pyricularia sp.), an ascomycete, has been of considerable interest because of its global agronomic impact in inciting blast disease and because it is recognized as one of the most
Richard J. Howard   +2 more
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Filamentous Fungi (Magnaporthe grisea and Fusarium oxysporum)

2006
A better understanding of fungal biology will facilitate judicious use of beneficial fungi and will also advance our efforts to control pathogenic fungi. Molecular studies of fungal biology have been greatly aided by transformation-mediated mutagenesis techniques.
Chang Hyun, Khang   +4 more
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Monitoring autophagy in Magnaporthe oryzae.

Methods in enzymology, 2009
Autophagy is a ubiquitous degradative pathway for the bulk degradation of eukaryotic macromolecules and organelles in eukaryotic cells (Klionsky, 2005; Levine and Klionsky, 2004). Previously, the role of autophagy in turgor generation in plant pathogenic fungi was unknown.
Xiao-Hong, Liu   +2 more
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Having a blast: exploring the pathogenicity of Magnaporthe grisea

Trends in Microbiology, 1995
The rice blast fungus Magnaporthe grisea has an exquisite level of pathogenic specialization, allowing it to infect and colonize rice, subvert the metabolism of the host and spread to new hosts. Through a combination of cytology and molecular-genetic analysis, a picture is gradually emerging of the many interlinked processes that are required for ...
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