First application of PCR-luminex system for molecular diagnosis of fungicide resistance and species identification of fungal pathogens
Fungicide resistance in plant pathogens is often caused by a single point mutation in a gene encoding fungicide target proteins. Such is the case for resistance to MBI-D (inhibitors of scytalone dehydratase in melanin biosynthesis) fungicides in rice blast fungus ( Magnaporthe oryzae ), which is cau...
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Veröffentlicht in: | Journal of general plant pathology : JGPP 2008-12, Vol.74 (6), p.409-416 |
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Sprache: | eng |
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Zusammenfassung: | Fungicide resistance in plant pathogens is often caused by a single point mutation in a gene encoding fungicide target proteins. Such is the case for resistance to MBI-D (inhibitors of scytalone dehydratase in melanin biosynthesis) fungicides in rice blast fungus (
Magnaporthe oryzae
), which is caused by a mutation in the scytalone dehydratase gene that results in a replacement of valine with methionine at codon 75 of the fungicide target protein. PCR-Luminex, a novel system developed for high-throughput analysis of single nucleotide polymorphisms (SNPs) was successfully introduced to diagnose MBI-D resistance using specific oligonucleotide probes coupled with fluorescent beads. The PCR-Luminex system was further tested for its potential in identifying species causing Fusarium head blight on wheat. Four major pathogens,
Fusarium graminearum
(=
F. asiaticum
),
F. culmorum
,
F. avenaceum
, and
Microdochium nivale
, known to cause the disease, were tested, and the species were identified using the PCR-Luminex method. So far, this report is the first on the application of the DNA-based PCR-Luminex system in the area of crop protection and/or agricultural sciences. |
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ISSN: | 1345-2630 1610-739X |
DOI: | 10.1007/s10327-008-0119-z |