Sonia Herrero, Alongkorn Amnuaykanjanasin, Margaret E Daub
Index: FEMS Microbiol. Lett. 275(2) , 326-37, (2007)
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Plant pathogens from the genus Cercospora produce cercosporin, a photoactivated fungal toxin that generates toxic reactive oxygen species. Mechanisms governing toxin auto-resistance in Cercospora spp. are poorly understood. In this work, suppressive subtractive hybridization was used to identify genes differentially expressed between the cercosporin-resistant wild-type (WT) Cercospora nicotianae and a sensitive strain lacking a transcription factor (CRG1) that regulates resistance. Out of 338 sequences recovered, 185 unique expressed sequence tags (ESTs) were obtained and classified into functional categories. The majority of genes showed predicted expression differences, and 38.5% were differentially expressed at least twofold between the WT and mutant strain. ESTs were recovered with homology to genes involved in detoxification of noxious compounds, multidrug membrane transporters and antioxidant and polyketide biosynthetic enzymes as well as to ATPases and ATP synthases. The findings suggest that CRG1 regulates genes involved in pH responses in addition to those involved in toxin resistance and biosynthesis.
Structure | Name/CAS No. | Molecular Formula | Articles |
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Cercosporin
CAS:35082-49-6 |
C29H26O10 |
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2013-02-01 [Nat. Prod. Commun. 8(2) , 187-9, (2013)] |
Reactive oxygen species in plant pathogenesis: the role of p...
2013-09-20 [Antioxid. Redox Signal. 19(9) , 970-89, (2013)] |
The Cercospora nicotianae gene encoding dual O-methyltransfe...
2007-05-01 [Fungal Genet. Biol. 44(5) , 444-54, (2007)] |
Analysis of the cercosporin polyketide synthase CTB1 reveals...
2012-12-14 [Chem. Commun. (Camb.) 48(96) , 11772-4, (2012)] |
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