Literature DB >> 22085297

Characterization of CbCyp51 from field isolates of Cercospora beticola.

Melvin D Bolton1, Keshav Birla, Viviana Rivera-Varas, Kurt D Rudolph, Gary A Secor.   

Abstract

The hemibiotrophic fungus Cercospora beticola causes leaf spot of sugar beet. Leaf spot control measures include the application of sterol demethylation inhibitor (DMI) fungicides. However, reduced sensitivity to DMIs has been reported recently in the Red River Valley sugar beet-growing region of North Dakota and Minnesota. Here, we report the cloning and molecular characterization of CbCyp51, which encodes the DMI target enzyme sterol P450 14α-demethylase in C. beticola. CbCyp51 is a 1,632-bp intron-free gene with obvious homology to other fungal Cyp51 genes and is present as a single copy in the C. beticola genome. Five nucleotide haplotypes were identified which encoded three amino acid sequences. Protein variant 1 composed 79% of the sequenced isolates, followed by protein variant 2 that composed 18% of the sequences and a single isolate representative of protein variant 3. Because resistance to DMIs can be related to polymorphism in promoter or coding sequences, sequence diversity was assessed by sequencing >2,440 nucleotides encompassing CbCyp51 coding and flanking regions from isolates with varying EC(50) values (effective concentration to reduce growth by 50%) to DMI fungicides. However, no mutations or haplotypes were associated with DMI resistance or sensitivity. No evidence for alternative splicing or differential methylation of CbCyp51 was found that might explain reduced sensitivity to DMIs. However, CbCyp51 was overexpressed in isolates with high EC(50) values compared with isolates with low EC(50) values. After exposure to tetraconazole, isolates with high EC(50) values responded with further induction of CbCyp51, with a positive correlation of CbCyp51 expression and tetraconazole concentration up to 2.5 μg ml(-1).

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Year:  2012        PMID: 22085297     DOI: 10.1094/PHYTO-07-11-0212

Source DB:  PubMed          Journal:  Phytopathology        ISSN: 0031-949X            Impact factor:   4.025


  6 in total

1.  Characterization of Aspergillus fumigatus cross-resistance between clinical and DMI azole drugs.

Authors:  Rocio Garcia-Rubio; Irene Gonzalez-Jimenez; Jose Lucio; Emilia Mellado
Journal:  Appl Environ Microbiol       Date:  2020-12-18       Impact factor: 4.792

2.  Genome-Wide Association and Selective Sweep Studies Reveal the Complex Genetic Architecture of DMI Fungicide Resistance in Cercospora beticola.

Authors:  Rebecca Spanner; Demetris Taliadoros; Jonathan Richards; Viviana Rivera-Varas; Jonathan Neubauer; Mari Natwick; Olivia Hamilton; Niloofar Vaghefi; Sarah Pethybridge; Gary A Secor; Timothy L Friesen; Eva H Stukenbrock; Melvin D Bolton
Journal:  Genome Biol Evol       Date:  2021-09-01       Impact factor: 3.416

3.  Cercospora beticola: The intoxicating lifestyle of the leaf spot pathogen of sugar beet.

Authors:  Lorena I Rangel; Rebecca E Spanner; Malaika K Ebert; Sarah J Pethybridge; Eva H Stukenbrock; Ronnie de Jonge; Gary A Secor; Melvin D Bolton
Journal:  Mol Plant Pathol       Date:  2020-08       Impact factor: 5.663

4.  Co-Occurrence of Two Allelic Variants of CYP51 in Erysiphe necator and Their Correlation with Over-Expression for DMI Resistance.

Authors:  Lynn Esther E Rallos; Anton B Baudoin
Journal:  PLoS One       Date:  2016-02-03       Impact factor: 3.240

5.  Characterization of the Molecular Mechanisms of Resistance against DMI Fungicides in Cercospora beticola Populations from the Czech Republic.

Authors:  Ram Kumar; Jana Mazakova; Asad Ali; Vishma Pratap Sur; Madhab Kumar Sen; Melvin D Bolton; Marie Manasova; Pavel Rysanek; Miloslav Zouhar
Journal:  J Fungi (Basel)       Date:  2021-12-11

6.  Characterization of the Mycovirome from the Plant-Pathogenic Fungus Cercospora beticola.

Authors:  Yingxi Li; Mengke Zhou; Yizhou Yang; Qi Liu; Zongying Zhang; Chenggui Han; Ying Wang
Journal:  Viruses       Date:  2021-09-24       Impact factor: 5.048

  6 in total

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