» Articles » PMID: 27895633

Detection of B Gene Mutations in SDHI-Resistant Isolates of Using High Resolution Melting (HRM) Analysis

Overview
Journal Front Microbiol
Specialty Microbiology
Date 2016 Nov 30
PMID 27895633
Citations 6
Authors
Affiliations
Soon will be listed here.
Abstract

, is a high risk pathogen for fungicide resistance development. Pathogen' resistance to SDHIs is associated with several mutations in gene. The diversity of mutations and their differential effect on cross-resistance patterns among SDHIs and the fitness of resistant strains necessitate the availability of a tool for their rapid identification. This study was initiated to develop and validate a high-resolution melting (HRM) analysis for the identification of P225H/F/L//T, N230I, and H272L/R/Y mutations. Based on the sequence of B subunit of resistant and sensitive isolates, a universal primer pair was designed. The specificity of the HRM analysis primers was verified to ensure against the cross-reaction with other fungal species and its sensitivity was evaluated using concentrations of known amounts of mutant's DNA. The melting curve analysis generated nine distinct curve profiles, enabling the discrimination of all the four mutations located at codon 225, the N230I mutation, the three mutations located in codon 272, and the non-mutated isolates (isolates of wild-type sensitivity). Similar results were obtained when DNA was extracted directly from artificially inoculated strawberry fruit. The method was validated by monitoring the presence of B mutations in samples of naturally infected strawberry fruits and stone fruit rootstock seedling plants showing damping-off symptoms. HRM analysis data were compared with a standard PIRA-PCR technique and an absolute agreement was observed suggesting that in both populations the H272R mutation was the predominant one, while H272Y, N230I, and P225H were detected in lower frequencies. The results of the study suggest that HRM analysis can be a useful tool for sensate, accurate, and rapid identification of several B mutations in and it is expected to contribute in routine fungicide resistance monitoring or assessments of the effectiveness of anti-resistance strategies implemented in crops heavily treated with botryticides.

Citing Articles

Transcriptomic and functional analyses on a Botrytis cinerea multidrug-resistant (MDR) strain provides new insights into the potential molecular mechanisms of MDR and fitness.

Sofianos G, Piombo E, Dubey M, Karlsson M, Karaoglanidis G, Tzelepis G Mol Plant Pathol. 2024; 25(9):e70004.

PMID: 39244735 PMC: 11380696. DOI: 10.1111/mpp.70004.


Managing fruit rot diseases of .

Neugebauer K, Mattupalli C, Hu M, Oliver J, VanderWeide J, Lu Y Front Plant Sci. 2024; 15:1428769.

PMID: 39166248 PMC: 11333449. DOI: 10.3389/fpls.2024.1428769.


Genotypic and phenotypic characterization of resistance to fenhexamid, carboxin, and, prochloraz, in isolates collected from cut roses in Colombia.

Giraldo D, Saldarriaga C, Garcia H, Lopez M, Gonzalez A Front Microbiol. 2024; 15:1378597.

PMID: 39144215 PMC: 11323744. DOI: 10.3389/fmicb.2024.1378597.


Resistance to the SDHI Fungicides Boscalid and Fluopyram in Populations from Commercial Cucurbit Fields in Spain.

Vielba-Fernandez A, Polonio A, Ruiz-Jimenez L, de Vicente A, Perez-Garcia A, Fernandez-Ortuno D J Fungi (Basel). 2021; 7(9).

PMID: 34575771 PMC: 8464660. DOI: 10.3390/jof7090733.


Multiple mutations across the succinate dehydrogenase gene complex are associated with boscalid resistance in Didymella tanaceti in pyrethrum.

Pearce T, Wilson C, Gent D, Scott J PLoS One. 2019; 14(6):e0218569.

PMID: 31220147 PMC: 6586343. DOI: 10.1371/journal.pone.0218569.


References
1.
Tuohy M, Reja V, Park S, Perlin D, Wnek M, Procop G . Use of a high-resolution melt assay to characterize codon 54 of the cyp51A gene of Aspergillus fumigatus on a Rotor-Gene 6000 instrument. Antimicrob Agents Chemother. 2010; 54(5):2248-51. PMC: 2863670. DOI: 10.1128/AAC.01712-09. View

2.
De Miccolis Angelini R, Masiello M, Rotolo C, Pollastro S, Faretra F . Molecular characterisation and detection of resistance to succinate dehydrogenase inhibitor fungicides in Botryotinia fuckeliana (Botrytis cinerea). Pest Manag Sci. 2014; 70(12):1884-93. DOI: 10.1002/ps.3748. View

3.
Papavasileiou A, Madesis P, Karaoglanidis G . Identification and Differentiation of Monilinia Species Causing Brown Rot of Pome and Stone Fruit using High-Resolution Melting (HRM) Analysis. Phytopathology. 2016; 106(9):1055-64. DOI: 10.1094/PHYTO-01-16-0016-R. View

4.
Veloukas T, Markoglou A, Karaoglanidis G . Differential Effect of SdhB Gene Mutations on the Sensitivity to SDHI Fungicides in Botrytis cinerea. Plant Dis. 2019; 97(1):118-122. DOI: 10.1094/PDIS-03-12-0322-RE. View

5.
Yin Y, Kim Y, Xiao C . Molecular characterization of boscalid resistance in field isolates of Botrytis cinerea from apple. Phytopathology. 2011; 101(8):986-95. DOI: 10.1094/PHYTO-01-11-0016. View