Discrimination of Paederus fuscipes and Paederus littoralis by mtDNA-COI PCR-RFLP
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Date
2016
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Abstract
Background: Linear dermatitis is endemic in Iran where most cases occur in the Caspian Sea coast and Fars province. The disease is caused by beetles of the genus Paederus which are active from early spring to beginning of autumn although its incidence rises from May to August. The classic taxonomy of Paederus spp. is based on the male genitalia that is very complex and needs expertise. In this study, we report a DNA-based method to discriminate Paederus fuscipes and Paederus littoralis (=syn: P. lenkoranus, P. ilsae). Methods: Type specimens were collected from north and south of Iran. Molecular typing of the species was performed using restriction fragment length polymorphism (RFLP) analysis of polymerase chain reaction (PCR)-amplified fragments of mtDNA-COI. Results: Sequence analyses of the data obtained in this study showed significant DNA polymorphisms. There were 89 substitutions between COI sequences of the two species. The mtDNA-COI fragment comprises several useful species-specific restriction sites comprising HaeIII that could result in distinctively different species-specific PCR- RFLP profiles. The HaeIII enzyme cuts the 872 bp PCR amplicon of P. littoralis into 737 and 100 bp and two small nonvisible bands whereas it does not cut P. fuscipes amplicon into fragments. Conclusion: This study demonstrates that molecular typing is useful method and allows one to differentiate between two species and is recommended for discrimination of other Paederus species, which morphologically are indistinguishable or very difficult to be distinguished.
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mitochondrial DNA , animal experiment , animal model , Article , beetle , controlled study , dermatitis , DNA extraction , DNA polymorphism , female , genetic similarity , male , molecular biology , molecular typing , molecular weight , morphological adaptation , nonhuman , nucleic acid base substitution , nucleotide sequence , Paederus fuscipes , Paederus littoralis , polymerase chain reaction , restriction fragment length polymorphism , restriction mapping , sequence alignment , sequence analysis , ultraviolet radiation