2022
DOI: 10.1016/j.pestbp.2021.104985
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Biochemical and molecular mechanisms of acaricide resistance in Dermanyssus gallinae populations from Turkey

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Cited by 13 publications
(11 citation statements)
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“…Although there are varying degrees of molecular data on COI, 16S, ITS, Tropomyosin, and EF-1α sequences of D. gallinae from different countries (Roy et al 2010;Çiloğlu et al 2020;Karp-Tatham et al 2020;Roy et al 2021;Koç et al 2022), no sequence data belonging to other mitochondrial genes have been available so far, excluding the full mitochondrial genome. Considering the significance of the identification of genetic diversity within and between species from various geographical locations, there was a gap in the literature for the other mtDNA sequences of PRM.…”
Section: Resultsmentioning
confidence: 99%
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“…Although there are varying degrees of molecular data on COI, 16S, ITS, Tropomyosin, and EF-1α sequences of D. gallinae from different countries (Roy et al 2010;Çiloğlu et al 2020;Karp-Tatham et al 2020;Roy et al 2021;Koç et al 2022), no sequence data belonging to other mitochondrial genes have been available so far, excluding the full mitochondrial genome. Considering the significance of the identification of genetic diversity within and between species from various geographical locations, there was a gap in the literature for the other mtDNA sequences of PRM.…”
Section: Resultsmentioning
confidence: 99%
“…The variation was detected secondly high in atp6 followed by ND5 and ND4 (Table 1). Although this variation based on cytb sequences can still be considered low, the determination of less variation (0.4%) within COI sequences of Turkish PRM populations (Koç et al 2022), might be an indicator for its usefulness as a marker. Moreover, the genetic variation was higher (1.7%) when Turkish PRM sequences were compared to cytb sequence of a Chinese PRM population, suggesting the increasing variation by distance which is an important feature of a marker.…”
Section: Resultsmentioning
confidence: 99%
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“…Acaricide resistance is not unique to T . urticae , and other mite species, including Dermanyssus gallinae , Panonychus citri , Panonychus ulmi , have demonstrated resistance to acaricides through biochemical and molecular mechanisms of acaricide detoxification [ 14 , 15 ]. One of the most important mechanisms for acaricide resistance development in T .…”
Section: Introductionmentioning
confidence: 99%
“…Acaricide resistance can develop through multiple mechanisms, including enhanced metabolic breakdown of acaricides, target site insensitivity, and behavioral resistance [12,13]. Acaricide resistance is not unique to T. urticae, and other mite species, including Dermanyssus gallinae, Panonychus citri, Panonychus ulmi, have demonstrated resistance to acaricides through biochemical and molecular mechanisms of acaricide detoxification [14,15]. One of the most important mechanisms for acaricide resistance development in T. urticae is target site insensitivity, where single nucleotide polymorphisms (SNPs) can result in an alteration of an amino acid sequence and the translated protein which, in-turn, binds the insecticide more weakly or not at all [13].…”
Section: Introductionmentioning
confidence: 99%