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2013 | 20 | 3 |

Tytuł artykułu

Evaluation of the effect of various concentrations of selected pyrethroids on the development of Dermacentor reticulatus eggs and larvae

Treść / Zawartość

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
The Palearctic three-host species Dermacentor reticulatus contributes to the circulation of numerous pathogens in the environment. Reduction of its abundance may therefore decrease the risk of tick-borne diseases in a given area. The aim of the study is to determine the effect of various concentrations of three pyrethroids – deltamethrin (D), cypermethrin (C), and alpha-cypermethrin (AC) on the development of D. reticulatus eggs and larvae. 217 engorged D. reticulatus females were examined in the investigations. After the feeding period, they were sprayed with 0.015625%, 0.03125%, 0.0625%, and 0.125% solutions of D, C, and AC, and kept at a temperature of 25oC and 90% relative humidity throughout the preoviposition and oviposition periods. Eggs laid by females were kept in the same conditions until larval hatch. Based on the results obtained, parameters of the course of maturation and oviposition, as well as parameters of embryonic development, were determined. The investigations showed that the pyrethroids tested prolonged the egg maturation period, reduced the number and weight of eggs, and caused disturbances in embryogenesis in D. reticulatus. Upon treatment with as little as 0.015625% AC, larvae did not develop and all eggs died 1–2 days after oviposition. C led to a decreased percentage of normal larval hatch – 31.96%, 15.51% and 12.5%, respectively, after using three increasing concentrations (control 98.15%), and a high rate of egg and embryo mortality. The least detrimental effect on the D. reticulatus maturation and embryonic periods was exerted by deltamethrin (82.74%, 84.37% and 16.80% of normal larvae in treatment with the three concentrations). Morphological anomalies were observed in larvae during the experimental period. AC appeared to have the most toxic effect during the maturity and egg development periods, while C exhibited lower toxicity. Application of these pyrethroids in engorged D. reticulatus females exerts distant effects that lead to substantial reduction of tick offspring abundance.

Słowa kluczowe

Wydawca

-

Rocznik

Tom

20

Numer

3

Opis fizyczny

p.447-451,fig.,ref.

Twórcy

autor
  • Chair and Department of Biology and Parasitology, Medical University, Lublin, Poland
autor
  • Chair and Department of Biology and Parasitology, Medical University, Lublin, Poland
autor
  • Chair and Department of Biology and Parasitology, Medical University, Lublin, Poland

Bibliografia

  • 1. Nosek J. The ecology and public health importance of Dermacentor marginatus and D. reticulatus ticks in Central Europe. Folia Parasitol(Praha) 1972; 19: 93–102.
  • 2. Spitalská E, Sparagano O, Boldis V. Static and dynamic systems in Rickettsia slovaca life cycle evaluated by quantitative real-time polymerase chain reaction. Transbound Emerg Dis. 2010; 57: 70–71.
  • 3. Kahl O, Janetzki C, Gray JS, Stein J, Bauch RJ. Tick infection rates with Borrelia: Ixodes ricinus versus Haemaphysalis concinna andDermacentor reticulatus in two locations in eastern Germany. MedVet Entomol. 1992; 6: 363–366.
  • 4. Wójcik-Fatla A, Bartosik K, Buczek A, Dutkiewicz J. Babesia microti in adult Dermacentor reticulatus ticks from eastern Poland. Vector BorneZoonotic Dis. 2012; 12: 841–843.
  • 5. Bartosik K, Wiśniowski Ł, Buczek A. Questing behavior of Dermacentor reticulatus adults (Acari: Amblyommidae) during diurnal activityperiods in eastern Poland. J Med Entomol. 2012; 49: 859–864.
  • 6. Burridge MJ, Simmons L-A, Allan SA. Efficacy of acaricides for control of four tick species of agricultural and public health significance in theUnited States. J Agr Urban Entomol. 2003; 20: 207–219.
  • 7. Brito LG, Barbieri FS, Rocha RB, Oliviera MCS, Ribeiro ES. Evaluation of the efficacy of acaricides used to control the cattle tick, Rhipicephalusmicroplus, in dairy herds raised in the Brazilian Southwestern Amazon.Vet Med Inter. 2011; ID 806093, doi: 10.4061/2011/806093.
  • 8. Fernández-Salas A, Rodriguez-Vivas RI, Alonso-Diaz MÁ. Resistance of Rhipicephalus microplus to amitraz and cypermethrin in tropical cattle farms in Veracruz, Mexico. J Parasitol. 2012; 98: 1010–1014. doi:10.1645/GE-3074.
  • 9. Shanbaky NM, Khalil GM. The subgenus Persicargas (Ixodoidea: Argas). 22. Effect of egg development in A. (P.) arboreus. Exp Parasitol.1976; 37: 361–366.
  • 10. Friesen KJ, Kaufman WR. Cypermethrin inhibits egg development in the ixodid tick, Amblyomma hebraeum. Pestic Biochem Physiol.2003; 76: 25–25.
  • 11. Taylor D, Chinzei Y, Miura K, Ando K. Vitellogenin synthesis, processing and hormonal regulation in the tick, Ornithodoros parkeri (Acari: Argasidae). Insect Biochem. 1991a; 21: 723–733.
  • 12. Taylor D, Chinzei Y, Itoh K, Higuchi N, Ando K. Promotion of vitellogenesis by pyrethroids in mated and virgin female adults, male adults and fourth instar female nymphs of Ornithodoros moubata (Acari: Argasidae). J Med Entomol. 1991b; 28: 322–329.
  • 13. Rogers CE, Howell DE. Responses of the fowl tick Argas radiatus to compounds of cadmium and antimony. Ann Ent Soc Amer. 1971; 64:258–263.
  • 14. Sutherrest R. The precise estimation of the effects of extrinsic factors on the egg production and egg hatch rates of ixodid ticks. Parasitology1969; 59: 305–310.
  • 15. Mansingh A, Rawlins SC. Inhibition of oviposition in the cattle tick Boophilus microplus by certain acaricides. Pestic Sci. 1979; 10: 486–494.
  • 16. Kaufman W, Ungarian S, Noga A. The effects of avermectins on feeding, salivary fluid secretion and fecundity in some ixodid ticks. Exp ApplAcarol. 1986; 2: 1–18.
  • 17. Davey RB, Ahrens EH, George JE. Ovicial activity of topically applied acaricides against eggs of the southern cattle tick Boophilus annulatus(Acari: Ixodidae). J Econ Entomol. 1989; 82: 539–542.
  • 18. Bicalho KA, Ferreira F, Borges LM, Ribeiro MFB. In vitro evaluation of the effects of some acaricides on Rhipicephalus sanguineus (Acari:Ixodidae). Arq Bras med Vet Zootec. 2001; 53: 548–552.
  • 19. Jasik K, Buczek A. Development of the salivary glands in embryos of Ixodes ricinus (Acari: Ixodidae). Exp Appl Acarol. 2004; 32: 219–230.
  • 20. Buczek A. Influence of iodine compounds on embryogenesis of Argas (A.) reflexus (Fabricius, 1794)(Acari: Ixodida: Argasidae). Acta Parasitol.1993; 38: 41–43.
  • 21. Buczek A. Wirkungen von Temperatur und Luftfeuchtigkeit auf Embryonalentwicklung und das Eischlupfen bei der SchildzeckeHyalomma marginatum Koch (Acari: Ixodidae). Anz SchädlingskdPflanzenchutz Umweltschutz. 1993; 66: 6–9.
  • 22. Buczek A. Inhibitory factors of Argas (Argas) reflexus (Fabr.)(Acari: Argasidae) larvae development. Anz Schädlingskd PflanzenchutzUmweltschutz. 1996; 69: 23–25.
  • 23. Buczek A. Experimental teratogeny in the tick Hyalomma marginatum (Acari: Ixodida: Ixodidae): Effect of high humidity on embryonicdevelopment. J Med Entomol. 2000; 37: 807–814.

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Bibliografia

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