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Comparison of the Virulence of Heterorhabdit Nematodes on Galleria mellonella L. (Lepidoptera: Pyralidae)

Year 2011, Volume: 2011 Issue: 2, 43 - 51, 01.06.2011

Abstract

The virulence of nine local heterorhabditid isolates obtained in a survey in South Carolina (USA) (Heterorhabditis megidis LEX, H. zealandica EDS and CHR, and H. bacteriophora WPS, SMP, PD, CFG, MF and CFM strains) with two other heterorhabditid nematodes from different place (H. bacteriophora Hb and HP88 strains) against last instar greater wax moth larvae were compared under laboratory conditions. Nematode concentrations of 5, 10, 25 and 100 infective juveniles (IJs) per larva were used. The Petri-plate bioassay procedure was used in the trials and each treatment was repeated 4 times. Petri dishes contained 7 larvae each were incubated in a dark growth cabinet at 25°C with 75% relative humidity. Mortalities were counted for 4 days. At the final count, mortalities were 53.6-100, 42.3-100, 66.1-100, 60.7-100, 57.7-100, 60.7-100, 45.2-100, 54.8-100, 30.4-100, 57.7-100 and 81.5-100% for H. megidis LEX, H. zealandica EDS and CHR, and H. bacteriophora WPS, SMP, PD, CFG, MF, CFM, Hb and HP88 strains at all concentrations, respectively. Positive regressions were observed between mortality and dose for all nematodes in the trials. When all dozes were evaluated together, H. bacteriophora HP88 strain produced the highest mortality with 81.5% at the lowest rate and differed than others by having 100% mortality in the other concentrations. As a result, all nematodes in the trails starting with H. bacteriophora WPS, PD and Hb, H. zealandica CHR and EDS, and H. megidis LEX strains were found promising in biological control.

References

  • Abbott, W.S., 1925. A method of computing the effectiveness of an insecticide. J. Econ. Entomol., 18, 265-267.
  • Bedding. R.A. and A.S. Molyneux, 1982. Penetration of insect cuticle by infective juveniles of Heterorhabditis spp. (Heterorhabiditae, Nematoda), Nematologica, 28, 354-359.
  • Burnell, A.M. and S.P. Stock, 2000. Heterorhabditis, Steinernema and their bacterial symbionts – lethal pathogens of insects. Nematology, 2, 31-42.
  • Canhilal, R. and G.R. Carner, 2006a. Natural occurrence of entomopathogenic nematodes (Rhabditida: Steinernematidae and Heterorhabditidae) in South Carolina. J. Agric. Urban Entomol., 23, 159-166.
  • Canhilal, R. and G.R. Carner, 2006b. Efficacy of entomopathogenic nematodes (Rhabditida: Steinernematidae and Heterorhabditidae) against the squash vine borer, Melittia cucurbitae (Lepidoptera: Sesiidae) in South Carolina. J. Agric. Urban Entomol., 23, 27-39.
  • Csontos, A.S. and L. Boven, 2002. Lateral movement of the entomopathogenic nematodes Steinernema glaseri and Heterorhabditis bacteriophora in sand at different temperatures in response to host seeking. Biocontr. Sci. Technol., 12, 137-139.
  • Ehlers, R.-U. and A. Peters, 1998. Entomopathogenic nematodes in biological control: Feasibility, perspectives and possible risks. in: Biological Control: Benefits and risks. Edited H.M.T. Hokkanen and J.M. Lynch. Publ. by University Press, Cambridge, 119-136.
  • Epsky, N.D. and J.L. Capinera, 1994. Invasion efficiency as a measure of efficacy of the entomopathogenic nematode Steinernema carpocapsae (Rhabditida: Steinernematidae). J. Econ. Entoml., 87, 366-370.
  • Forst, S. and K. Nealson, 1996. Molecular biology of the symbiotic pathogenic bacteria Xenorhabdus spp. and Photohabdus spp. Microbiological Reviews, 60, 2128.
  • Georgis, R, A.M. Koppenhöfer, L.A. Lacey, G. Belair, L.W. Duncan, P.S. Grewal, M. Samish, L. Tan, P. Torr and R.W.H.M. Van Tol, 2006. Success and failures in the use of parasitic nematodes for pest control. Biological Control, 38, 103-123.
  • Glazer, I. and E.E. Lewis, 2000. Bioassays for Entomopathogenic Nematodes. in: Bioassays for entomopathogens and nematodes. Edited A. Navon. Publ. by Kluver Academic Publisher, Holland, 271293.
  • Kaya, H.K. and R. Gaugler, 1993. Entomopathogenic nematodes. Annu. Rev. Entomol., 38, 181-206.
  • Klein, M.G., 1990. Efficacy against soil-inhabiting insect pests. in: Entomopathogenic Nematodes in Biological Control. Edited R. Gaugler and H.K. Kaya. Publ. by CRC Press, Boca Raton, 195-214.
  • Koppenhöfer, A.M., 2000. Nematodes. in: Field Manual Technique in Invertebrate Pathology. Edited L. Lacey and H.K. Kaya. Publ. by Kluwer Academic Publishers, Dordrecht, Netherlands, 283-301.
  • Koppenhöfer, A.M., P.S. Grewal and H.K. Kaya, 2000. Synergism of entomopathogenic nematodes and imidacloprid against white grubs: greenhouse and field evaluation. Biological Control, 19, 245-251.
  • Kung, S.P., R. Gaugler and H.K. Kaya, 1990. Soil type and entomopathogenic nematode persistence. J. Invertebr. Pathol., 55, 401-406.
  • Mannion, C.E and R.K. Jansson, 1992. Comparison of ten entomopathogenic nematodes for control of seweetpotato weevil (Coleoptera: Apionidae). J. Econ. Entomol., 85, 1642-1650.
  • Mbata, G.N. and D.I. Sapiro-Ilan, 2005. Laboratory evaluation of virulence of heterorhabditid nematodes to Plodia interpunctella Hübner (Lepidoptera: Pyralidae). J. Econ. Entomol., 34, 676-682.
  • Medeiros, J., J.S. Rosa, J. Tavares and N. Simoes, 2000. Susceptibility of Pseudaletia unipuncta (Lepidoptera: Noctuidae) to entomopathogenic nematodes (Rhabditida: Steinernematidae and Heterorhabditidae) isolated in the Azores: Effect of nematode strain and host age. J. Economic Entomol., 93, 1403-1408.
  • Peters, A., 2010. Formulation ve application: Key technologies to expand the use of entomopathogenic nematodes. 43rd Annual Meeting of The Society for Invertebrate Pathology, 11-15 July 2010, Trabzon, Turkey, pp:145.
  • Peters, A., 1996. The natural host range of Steinernema ve Heterorhabditis spp. and their impact on insect populations. Biocontr. Sci. Technol., 6, 389-402.
  • Shapiro-Ilan, D.I, D.H. Gouge and A.M. Koppenhöfer, 2002. Factors affecting commercial success case studies in cotton, turf and citrus. in: Entomopathogenic Nematology. Edited R. Gaugler. Publ. by CABI, New York, 333-355.
  • SPSS, 2003. A simple Guide and Reference, 11.0 Update. Pearson Education Inc., Boston, pp. 386.
  • Sulistyanto, D. and R.U. Ehlers, 1996. Efficacy of the entompathogenic nematodes Heterorhabditis bacteriophora for the control of grubs (Phyllopertha horticola and Aphodius contaminatus) in golf course turf. Biocontr. Sci. and Technol., 6, 247-250.
  • Susurluk, I.A., 2008. Influence of temperature on the vertical movement of the entomopathogenic nematodes, Steinernema feltiae (TUR-S3) and Heterorhabditis bacteriophora (TUR-H2) and infectivity of the moving nematodes. Nematology, 10, 137–141.
  • Susurluk, A., 2006. Effectiveness of the entomopathogenic nematodes, Heterorhabditis bacteriophora and Steinernema feltiae against Tenebrio molitor (yellow mealworm) larvae at different temperature and soil types. Turk. J. of Biol., 30, 199-205.
  • Susurluk, I.A., I. Ünlü and I. Kepenekci, 2003. Host finding behaviour of two different Turkish isolates of entomopathogenic nematode species, Heterorhabditis bacteriophora. Poinar 1976 (Rhabditida: Heterorhabditidae). Turk. J. of Biol., 27, 203-207.
  • Wang, Y. and R. Gaugler, 1998. Host and penetration site location by entomopathogenic nematodes against Japanese beetle larvae. J. Invertebr. Pathol., 72, 313318.
  • Woodring, J.L. and H.K. Kaya, 1988. Steinernematid ve heterorhabditid nematodes: a hand book of biology and techniques. Southern Cooperative Series, Bulletin 331. Southern Cooperative, Fayetteville, AR.

Heterorhabdit Nematodların (Rhabditida: Heterorhabditidae) Biyolojik Etkinliklerinin Galleria mellonella L. (Lepidoptera: Pyralidae) Üzerinde Karşılaştırılması

Year 2011, Volume: 2011 Issue: 2, 43 - 51, 01.06.2011

Abstract

Güney Carolina’da (ABD) yapılan bir sürveyden elde edilen dokuz yerel, (Heterorhabditis megidis LEX, H. zealandica EDS ve CHR, ve H. bacteriophora WPS, SMP, PD, CFG, MF ve CFM) ve dışarıdan elde edilen iki Heterorhabditis izolatının (H. bacteriophora Hb ve HP88) biyolojik etkinliği, son dönem Galleria mellonella larvaları üzerinde laboratuar şartlarında karşılaştırılmıştır. Denemelerde nematodların 5, 10, 25 ve 100 nematod / larva konsantrasyonları kullanılmıştır. Petri kaplarında yapılan denemelerde, her doz dört petri içerisinde tekrar edilmiştir. İçerisinde 7 larva bulunan petri kapları, 25°C’de ve %75 nem içeren inkübatöre yerleştirilmiş ve ölüm oranları günlük olarak dört gün boyunca kaydedilmiştir. Son gün sayımında, ölüm oranları, H. megidis LEX, H. zealandica EDS ve CHR, ve H. bacteriophora WPS, SMP, PD, CFG, MF, CFM, Hb ve HP88 ırklarının tüm dozlar için, sırasıyla %53.6-100, 42.3-100, 66.1-100, 60.7-100, 57.7-100, 60.7-100, 45.2-100, 54.8-100, 30.4-100, 57.7-100 ve 81.5-100 arasında gerçekleşmiş ve genellikle nematod dozunun artışıyla ölüm oranları da artmıştır. Tüm dozlar bir arada değerlendirildiğinde, H. bacteriophora HP88 ırkı en düşük dozda %81.5’le en yüksek ölüm oranını oluşturmuş ve diğer dozlarda %100 ölüm gerçekleştirmesiyle diğerlerinden ayrılmıştır. Elde edilen sonuçlara göre, H. bacteriophora WPS, PD ve Hb, H. zealandica CHR ve EDS ve H. megidis LEX ırkları başta olmak üzere denemedeki tüm nematodların, biyolojik mücadelede ümitvar oldukları kanaatine varılmıştır.

References

  • Abbott, W.S., 1925. A method of computing the effectiveness of an insecticide. J. Econ. Entomol., 18, 265-267.
  • Bedding. R.A. and A.S. Molyneux, 1982. Penetration of insect cuticle by infective juveniles of Heterorhabditis spp. (Heterorhabiditae, Nematoda), Nematologica, 28, 354-359.
  • Burnell, A.M. and S.P. Stock, 2000. Heterorhabditis, Steinernema and their bacterial symbionts – lethal pathogens of insects. Nematology, 2, 31-42.
  • Canhilal, R. and G.R. Carner, 2006a. Natural occurrence of entomopathogenic nematodes (Rhabditida: Steinernematidae and Heterorhabditidae) in South Carolina. J. Agric. Urban Entomol., 23, 159-166.
  • Canhilal, R. and G.R. Carner, 2006b. Efficacy of entomopathogenic nematodes (Rhabditida: Steinernematidae and Heterorhabditidae) against the squash vine borer, Melittia cucurbitae (Lepidoptera: Sesiidae) in South Carolina. J. Agric. Urban Entomol., 23, 27-39.
  • Csontos, A.S. and L. Boven, 2002. Lateral movement of the entomopathogenic nematodes Steinernema glaseri and Heterorhabditis bacteriophora in sand at different temperatures in response to host seeking. Biocontr. Sci. Technol., 12, 137-139.
  • Ehlers, R.-U. and A. Peters, 1998. Entomopathogenic nematodes in biological control: Feasibility, perspectives and possible risks. in: Biological Control: Benefits and risks. Edited H.M.T. Hokkanen and J.M. Lynch. Publ. by University Press, Cambridge, 119-136.
  • Epsky, N.D. and J.L. Capinera, 1994. Invasion efficiency as a measure of efficacy of the entomopathogenic nematode Steinernema carpocapsae (Rhabditida: Steinernematidae). J. Econ. Entoml., 87, 366-370.
  • Forst, S. and K. Nealson, 1996. Molecular biology of the symbiotic pathogenic bacteria Xenorhabdus spp. and Photohabdus spp. Microbiological Reviews, 60, 2128.
  • Georgis, R, A.M. Koppenhöfer, L.A. Lacey, G. Belair, L.W. Duncan, P.S. Grewal, M. Samish, L. Tan, P. Torr and R.W.H.M. Van Tol, 2006. Success and failures in the use of parasitic nematodes for pest control. Biological Control, 38, 103-123.
  • Glazer, I. and E.E. Lewis, 2000. Bioassays for Entomopathogenic Nematodes. in: Bioassays for entomopathogens and nematodes. Edited A. Navon. Publ. by Kluver Academic Publisher, Holland, 271293.
  • Kaya, H.K. and R. Gaugler, 1993. Entomopathogenic nematodes. Annu. Rev. Entomol., 38, 181-206.
  • Klein, M.G., 1990. Efficacy against soil-inhabiting insect pests. in: Entomopathogenic Nematodes in Biological Control. Edited R. Gaugler and H.K. Kaya. Publ. by CRC Press, Boca Raton, 195-214.
  • Koppenhöfer, A.M., 2000. Nematodes. in: Field Manual Technique in Invertebrate Pathology. Edited L. Lacey and H.K. Kaya. Publ. by Kluwer Academic Publishers, Dordrecht, Netherlands, 283-301.
  • Koppenhöfer, A.M., P.S. Grewal and H.K. Kaya, 2000. Synergism of entomopathogenic nematodes and imidacloprid against white grubs: greenhouse and field evaluation. Biological Control, 19, 245-251.
  • Kung, S.P., R. Gaugler and H.K. Kaya, 1990. Soil type and entomopathogenic nematode persistence. J. Invertebr. Pathol., 55, 401-406.
  • Mannion, C.E and R.K. Jansson, 1992. Comparison of ten entomopathogenic nematodes for control of seweetpotato weevil (Coleoptera: Apionidae). J. Econ. Entomol., 85, 1642-1650.
  • Mbata, G.N. and D.I. Sapiro-Ilan, 2005. Laboratory evaluation of virulence of heterorhabditid nematodes to Plodia interpunctella Hübner (Lepidoptera: Pyralidae). J. Econ. Entomol., 34, 676-682.
  • Medeiros, J., J.S. Rosa, J. Tavares and N. Simoes, 2000. Susceptibility of Pseudaletia unipuncta (Lepidoptera: Noctuidae) to entomopathogenic nematodes (Rhabditida: Steinernematidae and Heterorhabditidae) isolated in the Azores: Effect of nematode strain and host age. J. Economic Entomol., 93, 1403-1408.
  • Peters, A., 2010. Formulation ve application: Key technologies to expand the use of entomopathogenic nematodes. 43rd Annual Meeting of The Society for Invertebrate Pathology, 11-15 July 2010, Trabzon, Turkey, pp:145.
  • Peters, A., 1996. The natural host range of Steinernema ve Heterorhabditis spp. and their impact on insect populations. Biocontr. Sci. Technol., 6, 389-402.
  • Shapiro-Ilan, D.I, D.H. Gouge and A.M. Koppenhöfer, 2002. Factors affecting commercial success case studies in cotton, turf and citrus. in: Entomopathogenic Nematology. Edited R. Gaugler. Publ. by CABI, New York, 333-355.
  • SPSS, 2003. A simple Guide and Reference, 11.0 Update. Pearson Education Inc., Boston, pp. 386.
  • Sulistyanto, D. and R.U. Ehlers, 1996. Efficacy of the entompathogenic nematodes Heterorhabditis bacteriophora for the control of grubs (Phyllopertha horticola and Aphodius contaminatus) in golf course turf. Biocontr. Sci. and Technol., 6, 247-250.
  • Susurluk, I.A., 2008. Influence of temperature on the vertical movement of the entomopathogenic nematodes, Steinernema feltiae (TUR-S3) and Heterorhabditis bacteriophora (TUR-H2) and infectivity of the moving nematodes. Nematology, 10, 137–141.
  • Susurluk, A., 2006. Effectiveness of the entomopathogenic nematodes, Heterorhabditis bacteriophora and Steinernema feltiae against Tenebrio molitor (yellow mealworm) larvae at different temperature and soil types. Turk. J. of Biol., 30, 199-205.
  • Susurluk, I.A., I. Ünlü and I. Kepenekci, 2003. Host finding behaviour of two different Turkish isolates of entomopathogenic nematode species, Heterorhabditis bacteriophora. Poinar 1976 (Rhabditida: Heterorhabditidae). Turk. J. of Biol., 27, 203-207.
  • Wang, Y. and R. Gaugler, 1998. Host and penetration site location by entomopathogenic nematodes against Japanese beetle larvae. J. Invertebr. Pathol., 72, 313318.
  • Woodring, J.L. and H.K. Kaya, 1988. Steinernematid ve heterorhabditid nematodes: a hand book of biology and techniques. Southern Cooperative Series, Bulletin 331. Southern Cooperative, Fayetteville, AR.
There are 29 citations in total.

Details

Primary Language Turkish
Journal Section Research Articles
Authors

Ramazan Canhilal This is me

Publication Date June 1, 2011
Published in Issue Year 2011 Volume: 2011 Issue: 2

Cite

APA Canhilal, R. (2011). Heterorhabdit Nematodların (Rhabditida: Heterorhabditidae) Biyolojik Etkinliklerinin Galleria mellonella L. (Lepidoptera: Pyralidae) Üzerinde Karşılaştırılması. Journal of Agricultural Faculty of Gaziosmanpaşa University (JAFAG), 2011(2), 43-51.