S0049-3848(14)00284-9

Original Article

Occurrence and Distribution of Entomopathogenic Nematodes in Horticultural Crops Soils of Solan and Sirmaur District of Himachal Pradesh, India

Year: 2021 | Month: September | Volume 14 | Issue 3

References (29)

1.Adams, B.J., Fodor, A., Koppenhofer, H.S., Stackebrandt, E., Stock, S.P. and Klein, M.G. 2006. Biodiversity and systematics of nematode bacterium entomopathogens. Biol Control, 37: 32–49.

View at Google Scholar

2.Baimey, H., Zadji, L., Afouda, L., Moens, M. and Decraemer, W. 2015. Influence of pesticides, soil temperature and moisture on entomopathogenic nematodes from southern Benin and control of underground termite nest populations. Nematology, 17(9): 1057–1069.

View at Google Scholar

3.Bedding, R.A. and Akhrust, R.J. 1975. A simple technique for the detection of insect parasitic rhabditid nematodes in soil. Nematologica, 21: 109-110.

View at Google Scholar

4.Bedding, R.A., Molyneux, A.S. and Akhurst, R.J. 1983. Heterorhabditis spp., Neoaplectana spp., and Steinernema kraussei: interspecific and intraspecific differences in infectivity for insects. Exp. Parasitol., 55: 249–257.

View at Google Scholar

5.Bedding, R.A., Molyneux, A.S. and Akhurst, R.J. 1983. Heterorhabditis spp., Neoaplectana spp., and Steinernema kraussei: interspecific and intraspecific differences in infectivity for insects. Exp. Parasitol., 55: 249–257.

View at Google Scholar

6.Boemare, N.E., Akhurst, R.J. and Mourant, R.G. 1993. DNA relatedness between Xenorhabdus spp. (Enterobacteriaceae), symbiotic bacteria of entomopathogenic nematodes and a proposal to transfer Xenorhabdus luminescens to a new genus, Photorhabdusgen. nov. Int. J. Syst. Bacteriol., 43: 249-255.

View at Google Scholar

7.da Silva, C.C.A., Dunphy, G.B. and Rau, M.E. 2000. Interaction of Xenorhabdus nematophilus (Enterobacteriaceae) with the antimicrobial defenses of the house cricket, Acheta domestica. J. Invertebr. Pathol., 76: 285–292.

View at Google Scholar

8.Dowds, B.C.A. and Peters, A. 2002. Virulence mechanisms. In: Gaugler, R. (Ed.), Entomopathogenic Nematology. NY: CABI, New York, pp. 79–98.

View at Google Scholar

9.Ferreira, T., Van Reenen, C.A., Tailliez, P., Pages, S., Malan, A.P. and Dicks, L.M.T. 2016. First report of the symbiotic bacterium Xenorhabdus indica associated with the entomopathogenic nematode Steinernema yirgalemense. J. Helminthol, 90(1): 108.

View at Google Scholar

10.Forst, S., Dowds, B., Boemare, N. and Stackebrandt, E. 1997. Xenorhabdus and Photorhabdus spp.: bugs that kill bugs. Annu. Rev. Microbiol., 51: 47–72.

View at Google Scholar

11.Georgis, R., Koppenhofer, A.M., Lacey, L.A., Belair, G., Duncan, L.W. and Grewal, P.S. 2006. Successes and failures in the use of parasitic nematodes for pest control. Biol. Contr., 38: 103–123.

View at Google Scholar

12.Grewal, P.S. and Georgis, R. 1998. Entomopathogenic nematodes, Methods in Biotechnology. Biopest., 5: 271–299.

View at Google Scholar

13.Hazir, S., Shapiro-Ilan, D.I., Bock, C.H. and Leite, L.G. 2018. Thermo-stability, dose effects and shelf-life of antifungal metabolite-containing supernatants produced by Xenorhabdus szentirmaii. Eur. J. Plant Pathol., 150(2): 297–306.

View at Google Scholar

14.Hominick, W.M., Briscoe, B.R., del Pino, F.G., Heng, J.A., Hunt, D.J., Kozodoy, E., Mracek, Z., Nguyen, K.B., Reid, A.P. and Spiridonov, S. 1997. Biosystematics of entomopathogenic nematodes: current status, protocols and definitions. J. Helminthol., 71: 271–298.

View at Google Scholar

15.Kaya, H.K. and Gaugler, R. 1993. Entomopathogenic nematodes. Annual Rev. Entomol., 38: 181-206.

View at Google Scholar

16.Kwizera, V. and Susurluk, I.A. 2017. Evaluation of the effects of some insecticides based on neonicotinoids on entomopathogenic nematodes, Steinernema feltiae and S. carpocapsae, Isj-Invertebr. Survive J., 14: 375–378.

View at Google Scholar

17.Laznik, Z. and Trdan, S. 2014. The influence of insecticides on the viability of entomopathogenic nematodes (Rhabditida: Steinernematidae and Heterorhabditidae) under laboratory conditions. Pest Manag. Sci., 70(5): 784–789.

View at Google Scholar

18.Laznik, Z. and Trdan, S. 2017. The influence of herbicides on the viability of entomopathogenic nematodes (Rhabditida: Steinernematidae and Heterorhabditidae). Int. J. Pest Manag., 63(2): 105–111.

View at Google Scholar

19.Lewis, E.E., Campbell, J., Griffin, C., Kaya, H. and Peters, A. 2006. Behavioral ecology of entomopathogenic nematodes. Biol. Contr., 38(1): 66–79.

View at Google Scholar

20.Mracek, Z., Becvar, S. and Kindlmann, P. 2000. Survey of entomopathogenic nematodes from the families Steinernematidae and Heterorhabditidae (Nematoda: Rhabditida) in Czech Republic. Folia Parasitologica, 46: 145-148.

View at Google Scholar

21.Ogretmen, A., Yuksel, E. and Canhilal, R. 2020. Susceptibility of larvae of wireworms (Agriotes spp.) (Coleoptera: elateridae) to some Turkish isolates of entomopathogenic nematodes in the laboratory and field conditions. Biol. Contr., 104320.

View at Google Scholar

22.Ozdemir, E., Inak, E., Evlice, E. and Laznik, Z. 2020a. Compatibility of entomopathogenic nematodes with pesticides registered in vegetable crops under laboratory conditions. J. Plant Dis. Prot., 127: 529–535.

View at Google Scholar

23.Poinar, G.O. 1976. Description and biology of a new insect parasitic rhabditoid, Heterorhabditis bacteriophora n. gen. n. sp. (Rhabditida: Heterorhabditidae n. fam.). Nematologica., 21: 463-470.

View at Google Scholar

24.Shahina, F., Anis, M., Zainab, S. and Maqbool, M.A. 1998. Entomopathogenic nematodes in soil samples collected from Sindh, Pakistan. Pakistan J. Nematology, 16: 41-50.

View at Google Scholar

25.Thomas, G.M. and Poinar, J.G.O. 1979. Xenorhabdus gen. nov. a genus of entomopathogenic, nematophilic bacteria of the family Enterobacteriaceae. Int. J. Syst. Bacteriol., 29: 352-360.

View at Google Scholar

26.Toepfer, S., Kurtz, B. and Kuhlmann, U. 2010. Influence of soil on the efficacy of entomopathogenic nematodes in reducing Diabrotica virgifera in maize. J. Pest. Sci., 83: 257–264.

View at Google Scholar

27.Travassor, L. 1927. Sobre O genera oxysomatum. Bol. Biol. Sea Paolo., 5: 20-21.

View at Google Scholar

28.White, G.F. 1927. A method for obtaining infecting nematode larvae from cultures. Sci., 66: 302-303.

View at Google Scholar

29.Zdemir, E. and Evlice, E. 2020. Assessment of the susceptibility of the Turkestan cockroach, Blatta lateralis to Turkish isolates of entomopathogenic nematodes. Turk. J. Biol. Control, 11(1): 127–139.

View at Google Scholar

International Journal of Agriculture Environment & Biotechnology(IJAEB)| In Association with AAEB

27082322 - Visitors since February 20, 2019