Biological Control by Bacillus thuringiensis subsp. israelensis

2000 
s of XIth European Meeting of the Society for Vector Ecology, pp. 41, Lisbon, Portugal, 1998a. © 2000 by CRC Press LLC BIOLOGICAL CONTROL BY BACILLUS THURINGIENSIS SUBSP. ISRAELENSIS 51 Manasherob, R., E. Ben-Dov, A. Zaritsky, and Z. Barak. Germination, growth and sporulation of Bacillus thuringiensis subsp. israelensis in excreted food vacuoles of the protozoan Tetrahymena pyriformis. Applied and Environmental Microbiology. 64, pp. 1750-1758, 1998b. Margalith, Y. Biological control by Bacillus thuringiensis subsp. israelensis (Bti); history and present status. Israel Journal of Entomology. 23, pp. 3-8, 1989. Margalith, Y. Discovery of Bacillus thuringiensis israelensis, in Bacterial Control of Mosqui- toes and Black Flies, de Barjac, H. and D. J. Sutherland, Eds., Rutgers University Press, New Brunswick, NJ, pp. 3-9, 1990. Margalith, Y. and H. Bobroglo. The effect of organic materials and solids in water on the persistence of Bacillus thuringiensis var. israelensis serotype H14. Zeitschrift fuer Angewandte Entomologie 97, pp. 516-520, 1984. Margalith, Y., E. Zomer, Z. Erel and Z. Barak. Development and application of Bacillus thuringiensis var. israelensis H-14 as an effective biological control agent against mos- quitoes in Israel. Biotechnology. 1, pp. 74-75, 1983. Margalith, Y., A. Markus, and Z. Pelah. Effect of encapsulation on the persistence of Bacillus thuringiensis var. israelensis (H-14). Applied Microbiology and Biotechnology. 19, pp. 382-383, 1984. Margalith, Y., L. Lahkim-Tsror, C. Gascar-Gluzman, H. Bobroglio, and Z. Barak. Biological Control of mosquitoes in Israel, in Integrated Mosquito Control Methodologies, vol. 2, Laird, M. and J. W. Miles, Ed., Academic Press, London, Orlando, and New York, pp. 361-374, 1985. Margalith, Y., N. Becker, C. Back, and A. Zaritsky, Bacillus thuringiensis subsp. israelensis as a biological control agent of mosquitoes and black flies, in Bacillus thuringiensis Biotechnology and Environmental Benefits, vol. 1, Feng, T.-Y., K.-F. Chak, R. A. Smith, T. Yamamoto, Y. Margalith, C. Chilcott, and R. I. Rose, Eds., Hua Shiang Yuan Publishing Co., Taipei, Taiwan, pp. 521-556, 1995. Marrone, P. G., and S. C. Maclntosh, Resistance to Bacillus thuringiensis and resistance management, in Bacillus thuringiensis, an Environmental Biopesticide: Theory and Prac- tice, Entwistle, P. F., J. S. Cory, M. J. Bailey, and S. R. Higgs, Eds., John Wiley & Sons, Chichester, U.K., pp. 221-235, 1993. Mattimore, V. and J. R. Battista. Radioresistance of Deinococcus radiodurans: Function necessary to survive ionizing radiation are also necessary to survive prolonged desicca- tion. Journal of Bacteriology. 178, pp. 633-637, 1995. McClintock, T., C. R. Schaffer, and R. D. Sjoblad. A comparative review of the mammalian toxicity of Bacillus thuringiensis-based pesticides. Pesticide Science. 45, pp. 95-105, 1995. McGaughey, W. H. Isect resistance to the biological incecticide Bacillus thuringiensis. Sci- ence. 229, pp. 193-195, 1985. McGaughey, W. H., and M. E. Whalon. Managing insect resistance to Bacillus thuringiensis toxins. Science. 258, pp. 1451-1455, 1992. McLean, K. M. and H. R. Whiteley. Expression in Escherichia coli of a cloned crystal protein gene of Bacillus thuringiensis subsp. israelensis. Journal of Bacteriology. 169, pp. 1017-1023, 1987. Merritt, R.W., R.H. Dadd, and E.D. Walker. Feeding behavior, natural food, and nutritional relationships of larval mosquitoes. Annual Review of Entomology. 37, pp. 349-376, 1992. Molloy, D. P. Progress in the biological control of blackflies with Bacillus thuringiensis, with emphasis on temperate climates, in Bacterial Control of Mosquitoes and Black Flies, de Barjac, H., and D. J. Sutherland, Eds., Rutgers University Press, New Brunswick, NJ, pp. 161-186, 1990. © 2000 by CRC Press LLC 52 INSECT PEST MANAGEMENT: TECHNIQUES FOR ENVIRONMENTAL PROTECTION Molloy, D. P., S. P. Wright, B. Kaplan, J. Gerardi, and P. Peterson. Laboratory evaluation of commercial formulations of Bacillus thuringiensis israelensis against mosquito and blackfly larvae. Journal of Agricultural Entomology. 1, pp. 161-168, 1984. Moseley, B. E. B. Photobiology and Radiobiology of Micrococcus (Deinococcus) radiodu- rans. Photochemical and Photobiological Reviews 7, pp. 223-274, 1983. Mouches, C., M. Magnin, J. B. Berge, M. de Silvestri, V. Beyssat, N. Pasteur, and G. P. Georghiou. Overproduction of detoxifying asterases in organophosphate-resistant Culex mosquitoes and their presence in other insects. Proceedings of National Academic Sci- ence USA. 84, pp. 2113-2116, 1987. Mulla, M. S. Activity, field efficacy, and use of Bacillus thuringiensis israelensis against mosquitoes, in Bacterial Control of Mosquitoes and Black Flies, de Barjac, H. and D. J. Sutherland, Eds., Rutgers University Press, New Brunswick, NJ, pp. 134-160. 1990. Mulla, M. S., B. A. Federici, and H. A. Darwazeh. Larvicidal efficacy of Bacillus thuringiensis ser. H-14 against stagnant water mosquitoes and its effect on non-target organisms. Environmental Entomology 11, pp. 788-795, 1982. Mulla, M. S., J. D. Chaney, and J. Rodcharoen. Control of nuisance aquatic midges (Diptera: Chironomidae) with the microbial larvicide Bacillus thuringiensis var. israelensis in a man-made lake in Southern Calfornia. Bulletin of the Society for Vector Ecology. 15, pp. 176-184, 1990. Mulligan, F. S., III, C. H. Schaefer, and W. H. Wilder. Efficacy and persistence of Bacillus sphaericus and Bacillus thuringiensis H-14 against mosquitoes under laboratory and field conditions. Journal of Economic Entomology 73, pp. 684-688, 1980. Murphy, R. C., and S. E. Stevens, Jr. Cloning and expression of the cryIVD gene of Bacillus thuringiensis subsp. israelensis in the cyanobacterium Agmenellum quadruplicatum PR-6 and its resulting larvicidal activity. Applied and Environmental Microbiology. 58, pp. 1650-1655, 1992. Murthy, P. S. R. Mucous membrane irritancy study of Bacillus sphaericus (1593) and B. thuringiensis (H-14) formulations in rabbit. Biological Memoirs. 23, pp.11-13, 1997. Nambiar, P. T. C., S.-W. Ma, and V. N. Iyer. Limiting an insect infestation of nitrogen-fixing root nodules of the pigeon pea (Cajanus cajan) by engineering the expression of an entomocidal gene in its root nodules. Applied and Environmental Microbiology. 56, pp. 2866-2869, 1990. Nielsen-LeRoux, and J. F. Charles. Binding of Bacillus sphaericus binary toxin to a specific receptor on midgut brush-border membranes from mosquito larvae. European Journal of Biochemistry. 210, pp. 585-590, 1992. Nielsen-LeRoux, C., J. F. Charles, I. Thiery, and G. P. Georghiou. Resistance in a laboratory population of Culex quinquefasciatus (Diptera: Culicidae) to Bacillus sphaericus binary toxin is due to a change in the receptor on midgut brush-border membranes. European Journal of Biochemistry. 228, pp. 206-210, 1995. Nielsen-LeRoux, C., F. Pasquier, J. F. Charles, G. Sinegre, B. Gaven, and N. Pasteur. Resis- tance to Bacillus sphaericus involves different mechanisms in Culex pipiens (Diptera: Culicidae) larvae. Journal of Medical Entomology. 34, pp. 321-327, 1997. Nishimoto, T., H. Yoshisue, K. Ihara, H. Sakai, and T. Komano. Functional analysis of block 5, one of the highly conserved amino acid sequences in the 130-kDa CryIVA protein produced by Bacillus turingiensis subsp. israelensis. FEBS Letters. 348, pp. 249-254,
    • Correction
    • Cite
    • Save
    • Machine Reading By IdeaReader
    288
    References
    51
    Citations
    NaN
    KQI
    []