06.07.2013 Views

Contents - Faperta

Contents - Faperta

Contents - Faperta

SHOW MORE
SHOW LESS

Create successful ePaper yourself

Turn your PDF publications into a flip-book with our unique Google optimized e-Paper software.

Genetic Engineering of Entomopathogenic Microbes for Pest Management 285<br />

Joung, K.B. and Cote, J.C. (2000). A review of the environmental impact of the microbial insecticide<br />

Bacillus thuringiensis. Technical Bulletin No. 29. Montreal, Canada: Horticulture Research and<br />

Development Centre, Quebec University. http://res2.agrca/stjean/crdh.htm.<br />

Kalmakoff, J. and Miles, J.A.R. (1980). Ecological approaches to the use of microbial pathogens in<br />

insect control. Bioscience 30: 344–347.<br />

Kalman, S., Kiehne, K.L., Cooper, N., Reynoso, M.S. and Yamamoto, T. (1995). Enhanced production<br />

of insecticidal proteins in Bacillus thuringiensis strains carrying an additional crystal protein<br />

gene in their chromosomes. Applied Environmental Microbiology 61: 3063–3068.<br />

Keeton, T.P. and Bulla, L.A. Jr. (1997). Ligand specifi city and affi nity of BT-R 1, the Bacillus thuringiensis<br />

Cry1A toxin receptor from Manduca sexta, expressed in mammalian and insect cell cultures.<br />

Applied Environmental Microbiology 63: 3419–3425.<br />

Klein, M.G. and Jackson, T.A. (1992). Bacterial diseases of scarabs. In Jackson, T.A. and Glare, T.R.<br />

(Eds.), Use of Pathogens in Scarab Pest Management. Andover, Maryland, USA: Intercept Ltd.,<br />

43–61.<br />

Klein, M.G. and Kaya, H.K. (1995). Bacillus and Serratia species for scarab control. Memoirs of the<br />

Institute of Oswaldo Cruz 90: 87–95.<br />

Knight, P.J., Crickmore, N. and Ellar, D.J. (1994). The receptor for Bacillus thuringiensis Cry1A(c)<br />

d-endotoxin in the brush border membrane of the lepidopteran Manduca sexta is aminopeptidase-N.<br />

Molecular Microbiology 11: 429–436.<br />

Kopeyan, C., Mansuelle, P., Sampieri, F.T., Bahraoui, E.M., Rochat, H. and Granier, C. (1990). Primary<br />

structure of scorpion anti-insect toxins isolated from the venom of Leiurus quinquestriatus<br />

quinquestriatus. FEBS Letters 261: 423–426.<br />

Kostichka, K., Warren, G.W., Mullins, M., Mullins, A.D., Craig, J.A., Koziel, M.G. and Estruch, J.J.<br />

(1996). Cloning of a cryV-type insecticidal protein gene from Bacillus thuringiensis: The cryVencoded<br />

protein is expressed early in stationary phase. Journal of Bacteriology 178: 2141–2144.<br />

Kronstad, J.W. and Whiteley, H.R. (1984). Inverted repeat sequences fl ank a Bacillus thuringiensis<br />

crystal protein gene. Journal of Bacteriology 160: 95–102.<br />

Kuzina, L.V., Miller, E.D., Ge, B.X. and Miller, T.A. (2002). Transformation of Enterobacter gergoviae<br />

isolated from pink bollworm (Lepidoptera: Gelechiidae) gut with Bacillus thuringiensis toxin.<br />

Current Microbiology 44: 1–4.<br />

Kuzio, J., Jaques, R. and Faulkner, P. (1989). Identifi cation of p74, a gene essential for virulence of<br />

baculovirus occlusion bodies. Virology 173: 759–763.<br />

Lacey, L.A., Frutos, R., Kaya, H.K. and Vail, P. (2001). Insect pathogens as biological control agents.<br />

Do they have a future? Biological Control 21: 230–238.<br />

Lambert, B. and Peferoen, M. (1992). Insecticidal promise of Bacillus thuringiensis. Facts and mysteries<br />

about a successful biopesticide. BioScience 42: 112–122.<br />

Lampel, J.S., Canter, G.L., Diimock, M.B., Kelly, J.L., Anderson, J.J., Uratani, B.B., Foulke, J.S., Jr. and<br />

Turner, J.T. (1994). Integrative cloning, expression, and stability of the cry1A(c) gene from<br />

Bacillus thuringiensis subsp. kurstaki in a recombinant strain of Clavibacter xyli subsp. cynodontis.<br />

Applied Environmental Microbiology 60: 501–508.<br />

Lecadet, M.M. and Dedonder, R. (1966). Les protéases de Pieris brassicae. I. Purifi cation et propriétés.<br />

Bulletin of Society of Chemical Biology 48: 631–660.<br />

Lecadet, M.M. and Dedonder, R. (1967). Enzymatic hydrolysis of the crystals of Bacillus thuringiensis<br />

by the proteases of Pieris brassicae. I. Preparation and fractionation of the lysates. Journal of<br />

Invertebrate Pathology 9: 310–321.<br />

Lecadet, M.M., Chaufaux, J., Ribier, J. and Lereclus, D. (1992). Construction of novel Bacillus thuringiensis<br />

strains with different insecticidal activities by transduction and transformation. Applied<br />

and Environmental Microbiology 58: 840–849.<br />

Lee, M.K., Curtiss, A., Alcantara, E. and Dean, D.H. (1996). Synergistic effect of the Bacillus thuringiensis<br />

toxins CryIAa and CryIAc on the gypsy moth, Lymantria dispar. Applied Environmental<br />

Microbiology 62: 583–586.<br />

Lee, M.K., Milne, R.E., Ge, A.Z. and Dean, D.H. (1992). Location of a Bombyx mori receptor binding<br />

region on a Bacillus thuringiensis d-endotoxin. Journal of Biological Chemistry 267: 3115–3121.

Hooray! Your file is uploaded and ready to be published.

Saved successfully!

Ooh no, something went wrong!