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Part III - Biological Control of Invertebrate and Vertebrate Pests

Published online by Cambridge University Press:  06 July 2018

Ann E. Hajek
Affiliation:
Cornell University, New York
Jørgen Eilenberg
Affiliation:
University of Copenhagen
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Summary

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Chapter
Information
Natural Enemies
An Introduction to Biological Control
, pp. 107 - 242
Publisher: Cambridge University Press
Print publication year: 2018

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References

Further Reading

Barbosa, P. & Castellanos, I. (eds.) (2005). Ecology of Predator-Prey Interactions. Oxford: Oxford University Press.Google Scholar
Brodeur, J. & Boivin, G. (eds.) (2006). Trophic Guild Interactions in Biological Control. Dordrecht, Netherlands: Springer.Google Scholar
Denno, R. F. & Lewis, D. (2009). Predator–prey interactions. In The Princeton Guide to Ecology, ed. Levin, S. A., pp. 202212. Princeton, NJ: Princeton University Press.Google Scholar
Krebs, C. J. (2009). Ecology: The Experimental Analysis of Distribution and Abundance, 6th edn. San Francisco, CA: Benjamin Cummings.Google Scholar
Murdoch, W. (2009). Biological control: Theory and practice. In The Princeton Guide to Ecology, ed. Levin, S. A., pp. 683688. Princeton, NJ: Princeton University Press.Google Scholar
Price, P. W., Denno, R. F., Eubanks, M. D., Finke, D. L., & Kaplan, I. (2011). Insect Ecology: Behavior, Populations and Communities. Cambridge: Cambridge University Press.Google Scholar
Schmitz, O. J. (2010). Resolving Ecosystem Complexity. Princeton, NJ: Princeton University Press.Google Scholar
Shapiro-Ilan, D. I., Bruck, D. J., & Lacey, L. A. (2012). Principles of epizootiology and microbial control. In Insect Pathology, ed. Vega, F. E. & Kaya, H. K., 2nd edn., pp. 2972. Amsterdam: Elsevier.Google Scholar

Further Reading

Brandmayr, P., Lövei, G. L., Zetto Brandmayr, T., Casale, A., & Vigna Taglianti, A. (eds.) (2000). Natural History and Applied Ecology of Carabid Beetles. Sofia, Bulgaria: Pensoft.Google Scholar
Carrillo, D., de Moraes, G. J., & Peña, J. E. (eds.) (2015). Prospects for Biological Control of Harmful Organisms by Mites. Dordrecht, Netherlands: Springer.Google Scholar
Dixon, A. F. G. (2000). Insect Predator–Prey Dynamics: Ladybird Beetles and Biological Control. Cambridge: Cambridge University Press.Google Scholar
Holland, J. M. (ed.) (2002). The Agroecology of Carabid Beetles. Andover, UK: Intercept.Google Scholar
Lundgren, J. G. (2009). Relationships of Natural Enemies and Non-prey Foods. Dordrecht, Netherlands: Springer.Google Scholar
Majerus, M. E. N. (2016). A Natural History of Ladybird Beetles (ed. Roy, H. E. & Brown, P. M. J.). Cambridge: Cambridge University Press.Google Scholar
McEwen, P., New, T. R., & Whittington, A. E. (eds.) (2001). Lacewings in the Crop Environment. Cambridge: Cambridge University Press.Google Scholar
Schmitz, O. J. (2010). Resolving Ecosystem Complexity. Princeton, NJ: Princeton University Press.Google Scholar
Wäckers, F. L., Van Rijn, P. C. J., & Bruin, J. (eds.) (2005). Plant-Provided Food for Carnivorous Insects: A Protective Mutualism and its Applications. Cambridge: Cambridge University Press.Google Scholar
Waldbauer, G. (2012). How Not to be Eaten: The Insects Fight Back. Berkeley: University of California Press.Google Scholar

Further Reading

Cônsoli, F. L., Parra, J. R. P., & Zucchi, R. A. (eds.) (2010). Egg Parasitoids in Agroecosystems with Emphasis on Trichogramma. Dordrecht, Netherlands: Springer.Google Scholar
Hochberg, M. E. & Ives, A. R. (eds.) (2000). Parasitoid Population Biology. Princeton, NJ: Princeton University Press.Google Scholar
Quicke, D. L. J. (1997). Parasitic Wasps. London: Chapman & Hall.Google Scholar
Quicke, D. L. J. (2015). The Braconid and Ichneumonid Parasitoid Wasps: Biology, Systematics, Evolution and Ecology. Chichester, UK: Wiley Blackwell.Google Scholar
Wajnberg, E., Bernstein, C., & Van Alphen, J. (eds.) (2008). Behavioral Ecology of Insect Parasitoids: From Theoretical Approaches to Field Applications. Malden, MA: Blackwell Publishing.Google Scholar
Wajnberg, E. & Colazza, S. (eds.) (2013). Chemical Ecology of Insect Parasitoids. Oxford: Wiley Blackwell.Google Scholar

Further Reading

Campbell, J. F. & Lewis, E. E. (2002). Entomopathogenic nematode host-search strategies. In The Behavioural Ecology of Parasites, ed. Lewis, E. E., Campbell, J. F., & Sukhdeo, M. V. K., pp. 1338. Wallingford, UK: CABI Publishing.Google Scholar
Campos-Herrera, R. (ed.) (2015). Nematode Pathogenesis of Insects and Other Pests: Ecology and Applied Technologies for Sustainable Plant and Crop Protection. Dordrecht, Netherlands: Springer.Google Scholar
Frank, J. H. (2009). Steinernema scapterisci as a biological control agent of Scapteriscus mole crickets. In Use of Microbes for Control and Eradication of Invasive Arthropods, ed. Hajek, A. E., Glare, T. R., & O'Callaghan, M., pp. 115132. Dordrecht, Netherlands: Springer.Google Scholar
Gaugler, R. (ed.) (2002). Entomopathogenic Nematology. Wallingford, UK: CABI PublishingGoogle Scholar
Grewal, P. S., Ehlers, R.-U., & Shapiro-Ilan, D. I. (2005). Nematodes as Biocontrol Agents. Wallingford, UK: CABI Publishing.Google Scholar
Lacey, L. A. & Georgis, R. (2012). Entomopathogenic nematodes for control of insect pests above and below ground with comments on commercial production. Journal of Nematology, 44, 218225.Google Scholar
Lewis, E. E. & Clarke, D. J. (2012). Nematode parasites and entomopathogens. In Insect Pathology, ed. Vega, F. E. & Kaya, H. K., 2nd edn, pp. 395443. Amsterdam: Elsevier.Google Scholar
Shapiro-Ilan, D. I., Hazir, S., & Glazer, I. (2017). Basic and applied research: Entomopathogenic nematodes. In Microbial Agents for Control of Insect Pests: From Discovery to Commercial Development and Use, ed. Lacey, L. A., pp. 91105. Amsterdam: Academic Press.Google Scholar
Williams, D. W., Zylstra, K. E., & Mastro, V. C. (2012). Ecological considerations in using Deladenus (= Beddingia) siricidicola for the biological control of Sirex noctilio in North America. In The Sirex Woodwasp and its Fungal Symbiont: Research and Management of a Worldwide Invasive Pest, ed. Slippers, B., de Groot, P., & Wingfield, M. J., pp. 135148. Dordrecht, Netherlands: Springer.Google Scholar

Further Reading*

Charles, J.-F., Delécluse, A., & Nielsen-LeRoux, C. (eds.) (2000). Entomopathogenic Bacteria: From Laboratory to Field Application. Dordrecht, Netherlands: Kluwer Academic Publishers.Google Scholar
Fiuza, L. M., Polanczyk, R. A., & Crickmore, N. (eds.) (2017). Bacillus thuringiensis and Lysinibacillus sphaericus. Dordrecht, Netherlands: Springer.Google Scholar
Glare, T. R. & O'Callaghan, M. (2000). Bacillus thuringiensis: Biology, Ecology and Safety. Chichester, UK: John Wiley & Sons.Google Scholar
Jurat-Fuentes, J. L. & Jackson, T. A. (2012). Bacterial entomopathogens. In Insect Pathology, ed. Vega, F. E. & Kaya, H. K., pp. 265349. San Diego, CA: Academic Press.Google Scholar
Lacey, L. A. (ed.) (2017). Microbial Control of Insect and Mite Pests: From Theory to Practice. Amsterdam: Academic Press/Elsevier. (numerous chapters)Google Scholar
Lacey, L. A., Grzywacz, D., Shapiro-Ilan, D. I., Frutos, R., Brownbridge, M., & Goettel, M. S. (2015). Insect pathogens as biological control agents: Back to the future. Journal of Invertebrate Pathology, 132, 141.Google Scholar
Vega, F. E. & Kaya, H. K. (eds.) (2012). Insect Pathology, 2nd edn. Amsterdam: Academic Press/Elsevier.Google Scholar

Further Reading

Cooke, B. D. (2014). Australia's War Against Rabbits. Melbourne: CSIRO Publishing.Google Scholar
Di Giallonardo, F. & Holmes, E. C. (2015). Exploring host–pathogen interactions through biological control. PLOS Pathogens, 11(6), e1004865.Google Scholar
Eberle, K. E., Jehle, J. A., & Huber, J. (2012). Microbial control of crop pests using insect viruses. In Integrated Pest Management, ed. Abrol, C. P. & Shankar, U., pp. 281298. Wallingford, UK: CABI Publishing.Google Scholar
Fenner, F. & Fantini, B. (1999). Biological Control of Vertebrate Pests: The History of Myxomatosis – An Experiment in Evolution. Wallingford, UK: CABI Publishing.Google Scholar
Harrison, R. & Hoover, K. (2012). Baculoviruses and other occluded insect viruses. In Insect Pathology, ed. Vega, F. E. & Kaya, H. K., pp. 73131. San Diego, CA: Academic Press.Google Scholar
Hoddle, M. S. (1999). Biological control of vertebrate pests. In Handbook of Biological Control: Principles and Applications of Biological Control, ed. Bellows, T. S. & Fisher, T. W., pp. 955975. San Diego, CA: Academic Press.Google Scholar
Lacey, L. A (ed.) (2017). Microbial Control of Insect and Mite Pests: From Theory to Practice. Amsterdam: Academic Press/Elsevier. (numerous chapters)Google Scholar
Lacey, L. A., Grzywacz, D., Shapiro-Ilan, D. I., Frutos, R., Brownbridge, M., & Goettel, M. S. (2015). Insect pathogens as biological control agents: Back to the future. Journal of Invertebrate Pathology, 132, 141.Google Scholar

Further Reading

Butt, T. M., Jackson, C. W., & Magan, N. (eds.) (2001). Fungi as Biocontrol Agents: Progress, Problems and Potential. Wallingford, UK: CABI Publishers.Google Scholar
Cory, J. S. & Ericsson, J. D. (2010). Fungal entomopathogens in a tri-trophic context. BioControl, 55, 7588.Google Scholar
Ekesi, S. & Maniania, J. K. (eds.) (2007). Use of Entomopathogenic Fungi in Biological Pest Management. Trivandrum, India: Research Signpost.Google Scholar
Faria, M. R. & Wraight, S. P. (2007). Mycoinsecticides and mycoacaricides: A comprehensive list of worldwide coverage and international classification of formulation types. Biological Control, 43, 237256.Google Scholar
Hajek, A. E., Wraight, S. P., & Vandenberg, J. D. (2001). Control of arthropods using pathogenic fungi. In Bio-Exploitation of Fungi, ed. Pointing, S. B. & Hyde, K. D., pp. 309347. Hong Kong: Fungal Diversity Press.Google Scholar
Roy, H. E., Vega, F. E., Chandler, D., Goettel, M. S., Pell, J. K., & Wajnberg, E. (eds.) (2010). The Ecology of Fungal Entomopathogens. Dordrecht, Netherlands: Springer.Google Scholar
Scholte, E.-J., Knols, B. G. J., Samson, R. A., & Takken, W. (2004). Entomopathogenic fungi for mosquito control: A review. Journal of Insect Science, 4, 124.Google Scholar
Solter, L. F., Becnel, J. J., & Oi, D. H. (2012). Microsporidian entomopathogens. In Insect Pathology, ed. Vega, F. E. & Kaya, H. K., 2nd edn., pp. 221264. Amsterdam: Elsevier.Google Scholar
Vega, F. E., Meyling, N. V., Luangsa-ard, J. J., & Blackwell, M. (2012). Fungal entomopathogens. In Insect Pathology, ed. Vega, F. E. & Kaya, H. K., 2nd edn., pp. 171220. Amsterdam: Elsevier.Google Scholar
Weiss, L. M. & Becnel, J. J. (2014). Microsporidia: Pathogens of Opportunity. Ames, IA: Wiley-Blackwell. (selected chapters) Google Scholar

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