By Eric Wajnberg, Carlos Bernstein, Jacques van Alphen
Written by means of a group of best foreign experts, Behavioral Ecology of Insect Parasitoids examines the optimum behaviors that parasitoids show that allows you to maximize long-term offspring construction. it really is a vital reference for examine scientists and scholars learning those attention-grabbing bugs or for a person thinking about utilizing parasitoids in organic keep watch over courses.
- Reviews topical concerns, together with innovative examine on parasitoid choice making and the consequences for organic control
- Explores purposes in different fields, offers info at the most modern study tools, and comprises beneficial case experiences and statistical tools
- Creates a deeper knowing of the hyperlink among behavioural innovations and host mortality, leading to extra effective selective pest administration courses
“Overall, this can be a attention-grabbing quantity that gives an important contribution to the literature on parasitoid bugs. It is going far towards delivering insights into a variety of facets of parasitoid habit and should stimulate a range of destiny tasks, anything that are meant to be the objective of such a textual content. I hugely suggest Wajnberg et al. for all of these engaged on the biology or evolution of parasitoids.” Palaios 2009Content:
Chapter 1 optimum Foraging habit and effective organic keep an eye on tools (pages 1–30): Nick J. turbines and Eric Wajnberg
Chapter 2 Parasitoid health: From an easy notion to an complicated idea (pages 31–50): Minus van Baalen and Lia Hemerik
Chapter three Parasitoid Foraging and Oviposition habit within the box (pages 52–70): George E. Heimpel and Jerome Casas
Chapter four habit impacts no matter if Intra?Guild Predation Disrupts Herbivore Suppression by way of Parasitoids (pages 71–91): William E. Snyder and Anthony R. Ives
Chapter five Chemical and Behavioral Ecology in Insect Parasitoids: the way to Behave Optimally in a posh Odorous surroundings (pages 92–112): Monika Hilker and Jeremy McNeil
Chapter 6 Parasitoid and Host dietary body structure in Behavioral Ecology (pages 113–128): Michael R. Strand and Jerome Casas
Chapter 7 Food?Searching in Parasitoids: The difficulty of selecting among ‘Immediate’ or destiny health earnings (pages 129–171): Carlos Bernstein and Mark Jervis
Chapter eight info Acquisition, details Processing, and Patch Time Allocation in Insect Parasitoids (pages 172–192): Jacques J.M. van Alphen and Carlos Bernstein
Chapter nine pageant and uneven Wars of Attrition in Insect Parasitoids (pages 193–211): Patsy Haccou and Jacques J.M. van Alphen
Chapter 10 probability review and Host Exploitation concepts in Insect Parasitoids (pages 211–227): Luc?Alain Giraldeau and man Boivin
Chapter eleven Multitrophic Interactions and Parasitoid Behavioral Ecology (pages 229–252): Louise E.M. Vet and H. Charles J. Godfray
Chapter 12 Parasitoid intercourse Ratios and organic keep watch over (pages 253–291): Paul J. Ode and Ian C.W. Hardy
Chapter thirteen Linking Foraging and Dynamics (pages 292–314): Michael B. Bonsall and Carlos Bernstein
Chapter 14 Linking Behavioral Ecology to the learn of Host Resistance and Parasitoid Counter?Resistance (pages 315–334): Alex R. Kraaijeveld and H. Charles J. Godfray
Chapter 15 State?Dependent difficulties for Parasitoids: Case reviews and ideas (pages 335–356): Bernard Roitberg and Pierre Bernhard
Chapter sixteen A Bayesian method of optimum Foraging in Parasitoids (pages 357–383): Jean?Sebastien Pierre and Richard F. Green
Chapter 17 discovering optimum Behaviors with Genetic Algorithms (pages 384–401): Thomas S. Hoffmeister and Eric Wajnberg
Chapter 18 Statistical instruments for examining info on Behavioral Ecology of Insect Parasitoids (pages 402–429): Eric Wajnberg and Patsy Haccou
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Additional resources for Behavioral Ecology of Insect Parasitoids: From Theoretical Approaches to Field Applications
M. (1998) Host size-dependent sex allocation behaviour in a parasitoid: implications for Catolaccus grandis (Hymenoptera: Pteromalidae) mass rearing programmes. Bulletin of Entomological Research 88: 37– 45. G. P. (2004) Biocontrol in Protected Culture. Ball Publishing, Batavia. S. (2004) Restoring balance: using exotic species to control invasive exotic species. Conservation Biology 18: 38 – 49. G. P. (1998) Biology and use of the whitefly parasitoid Encarsia formosa. Annual Review of Entomology 43: 645–69.
In other words, parasitoids that are more pro-ovigenic (with a high ovigeny index sensu Jervis et al. 2001) are less likely to benefit from increased longevity, whereas those that are more synovigenic (low ovigeny index) could provide enhanced pest suppression in the presence of a nectar subsidy as time spent searching for food should not limit the daily number of hosts attacked for a time-limited parasitoid (see also Chapter 7 by Bernstein & Jervis for further details). 2 Optimal foraging and conservation biological control Infochemicals originating from a damaged host plant (synomones) or from the host itself (kairomones) are well-known signals that aid parasitoids in the location of suitable hosts.
1988) Spatial density dependence in parasitoids. Annual Review of Entomology 33: 441– 66. G. A. (2004) Patch time allocation by the parasitoid Diadegma semiclausum (Hymenoptera: Ichneumonidae). III. Effects of kairomone sources and previous parasitism. Journal of Insect Behavior 17: 761– 76. S. and Bailey, P. (2004) Role of Diadegma semiclausum (Hymenoptera: Ichneumonidae) in controlling Plutella xylostella (Lepidoptera: Plutellidae): cage exclusion experiments and direct observation. Biocontrol Science & Technology 14: 571– 86.