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Contents - Faperta

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Molecular Markers for Diagnosis of Insect Pests and Their Natural Enemies 487<br />

Carpenter, J.M. (2003). On molecular phylogeny of Vespidae (Hymenoptera) and the evolution of<br />

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Caterino, M.S., Cho, S. and Sperling, F.A. (2000). The current state of insect molecular systematics: A<br />

thriving Tower of Babel. Annual Review of Entomology 45: 1–54.<br />

Chang, S.C., Hu, N.T., Hsin, C.V. and Sun, C.N. (2001). Characterization of differences between two<br />

Trichogramma wasps by molecular markers. Biological Control 21: 75–78.<br />

Chen, Y., Giles, K.L., Payton, M.E. and Greenstone, M.H. (2000). Identifying key cereal aphid predators<br />

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Cuthbertson, A.G.S., Fleming, C.C. and Murchie, A.K. (2003). Detection of Rhopalosiphum insertum<br />

(Apple grass aphid) predation by the predatory mite, Anystis baccarum using molecular gut<br />

analysis. Agricultural and Forest Entomology 5: 219–225.<br />

Daza-Bustamante, P., Fuentes-Contreras, E., Rodriguez, L.C., Figueroa, C.C. and Niemeye, H.M.<br />

(2002). Behavioral differences between Aphidius ervi populations from two tritrophic systems<br />

are due to phenotypic plasticity. Entomologia Experimentalis et Applicata 104: 321–328.<br />

De La Rua, P., Galian, J., Serrano, J. and Moritz, R.F.A. (2001). Molecular characterization and population<br />

structure of the honeybees from the B’alearic Islands (Spain). Apidologie 32: 417–427.<br />

De La Rua, P., Galian, J., Serrano, J. and Moritz, R.F.A. (2003). Genetic structure of Balearic honeybee<br />

populations based on microsatellite polymorphism. Genetics, Selection, Evolution 35: 339–350.<br />

de Leon, J.H. and Jones, W.A. (2005). Genetic differentiation among geographic populations of<br />

Gonatocerus ashmeadi, the predominant egg parasitoid of glassy sharp-shooter, Homalodisca<br />

coagualata. Journal of Insect Science 5: 1–9.<br />

Despres, L., Pettex, E., Plaisance, V. and Pompanon, F. (2002). Speciation in the globefl ower fl y<br />

Chiastocheta spp. (Diptera: Anthomyiidae) in relation to host plant species, biogeography, and<br />

morphology. Molecular Phylogenetics and Evolution 22: 258–268.<br />

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(Hymenoptera: Braconidae): Combined analysis of 16S and 28S rDNA genes and morphological<br />

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Hymenoptera: Apocrita: Evolutionary transitions among parasitic wasps. Biological Journal of<br />

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Erlandson, M., Braun, L., Baldwin, D., Soroka, J., Ashfaq, M. and Hegedus, D. (2003). Molecular<br />

markers for Peristenus spp. (Hymenoptera: Braconidae), parasitoids associated with Lygus spp.<br />

(Hemiptera: Miridae). Canadian Entomologist 135: 71–85.<br />

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425–430.<br />

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Research 96: 1–13.<br />

Grozinger, C.M., Sharabash, N.M., Whitfi eld, C.W. and Robinson, G.E. (2003). Pheromone-mediated<br />

gene expression in the honey bee brain. Proceedings National Academy of Sciences USA 100:<br />

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Hagler, J.R. and Naranjo, S.E. (1997). Measuring the sensitivity of an indirect predator gut content by<br />

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Halitschke, R., Gase, K., Hui, D., Schmidt, D.D. and Baldwin, I.T. (2003). Molecular interactions<br />

between the specialist herbivore Manduca sexta (Lepidoptera, Sphingidae) and its natural host<br />

Nicotiana attenuata. VI. Microarray analysis reveals that most herbivore-specifi c transcriptional<br />

changes are mediated by fatty acid-amino acid conjugates. Plant Physiology 131: 1894–1902.

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