OBSERVATIONS ON INTRASPECIFIC LARVAL COMPETITION IN THREE HYMENOPTEROUS PARASITES OF FLY PUPARIA

1971 ◽  
Vol 103 (1) ◽  
pp. 137-142 ◽  
Author(s):  
H. G. Wylie

AbstractThough they may hatch on any part of a housefly (Musca domestica L.) pupa, most larvae of Nasonia vitripennis (Walk.) and Muscidifurax raptor G. & S. (Hymenoptera: Pteromalidae) move to the host’s ventral abdominal area, and those of Spalangia cameroni Perk. (Hymenoptera: Pteromalidae) to the dorsal side of the abdomen, before feeding extensively. As many as 25 larvae of N. vitripennis can mature on a medium-sized housefly pupa; if more are present initially, those that hatch last usually die from starvation after the host has been consumed. In contrast, usually only one larva of M. raptor or S. cameroni matures on a host; this is often the larva that hatches first, because it attacks all parasite eggs that it encounters while moving over the fly pupa soon after hatching. Larval crowding in M. raptor or S. cameroni, unlike that in N. vitripennis, does not affect the sex ratio of the survivors.

1966 ◽  
Vol 98 (6) ◽  
pp. 645-653 ◽  
Author(s):  
H. G. Wylie

AbstractFemale Nasonia vitripennis (Walk.) parasitizing housefly (Musca domestica L.) pupae produce a smaller percentage of female progeny at high parasite:host ratios than at lower ones because they fertilize a smaller percentage of their eggs (in this species unfertilized eggs produce male progeny), and because more female than male larvae die on superparasitized hosts. The adult females fertilize relatively fewer eggs at high than at low parasite:host ratios for two reasons. First, they encounter relatively more previously attacked hosts, on which they lay a smaller percentage of fertilized eggs than on previously unattacked ones; second, they more often encounter other female parasites while ovipositing, and this interference reduces the percentage of fertilized eggs they lay.


1967 ◽  
Vol 99 (7) ◽  
pp. 742-748 ◽  
Author(s):  
H. G. Wylie

AbstractFemale Nasonia vitripennis (Walk.) discover large housefly (Musca domestica L.) puparia more easily than small ones, and select for drilling a larger percentage of the large ones that they discover. If exposed only to small hosts instead of large ones, the parasites attack more of them in a given time, laying fewer eggs on each. This probably results because changes in parasitized hosts, leading to rejection by the females, occur sooner in small than in large fly pupae. Survival of immature N. vitripennis and of another pteromalid, Muscidifurax raptor G. & S., is greater on large hosts than on small ones. Sex ratio of both parasite species is unaffected by host size.


1965 ◽  
Vol 97 (3) ◽  
pp. 326-331 ◽  
Author(s):  
H. G. Wylie

AbstractSuperparasitism created a food shortage and thereby reduced survival and size of adult Nasonia vitripennis (Walk.) (Hymenoptera: Pteromalidae) reared on pupae of the house fly, Musca domestica L. Superparasitism also reduced the percentage of females in the adult progeny but had no effect on rate of development, ability to emerge, or incidence of diapause in N. vitripennis.


1972 ◽  
Vol 104 (2) ◽  
pp. 209-214 ◽  
Author(s):  
H. G. Wylie

AbstractFemales of Spalangia cameroni Perk, use the ovipositor to differentiate between unparasitized and parasitized housefly (Musca domestica L.) pupae; and prefer to lay on unparasitized hosts instead of those attacked by S. cameroni, Nasonia vitripennis (Walk.), or Muscidifurax zaraptor K. & L. (Hymenoptera: Pteromalidae). The intensities of oviposition restraint on the three kinds of attacked hosts are similar. Changes in parasitized pupae to which the female parasites react probably involve "venoms" injected by each species during oviposition.


1973 ◽  
Vol 105 (5) ◽  
pp. 709-718 ◽  
Author(s):  
H. G. Wylie

AbstractFemales of Nasonia vitripennis (Walk.) lay a smaller percentage of fertilized (i.e. female) eggs on house fly, Musca domestica L., pupae previously parasitized by their own species, by Muscidifurax zaraptor K. & L., or by Spalangia cameroni Perk. (Hymenoptera: Pteromalidae) than on unparasitized hosts. They respond to changes in the fly pupae associated with death, and in the case of house flies attacked by N. vitripennis, to "venoms" injected at that time or to changes unrelated to death. By not fertilizing eggs that they lay on attacked hosts, the females also conserve sperm, for immature N. vitripennis on previously-attacked fly pupae are usually killed by parasite larvae already present.


1966 ◽  
Vol 98 (11) ◽  
pp. 1226-1231 ◽  
Author(s):  
Peter C. Chabora ◽  
David Pimentel

AbstractAn investigation was made of the influence of age of the host (Musca domestica Linn.) in the pupal stage on the oviposition behavior and development of the pteromalid parasite Nasonia vitripennis (Walk.). Five age groups of hosts were employed in 10 pair combinations with an excess of hosts available for selection. Except for the 1-day-old hosts, more of the younger hosts of the combinations produced parasite progeny while the older hosts had a high percentage yielding neither fly nor parasite. Parasite production per pupa was 6.25 on the youngest hosts, with the number decreasing to 4.85 per host at 5 days. Hosts 2, 3, and 4 days old combined with 1-day-old hosts had higher rates of parasitism than when combined with hosts of other ages. The ranking for successful parasitization of hosts, by age of pupae, was 2, 3, 1, 4, and 5 days old.


Genetics ◽  
1990 ◽  
Vol 124 (2) ◽  
pp. 385-396 ◽  
Author(s):  
S H Orzack

Abstract Correlation and regression analyses indicate that isofemale strains extracted from a population of the parasitic wasp, Nasonia vitripennis, differ in the fit of their second sex ratios (those produced in previously parasitized hosts) to the predictions of the theory of optimal facultative sex ratio adjustment. Under the theory's simple assumptions about population structure, there is significant heterogeneity of fitnesses among the isofemale strains. The reasons underlying these types of heterogeneity must be understood before we can make statements about the nature of sex ratio evolution in this species. These results suggest that comparative analyses are essential for testing the qualitative predictions of optimality models.


2003 ◽  
Vol 37 (6) ◽  
pp. 722-728 ◽  
Author(s):  
Valeria Alejandra Labud ◽  
Liliana Graciela Semenas ◽  
Francisca Laos

OBJECTIVE: Odorous compounds produced at the biosolids composting plant in Bariloche (NW Patagonia) attract a variety of insects, mainly belonging to the order Diptera. In order to characterize these flies, collected specimens were taxonomically identified, their community characteristics were described and their sanitary and synanthropic importance and autochthonous or introduced character were determined. METHODS: Sampling was performed from October 1999 until March 2000. Adults were collected using an entomological net, and larvae and puparia were obtained from the composting material and incubated to obtain adults. Richness, abundance and sex ratio were calculated. RESULTS: A total of 9 taxa of Diptera were identified: Sarconesia chlorogaster, Phaenicia sericata, Calliphora vicina, Cochliomya macellaria, Ophyra sp, Muscina stabulans, Musca domestica, Sarcophaga sp and Fannia sp. Specimens of Anthomyiidae, Acaliptratae and one larva of Eristalis tenax were also found. Ophyra sp. was the most abundant taxa. All the captured Diptera belonged to introduced taxa. Most of them are considered to be eusynanthropic and/or hemisynanthropic and have sanitary importance as they may cause myiasis and pseudomyiasis. The high number of females registered and the finding of immature stages indicated that flies can develop their complete life cycle on biosolid composting windrows. CONCLUSIONS: The characterization of flies obtained in this study may be useful for defining locations of urban or semi-urban composting facilities. It also highlights the importance of sanitary precautions at such plants.


2007 ◽  
Vol 16 (4) ◽  
pp. 235-237 ◽  
Author(s):  
Carlos H. Marchiori ◽  
Alexandre S Leles ◽  
Selma A. De Carvalho ◽  
Renata F. Rodrigues

Espécies de parasitóides associados com moscas sinantrópicas foram coletadas com auxílio de iscas de fígado bovino no matadouro Alvorada em Itumbiara, Estado de Goiás, de março a dezembro de 2005. As pupas foram removidas da areia, após usar iscas de fígado como substrato para atrair as moscas. Elas foram individualizadas em cápsulas de gelatina até a emergência dos adultos de moscas ou de seus parasitóides. A prevalência total de parasitismo foi 15,3%. A freqüência absoluta, porcentagem e espécies de parasitóides coletados foram: 205 exemplares (2,3%) de Aphaereta sp., 173 (80,0%) de Brachymeria podagrica, 578 (15,7%) Nasonia vitripennis, um (0,5%) de Pachycrepoideus vindemmiae, dois (0,9%) de Spalangia sp. e um (0,5%) de Trybliographa sp. A porcentagem de parasitismo apresentada pelos parasitóides de Aphaereta sp., B. podagrica, N. vitripennis, P. vindemmiae, Spalangia sp., e Trybliographa sp. foi de 0,4%, 12,3%, 2,4%, 0,1%, 0,1% e 0,1%, respectivamente. As espécies de dípteros parasitados foram: Chrysomya albiceps, C. megacephala, Musca domestica, Oxysarcodexia thornax, Peckia chrysostoma e Sarcodexia lambens.


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