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Coexistent anaphylaxis to Diptera and Hymenoptera.

BACKGROUND: Anaphylaxis to the bite of Diptera and specifically the bite of the Tabanidae family (horsefly) have been sparsely documented. The coexistent hypersensitivity to both the order Diptera and Hymenoptera has not been documented. METHODS: We present a patient who experienced anaphylaxis to both insect species. Venom skin testing and RAST revealed sensitivity to several members of the Hymenoptera order. Prick, intradermal and RAST with whole body extracts of Tabanidae species is also documented in this patient. Twenty patients who are sensitive to Hymenoptera and have been bitten by horseflies but have had no reaction to the horsefly bite were used as controls. RESULTS: An anaphylactic reaction to horsefly bite has been documented in a 56-year-old white male. This patient also demonstrated evidence of anaphylactic reaction to Hymenoptera envenomation. In controls consisting of 20 patients with Hymenoptera sensitivity, there was no clinical history of reaction to horsefly bite despite the presence of positive prick and/or positive intradermal tests and/or positive RAST to mixed Tabanidae species extract. CONCLUSIONS: Skin testing to horsefly by prick and/or intradermal testing using whole body insect extract is not useful in making a diagnosis of Tabanidae hypersensitivity. RAST using Tabanidae species as antigen is similarly useless in making a diagnosis of Tabanidae hypersensitivity. In vivo and in vitro diagnosis of horsefly hypersensitivity may be achieved when the salivary gland antigen of the horsefly becomes available.

Adolescent↗

Visual and olfactory responses of haematophagous Diptera to host stimuli.

Key biotic and environmental constraints on the host-orientated behaviour of haematophagous Diptera are summarized. For each major group of biting Diptera, responses to host stimuli are reviewed, including activation and ranging behaviour, long-range and short-range olfactory responses and visual responses. Limitations to the comparison of results between groups of species, and the practical problems of experimental method and equipment are discussed.

Animals↗

Recombination rate predicts inversion size in Diptera.

Most species of the Drosophila genus and other Diptera are polymorphic for paracentric inversions. A common observation is that successful inversions are of intermediate size. We test here the hypothesis that the selected property is the recombination length of inversions, not their physical length. If so, physical length of successful inversions should be negatively correlated with recombination rate across species. This prediction was tested by a comprehensive statistical analysis of inversion size and recombination map length in 12 Diptera species for which appropriate data are available. We found that (1) there is a wide variation in recombination map length among species; (2) physical length of successful inversions varies greatly among species and is inversely correlated with the species recombination map length; and (3) neither the among-species variation in inversion length nor the correlation are observed in unsuccessful inversions. The clear differences between successful and unsuccessful inversions point to natural selection as the most likely explanation for our results. Presumably the selective advantage of an inversion increases with its length, but so does its detrimental effect on fertility due to double crossovers. Our analysis provides the strongest and most extensive evidence in favor of the notion that the adaptive value of inversions stems from their effect on recombination.

Analysis of Variance↗

Distribution of split 5.8S ribosomal RNA in Diptera.

Although the 5.8S ribosomal RNA (rRNA) of most eucaryotes consists of 155-170 nucleotides, in two dipterous species the 5.8S rRNA consists of two pieces, 123 and 30 nucleotides in length. The distribution of split 5.8S rRNA was studied in other Diptera and the most closely related order Siphonaptera to learn the origin of split 5.8S rRNA. Four species of mosquitoes, Culex tritaeniorhynchus, Culex pipiens molestus, Aedes albopictus, Anopheles sp. (Culicidae) had a single 5.8S rRNA consisting of approximately 154 nucleotides. A flea Ctenocephalides felis (Siphonaptera: Pulicidae) also had a single RNA of approximately 158 nucleotides. A crane fly (Tipulidae). a midge Orthocladius akamusi (Chironomidae), a robber fly (Asilidae), and a house fly Musca domestica (Muscidae), on the other hand, had divided 5.8S rRNA as did a fruit fly Drosophila melanogaster (Drosophilidae) and a dark-winged fungus gnat Sciara coprophila (Sciaridae). Three hypotheses are proposed on the relationship between the evolution of the 5.8S rRNA and the phylogeny of Diptera.

Animals↗

A single isoform of the Na+/K(+)-ATPase alpha-subunit in Diptera: evidence from characterization of the first extracellular domain.

The first extracellular domain of the alpha-subunit of the Na+/K+-ATPase (sodium/potassium pump) is functionally important, affecting sensitivity of the enzyme to cardiac glycosides (e.g. ouabain) and being implicated in the transport of K+. This domain is also variable among mammalian isoforms of the alpha-subunit. Using PCR, we have isolated from seven insect species with contrasting physiologies a DNA fragment containing this region, in order to help determine whether tissue-specific expression might be associated with isoforms encoded by a gene family, as it is in mammals. A single sequence (with one ORF) characteristic of Na+/K+-ATPase was obtained from genomic DNA of each species. Only the fragment from Manduca sexta contained an intron, but at a location different to that found in mammals. For all Diptera so far characterized, the species phylogeny is the same as the alpha-subunit gene phylogeny (based on the sequences of the first extracellular domain and flanking transmembrane domains). The results strongly indicate a single, ouabain-sensitive isoform of the alpha-subunit of Na+/K+-ATPase is present in Diptera.

Amino Acid Sequence↗

Detection of antibodies in blood meals of hematophagous Diptera.

Antibodies are detectable by an agglutination technique in the blood meals of hematophagous Diptera that are fed on laboratory and domestic animals infected with organisms of the Trypanosoma brucei subgroup. It is likely that both the antibody status and the identity of the animal fed on can be determined from the same blood meal from wild Diptera. The technique may be applicable to other infections for which sensitive serological tests are available.

Animals↗

Biology and ecology of higher Diptera from freshwater wetlands.

Although studies of freshwater entomofauna frequently do not include the biodiversity and ecological roles of higher Diptera, cyclorraphous flies are often numerous and species rich in wetlands. Seventeen families are commonly found in freshwater wetlands, with Ephydridae, Chloropidae, Sciomyzidae, Sphaeroceridae, and Scathophagidae being among the most important in terms of population size and species richness. Difficulty with sampling cryptic larval habitats and species identification challenges may account for the exclusion of acalyptrate and other dipterans from wetlands ecology studies. Large populations are facilitated by the high productivity of freshwater wetlands and the high intrinsic rate of increase characteristic of many species. Higher dipterans exist in all freshwater wetland types, are microhabitat selective, and play significant roles in food webs. The varied strategies for food acquisition and patterns of spatial and temporal distribution limit ecological overlap among the higher Diptera.

Animals↗

[The role of insects (Blattodea, Diptera, and Hymenoptera) as possible mechanical vectors of helminths in the domiciliary and peridomiciliary environment].

Helminths can be transmitted to human beings in several ways, but little attention has been given to vector or mechanical transmission of infective forms by insects. The present study surveys the helminth species present in three orders of insects that coexist in proximity with the human environment. A total of 700 insects (54 Blattodea, 275 Diptera, and 371 Hymenoptera) were collected and examined externally and individually. In the Blattodea order, only specimens of Periplaneta americana were collected, and 58.3% were carrying the following helminth forms: Oxyuridae eggs (36.4%), Ascaridae eggs (28.04%), Nematoda larvae (4.8%), Cestoda eggs (3.5%), other Nematoda (0.08%), and Toxocaridae eggs (0.08%). No Diptera and Hymenoptera were found to contain parasitic forms. This study evaluates the importance and role of insects as mechanical vectors of helminth parasites, correlated with social and environmental conditions, and suggests the use of these data for preventive purposes.

Animals↗

Effect of octenol on engorgement by Tabanus nigrovittatus (Diptera: Tabanidae).

Adult female Tabanus nigrovittatus Macquart (Diptera: Tabanidae) were field collected from a salt marsh in Essex County, Massachusetts. The horse flies were transported back to and tested in the laboratory to determine the effects of octenol (1-octen-3-ol) on engorgement. Flies exposed to octenol strips had a significantly higher engorgement response compared with control flies. To our knowledge, this is the first study to demonstrate an important link between an odor stimulus and the feeding response in Tabanidae. Research examining the link between odor attractants and repellents on the engorgement response is lacking or limited in most hematophagous Diptera. Understanding the role odors have on ingestion is essential to knowing how to interrupt feeding behavior of blood-feeding arthropods, especially for important vectors.

Animals↗

PCR-RFLP identification of Diptera (Calliphoridae, Muscidae and Sarcophagidae)--a generally applicable method.

A simple, rapid method using restriction fragment length polymorphisms (RFLPs) within the internal transcribed spacer (ITS) regions of the ribosomal DNA gene repeat allows identification of insects and other organisms. We used the method to identify the morphologically similar Diptera larvae that are important in forensic entomology for estimating the time and location of death. Polymerase chain reaction (PCR) was used to amplify a region from the 18S to the 28S rRNA genes. The ITS1 and ITS2 regions provided variation between species and homogeneity within species, with the exception of Cochliomya macellaria. Combinations of the restriction enzymes DdeI, HinfI and Sau3AI provided diagnostic bands for identification of the ten species from three families of Diptera (Calliphoridae, Muscidae and Sarcophagidae).

Animals↗

[Diptera fauna from the nests of birds on the Volga-Kama State Preserve].

504 nests of 11 species of birds were examined in the Volga-Kama state reserve. 57,430 specimens of Diptera belonging to 19 species and 13 families were collected from the nests. The schemes of the life cycle of Diptera, nest-burrow parasites of birds (Carnus hemapterus Nitzsch, Stenepteryx hirundinis L., Protocalliphora azurea Fallen) are given and some moments of the ecology of nonparasitic species are illustrated.

Animals↗

[Forensic applications of the sequencing of mitochondrial DNA cytochrome oxidase subunit I gene for sarcosaphagous flies (Diptera) in Huhhot and Dunhuang district].

OBJECTIVE: To solve the problems of identification of Sarcosaphagous flies and their larvae, pupas and eggs. METHODS: Sarcosaphagous Flies (Diptera) Samples were collected on the corpses of rabbits in the Huhhot district and a pig in the Dunhuang district. A 278bp region in the cytochrome oxidase subunit I (CO I) gene in mtDNA was analysed by DNA sequencing, A neighbour-joining tree using the Tamura and Nei model of nucleotide substitution was also constructed using the MEGA2.1 package. RESULTS: A 278 base pairs region of the gene for CO I encoding region of mtDNA of above all samples was showed less than 1% sequence divergence within species and about 3% divergence between species. CONCLUSION: It is an effective, easy and accurate method to be used for identification of these Sarcosaphagous Flies (Diptera) to species group by sequencing the 278 base pairs region of the CO I encoding gene of mtDNA.

Animals↗

Preliminary observations of the effect of methamphetamine in decomposing tissues on the development rate of Parasarcophaga ruficornis (Diptera: Sarcophagidae) and implications of this effect on the estimations of postmortem intervals.

Larvae of Parasarcophaga ruficornis (Fabricius) (Diptera: Sarcophagidae) were reared on tissues from rabbits administered different dosages of methamphetamine to study the effects of this drug on development of this species. The rabbits were given 37.5, 71.4, and 142.9 mg of methamphetamine via ear vein infusion. From Hours 30 to 60, larvae feeding on tissues from rabbits receiving 71.4 and 142.9 mg of methamphetamine developed more rapidly than larvae from the control colony and those feeding on tissues from the rabbit receiving 37.5 mg of methamphetamine. The time required for pupariation was significantly greater for colonies fed on tissues from methamphetamine-dosed rabbits than for the control. These differences were sufficient to alter postmortem interval estimates based on larval development by up to 18 h and estimates based on puparial development by up to 48 h. The presence of methamphetamine or amphetamine could not be detected in Diptera larvae in this experiment using radioimmunoassay techniques, as there was a nonspecific reaction, resulting in a false positive.

Amphetamine↗

[The occurrence of Diptera in living quarters].

More than 150 species of Diptera belonging to 46 families were caught in a flat in the outskirts of Berlin between April and October 1986. 2148 specimens were collected. Fannia canicularis was the most frequent species with 726 specimens. Drosophila melanogaster, Culex pipiens, Lucilia sericata, Sarcophaga carnaria, Calliphora vicina, Muscina stabulans and Fannia manicata were other important synanthropic flies, which inclusively Fannia canicularis amounted 55% of the total catching rate. The remaining species of Diptera have only an insignificant medical importance, because of the random occurrence in flats or of their small size. A brief assessment of the sanitary important species is given.

Animals↗

[Mode of formation of the flight muscles in a nematocerous Diptera].

An electron microscope study was conducted on the origin of the dorsal longitudinal muscles of a Nematocerous Diptera (Chironomus). These imaginal muscles arise from three pairs of slender larval muscles that are characterized by the presence of myoblasts located beneath the basal lamina and adhering to the sarcoplasmic membrane. During the last larval instar the myoblasts increase in number, each of the associated muscle fibers loses its contractile material and splits longitudinally into two to form six columns of sarcoplasm. Differentiation of the fibrillar material begins in each of the six muscle rudiments after the adhering myoblasts have become incorporated. There are several possible origins for these myoblasts: they may be embryonic cells that persist in association with the larval muscle fibers; or --as in the case of Cyclorrhaphous Diptera-- they may migrate from elsewhere to invest these fibers.

Animals↗

[The results of a trial in the Socialist Republic of Vietnam of clothing providing mechanical protection against the bites of blood-sucking Diptera].

The tested overalls for protection in hot climate may be recommended only for the protection of people engaged in work involving little movement (fishermen, watchmen, etc.). For wider use of such overalls in hot regions the design should be changed, the alterations are described in the paper. Further trials of the overalls should be carried out with its modified design; this costume provides adequate mechanical protection from the bites of mosquitoes and other blood-sucking Diptera and it will be widely used in the tropics, where blood-sucking Diptera contribute much to infection transmission.

Animals↗

Lack of cross-resistance to Mtx1 from Bacillus sphaericus in B. sphaericus-resistant Culex quinquefasciatus (Diptera: Culicidae).

The toxicities of Mtx1 toxin against dipteran and lepidopteran species have been evaluated in this study. It was shown that Mtx1 has little or no toxicity to the tested lepidopteran species, but has moderate-level toxicity to Aedes albopictus Skuse (Diptera: Culicidae) and high-level toxicity to both susceptible and binary toxin-resistant Culex quinquefasciatus Say (Diptera: Culicidae). The LC(50) values of Mtx1 against a susceptible C. quinquefasciatus colony SLCq and two resistant colonies RLCq1/C3-41 and RLCq2/IAB59 selected in the laboratory with Bacillus sphaericus (Mayer & Neide) strains C3-41 and IAB59 respectively were 0.508, 0.854 and 0.675 mg L(-1) respectively. The data indicate that Mtx1 has a different mode of action from the binary toxin, and that it could be an alternative toxin to delay or overcome resistance development to binary toxin in C. quinquefasciatus.

Animals↗

Juvenile hormone regulation of the E75 nuclear receptor is conserved in Diptera and Lepidoptera.

Despite longstanding efforts, the juvenile hormone (JH) signaling pathway remains unknown. In Drosophila melanogaster (Diptera), JH activates expression of the E75A nuclear receptor. The E75 gene encodes a family of related proteins. A homologue of Drosophila E75 was previously identified and two isoforms, mE75A and mE75B, were reported in Manduca sexta (Lepidoptera). Here, we describe the identification of two additional isoforms, mE75C and mE75D, and the hormonal regulation of mE75 gene expression in Manduca CH1 cultured cells. mE75A and mE75B isoforms are specifically induced by ecdysone in CH1 cells. One isoform, mE75C, shows constitutive expression. The mE75D isoform exhibits dual hormonal regulation; it can be activated by either ecdysone or the JH analog, methoprene. E75-encoded proteins represent the first example of transcription factors directly induced by JH. E75 activation by JH, in both Diptera and Lepidoptera, suggests a conserved function in the JH signaling pathway.

Amino Acid Sequence↗