188 resultados para pasntrongylus megistus


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É referido o encontro de barbeiros (Panstrongylus megistus) adultos em residências do Distrito Federal, nos bairros de Santa Teresa (Rua Almirante Alexandrino) e de Botafogo (Travessa João Afonso). Um exemplar capturado em Santa Teresa estava infectado por flagelados, critidias e tripanosomas metacíclicos, fato pela primeira vez assinalado na Capital da República. Dejeções no inseto infectado foram inoculadas em camondongos brancos, determinando apenas infecções sanguíneas inaparentes, reveladas pelo xenodiagnóstico. Entretanto, no exsudato peritoneal dos animais foram encontrados a fresco tripanosomas com caracters de Schizotrypanum. Os transmissores da doença de chagas até agora referidos no Distrito Federal são: Panstrongylus megistus, Panstrongylus geniculatus, Triatoma vitticeps, Triatoma oswaldoi e Triatoma rubrofasciata.

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Baseado na análise de um total de 138905 T. infestans e 8921 P. megistus capturados no município de Bambuí, durante um período de varios anos, foi feito um estudo das variações das percentagens das formas evolutivas de cada espécie nos diferentes meses. A apresentação dos dados colhidos foi feita de diversas maneiras, tendo sido objeto especial da discussão do presente trabalho as capturas realizadas nas zonas rurais do municipio. Verificou-se que no caso do T. infestans a predominância das larvas ocorreu em novembro, a das ninfas em fevereiro-abril, a dos adultos abril-julho, e no caso do P. megistus a ocorrência maxima de larvas ninfas e adultos, observou-se respectivamente em março, julho e novembro. Enquanto que o predomínio das formas adultas de T. infestans coincide com a estação seca e fria e a das larvas com a estação quente e úmida, acontece exatamente o oposto com o P. megistus. A maior ocorrência dos casos agudos de doença de Chagas se dá no verão. As curvas correspondentes às percentagens de formas jovens (ninfas e larvas) e adultos do P. magistus oferecem um aspecto notavelmente constante pela sua intersecção em setembro, quando passam a predominar os insetos adultos sôbre os jovens; no caso do T. infestans essa intersecção não tem lugar, devido provavelmente ao aparecimento de formas jovens durante todo o ano, embora haja períodos em que elas aparecem com maior freqüência. A realização de estudos semelhantes, em diferentes regiões permitirá estabelecer a época em que de preferência devem ser feitos os expurgos, que serão, aparentemente, nas ocasiões em que começam a aparecer as larvas.

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Após trabalhos semelhantes, realizados em 1955 e correspondente ao período de 1944 a 1955, foram analisadas as variações mensais da incidência das formas evolutivas do T. infestans e do P. megistus em Bambuí, M.G. São analisados 22.581 exemplares de T. infestans e 2.694 de P. megistus, capturados pelo Pôsto do I.O.C na natureza. De modo geral as variações mensais das diferentes formas evolutivas, para ambas as espécies, são as mesmas encontradas por Dias, na publicação anterior. A pequena percentagem de associação das duas espécies, nos habitadouros naturais, faz pensar na hipótese de um antagonismo biológico entre elas. As observações sugerem que o P. megistus apresenta uma geração anual em Bambuí e que o T. infestans o faz, talvez, duas vêzes. Analisando os gráficos de evolução antes e depois dos trabalhos profiláticos em Bambuí, nos anos de 1956-57, verifica-se que não parece ter havido modificações significativas nos comportamentos das referidas espécies, o que se deve provàvelmente, a novos contigentes de insetos, de evolução semelhante, vindos de municípios vizinhos, ou a "focos residuais" em Bambuí, em que as aspersões com B.H.C não influenciaram diretamente na evolução. Em relação aos índices de infecção pelo S. cruzi, êstes são semelhantes para as duas espécies (3,21% para o T. infestans e 3,25% para o P. megistus). As formas adultas apresentam-se mais infectadas e, durante o ano, não há grandes variações de positividade nos diferentes meses. Houve redução significativa dos índices de infecção de T. infestans após os trabalhos profiláticos, com pequena elevação dos de P. megistus, talvez motivada pela invasão domiciliar ocorrida para esta espécies de 1958 a 1964.

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A study of the courship and copulation behaviour of Panstrongylus megistus was carried out in the laboratory. fifty-five newly-fed virgin couples were used. Experiments were performed during the day (9:00 to 12:00 a.m.) and at night (7:00 to 10:00 p.m). Behaviour was recorded by direct observation and was found to consist of the following sequence of behavioral patterns: the male approached the female and jumped on her or mounted her; he took on a dorsolateral position and immobilized the female dorsally and ventrally with his three pairs of legs; the male genital was placed below those of the female; the paramers of the male immobilized the female's genitals; copulation started. The couple joined by the iniciative of the male. The female could be receptive and accept copulation, or nonreceptive and reject the male. Copulation occurred more often on the occasion of the first attempt by the male. Duration of copulation was X = 29.3 ± 9.3 min (CV = 83%). No behavioral differences were observed couples tested during the day or at night.

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To determine in influence of feeding, lighting and time of day on the copulating behavior of Panstrongylus megistus, 480 insect pairs were divided into four groups of 120 each and tested in the following respective situations: without food deprivation (F.D.), with five days of F.D., with ten days of F.D., and with 20 days of F. D. The tests were performed between 9:00 a.m. to 12:00a.m. and 7:00 p.m. to 10:00 p.m., with light (700-1400 lux) and in the dark (1.4-2.8 lux) and behavior was recorded by the time sampling technique. Mating spped (MS) and duration of copulation (DC) were also calculated for each situation. The maximum frequency of copulation was observed after five days of F.D., at night, in the dark (n = 16), and the minimum was observed for recently-fed pairs, at night, with light (n = 4). Males approached females more often than females approached males. MS was lowest in pairs with twenty days of F.D., at night, with light (X = 23.0 ± 16.0 minutes), and highest in recently-fed pairs, during the day, with light (X = 2.9 ± 2.5 minutes). DC was shortest in recently-fed insects, during the day, in the dark (X = 23.5 ± 6.7 minutes), and longest in recently-fed animals, at night, in the dark (X = 38.3 ± 6.9 minutes).

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A study of the effect of mating in the fecundity and fertility of females of P. megistus fed on pigeon blood every 14 days, was carried out in the laboratory. Two groups were constituted: I - females which mated only once; II - females which stayed always with the males. Only 56.7% of group I females laid fertile eggs, while as much as 90% of group II females laid fertile eggs. The duration of the fertile oviposition was greater in the females which stayed always with the males. Some females of this group were able to mate up to seven times throughout their life-span. This fact render useless sterile males in the control of these insects. It is suggested that the components of pigeon's blood used for feeding the triatomines could have an influence upon the fecundity and fertility of the female sof the two groups.

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Five hemocyte types were identified in the hemolymph of Panstrongylus megistus by phase contrast and common light microscopy using some histochemical methods. These are: Prohemocytes, small cells presenting a great nucleus/cytoplasm ratio; Plasmatocytes, the most numerous hemocytes, are polymorphic cells mainly characterized by a large amount of lysosomes; Granulocytes, hemocytes very similar to plasmatocytes which contain cytoplasmic granules and are especially rich in polysaccharides; Oenocytoids, cells presenting a small nucleus and a thick cytoplasm; they show many small round vacuoles when observed in Giemsa smears and many cytoplasmic granules under phase microscopy; Adipohemocytes, very large hemocytes, presenting many fat droplet inclusions which could correspond to free fat bodies which entered the hemolymph. Only prohemocytes and plasmatocytes can be clearly classified; all the other hemocyte types have a more ambiguous classification.

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The epithelial cells of Panstrongylus megistus male accessory glands (MAG) present ultrastructural characteristics of a secretory cell. Their secretory products are accumulated in the lumen of the four MAG lobes. During the first 8 days of adult life a strong secretion activity occurs, accumulating enough material to produce the first spermatophore. Cerebral neurosecretions as well as juvenile hormone are both involved in MAG secretory activity regulation. Juvenile hormone seems to be the responsible for the stimulation of most protein synthesis in male accessory glands. Cerebral neurosecretion seems to be necessary to stimulate juvenile hormone production and release by the corpus allatum. Furthermore, neurosecretion is required for some polypeptides synthesis by MAG. Although topic application of precocene II to adult males does not reproduce the same effects on MAG as does allatectomy, this compound causes strong reduction on male reproductive capacity.

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The haemolymph of Panstrongylus megistus showed a natural lectin activity for a wide range of vertebrate erythocytes. Agglutination was observed against all vertebrate erythrocytes tested (human ABO, duck, rabbit, mouse, sheep, chicken and cow). Cow erythrocytes showed the lowest titre. Concerning human erythrocytes, the lectin activity was similar in the types A+,B+ and AB+ while the highest activity was observed in the type O+. Determination of minimal inhibitory concentrations was carried out with human erythrocytes type O+. Agglutination was inhibited by several carbohydrates (rhamnose. D-galatose, raffinose, D-lactose and D-fucose). Rhamnose wasreported as the strongest inhibitor (0.78mM). The results suggest the presence of more than one lection in the haemolymph of P. megistus.

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Ultrastructural analyses revealed the presence of six hemocyte types in the hemolymph of Panstrogylus megistus, partially confirming our previous results obtained through light microscopy. Prohemocytes: small, round hemocytes with a thin cytoplasm layer, espcieally rich in free ribosomes and poor in membranous systems. Plasmatocytes: polymorphic cells, whose cytoplasm contains many lysosomes and a well developed rough endoplasmic reticulum (RER).They are extremely phagocytic. Sometimes, they show a large vacuolation. Granulocytes: granular hemocytes whose granules show different degrees of electrondensity. Most of them, have an internal structuration. Coagulocytes: oval or elongated hemocytes, which show pronounced perinuclear cisternae as normally observed in coagulocytes. The cytoplasm is usually electrondense, poor in membranous systems and contains many labile granules. Oenocytoids: large and very stable hemocytes, whose homogeneous cytoplasme is rich in loose ribosomes and poor in membranous systems. Adipohemocytes: large cells, containing several characteristic lipid droplets. The cytoplasm is also rich in glycogen, RER and large mitochondria. The total and differential hemocyte count (THC and DHC) were also calculated for this reduviid. THC increases from 2,900 hemocytes/cubic millimeter of hemolymph in the 4th intar to 4,350 in the 5th and then, decreases to 1,950 in the adults. Plasmatocytes and coagulocytes are the predominant hemocyte types.

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The Brindley's glands of Panstrongylus megistus were studied under the antomic, histologic and ultrastructural point of view. These glands located in the insect's methatorax are paired and have an opening near the third parir of the feet. Beside this aperture, ther are evaporation areas. Shape, sixe and aspect of the gland vary according to the feeding status. The glands are composed by a tubular part corresponding to the duct and a sack-like portion corrsponding to the secretory part. By electron microscopy we observed that the basal part of the epithelium has many interdigitations associated with mitochondria. On the apical surface where epicuticular foldings are located an electonlucent space is often seen. The glands are composed of the following elements: 1) superficial epithelial cells, located just below the apical surface foldings; 2) secretory cells; which are long and have an intracellular canalicule which changes according to the functional state of the cell; 3) a collecting duct to the secretory cells and covered with an epicuticle, reaching up to the gland's lumen; and 4) cells around the duct.