734 resultados para ENTOMOLOGIA FORENSE


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Abundace and body size distribution of invertebrates of leaf litter in Amazonian forest, Brazil. Based on 605 invertebrates sampled of the litter in an Amazonian Forest, some basic macroecological patterns for this assemblage were described. The relationship between abundance and body size, at logarithmic scale, was triangular, and the distribution of species was constrained in an asymmetric triangular envelope, that was tested using null model procedures in ECOSIM (P= 0,0002). The most abundant species were at an intermediated body size. The relationship between maximum abundance with different mean body size classes confirmed the Energetic Equivalent Rule (b = -1,069; t-0,75 = -2,13; P = 0.079). This way, species tend to consume energy from the community independent of their body size, since requirements are compensated by local population density.

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A new genus and new species of Phlebotominae, Edentomyia piauiensis (Diptera, Psychodidae) from a cave in Piauí State, Brazil, are described. This new genus belongs to Phlebotomini, but its inclusion in any subdivision of this tribe depends on further study.

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A new species of Xylocopa Latreille, 1802, and notes on Xylocopa transitoria Pérez and X. mordax Smith (Hymenoptera, Apoidea). Xylocopa (Neoxylocopa) orthogonaspis sp. nov. (Brazil, Amazonas) is described. It is a remarkable species from the Amazonian Region easily recognized by the strong and sharp right angle between upper and posterior portions of the scutellum; the wings are slightly brown with a brassy hue and a little vinaceous apex. Some notes to separate Xylocopa (N.) orthogonaspis sp. nov. from X. (N.) transitoria Pérez, 1901, and X. (N.) mordax Smith, 1874, are given. Xylocopa (N.) submordax Cockerell, 1935, on the other hand, is considered as a new synonym of X. (N.) transitoria Pérez, 1901.

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Species of Adelpha Hübner, [1819] (Lepidoptera, Nymphalidae, Limenitidinae) occurring in Rio Grande do Sul State, Brazil. Based on literature, collections and sampled butterflies, a list of twelve species of Adelpha Hübner occurring in Rio Grande do Sul State is presented, including host plants. Adelpha epizygis Fruhstorfer, [1916], Adelpha falcipennis Fruhstorfer, [1916], Adelpha goyama Schaus, 1902 and Adelpha isis (Drury, 1782) are new reports to Rio Grande do Sul. The species are illustrated and keyed.

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Mature larvae of Mauritinus seferi Bondar, 1960 were collected in the mesocarp of murity palm (Mauritia flexuosa Linnaeus), in the State of Pará, Brazil. Larvae were reared to pupa and adults in the laboratory. Mature larva and pupa are described and adult redescribed. Adult and immature are illustrated for the first time. Observations about bionomy are included and discussed.

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Analysis of the Braconidae (Hymenoptera: Ichneumonoidea) fauna richness in natural remnants of the Área de Proteção Ambiental (APA) of Descalvado, SP. A survey of the Braconidae fauna on fragmentary natural environments at northeast São Paulo State was conducted using Malaise traps installed in five sites of Área de Proteção Ambiental of Descalvado. A total of 2,262 specimens, representing 22 subfamilies and 94 genera, was sampled throughout a period of sixteen months (from May, 1999 to August, 2000). Biological data were obtained from current literature and behavior patterns of host utilization for the studied fauna, mainly Braconidae which have been successful in control of agricultural insect pests. Statistical analyses indicated that the asymptote of the genera richness has been approached using this sampling method. This is the most complete survey yet available from natural fragmentary areas of the Descalvado Braconidae fauna. Patterns of distribution and richness of the Braconidae genera were established. Cluster Analysis was adopted taking as attribute the number of Braconidae genera.

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Phenology of the Braconidae (Hymenoptera, Ichneumonoidea) at Área de Proteção Ambiental of Descalvado, São Paulo State. The flight phenology of the Braconidae fauna was conducted using Malaise traps in five sites of the Environmental Protected Area of Descalvado. A total of 2,792 specimens, representing 22 subfamilies, was sampled throughout a period of sixteen months from May, 1999 to August, 2000. The traps catches for koinobionts peak was in August, 1999 a month before of the idiobionts peak and in June, 2000 both peaks were simultaneous. The phenological peaks of dominant koinobiont taxa (Microgastrinae) were similar to all koinobionts, and the peaks of dominant idiobiont taxa (Doryctinae) were similar to all idiobionts, as well. December, 1999 and February, 2000 were the richer months in number of subfamilies (N= 19 and 18, respectivaly), corresponding to the same period when the subfamilies which potentially attack Lepidoptera where collected. The number of females was superior to the number of males and this relation was more accentuated in koinobionts. The peaks of both females and males were similar to dominate koinobiont and idiobionte taxa.

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The genus Xylocopa Latreille in Rio Grande do Sul, Brazil (Hymenoptera, Anthophoridae). A survey of the genus Xylocopa Latreille, 1802 is given for Rio Grande do Sul, the southernmost State of Brazil. Data are based on several studies on the bee fauna of southern Brazil and on unpublished observations. A key is provided to the species (males and females) and information on distribution, nesting habits and relation to flowers. Rio Grande do Sul is strikingly rich in species of Xylocopa because of the diversity of habitats and its geographic position in the transition of tropical/subtropical to temperate climate. Nineteen species, classified into ten subgenera, have been recorded in Rio Grande do Sul. Here we maintain the subgenera Ioxylocopa, Megaxylocopa and Xylocospila, which were put into synonymy recently by Minckley (1998). The species are: Xylocopa (Dasyxylocopa) bimaculata Friese, 1903; Xylocopa (Ioxylocopa) chrysopoda Schrottky, 1902; Xylocopa (Megaxylocopa) frontalis (Olivier, 1789); Xylocopa (Nanoxylocopa) ciliata Burmeister, 1876; Xylocopa (Neoxylocopa) augusti Lepeletier, 1841; Xylocopa (N.) brasilianorum (Linnaeus, 1767); Xylocopa (N.) haematospila Moure, 1951; Xylocopa (N.) hirsutissima Maidl, 1912; Xylocopa (N.) nigrocincta Smith, 1854; Xylocopa (N.) ordinaria Smith, 1874; Xylocopa (N.) suspecta Moure & Camargo, 1988; Xylocopa (N.) tacanensis Moure, 1949; Xylocopa (Schonnherria) macrops Lepeletier, 1841; Xylocopa (S.) simillima Smith, 1854; Xylocopa (S.) splendidula Lepeletier, 1841; Xylocopa (S.) varians Smith, 1874; Xylocopa (Stenoxylocopa) artifex Smith, 1874; Xylocopa (Xylocopoda) elegans Hurd & Moure, 1963; Xylocopa (Xylocopsis) funesta Maidl, 1912; Xylocopa (Xylocospila) bambusae Schrottky, 1902. Xylocopa tacanensis is for the first time recorded in Brasil.

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Notes, descriptions, synonymies and reinstatement in Hesperandra Arigony, 1977 (Coleoptera, Cerambycidae, Parandrinae). The genus Hesperandra Arigony, 1977, is divided in three subgenera: Hesperandra s. str., Zikandra subgen. nov. and Tavandra subgen. nov. Keys to the subgenera and species are added. H. glaberrima (Zikán, 1948) is revalidated and redescribed. H. humboldti sp. nov., from Colombia and Ecuador is described. New synonymies established: Hesperandra galapagoensis (Van Dyke, 1953) = H. brevicollis (Lameere, 1902); H. scrobriculata (Zikán, 1948) = Acutandra murrayi (Lameere, 1912). The lectotype of Parandra brevicollis Lameere, 1902 is designated.

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New taxa of Apomecynini (Coleoptera, Cerambycidae, Lamiinae). The following new taxa are described from Brazil: Ischioncha rondonia sp. nov., from Rondônia; Prosenella unicolor sp. nov., from Rio Grande do Sul; Catuaba gen. nov., type species, C. sanguinolenta sp. nov., from Mato Grosso do Sul.

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Synopsis of the genus Phacellocerina Lane, 1964 (Coleoptera, Cerambycidae, Lamiinae, Anisocerini). The genus Phacellocerina Lane, 1964 and P. limosa (Bates, 1862) (type species) are redescribed; P. silvanae sp. nov. is described from Colombia (Santa Marta). A key to the species is added.

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On Gymnocerus Audinet-Serville, 1835 (Coleoptera, Cerambycidae, Lamiinae, Anisocerini) and related genera. The genus Gymnocerus Audinet-Serville, 1835 is characterized and a key to the related genera is added. New combinations: Gymnocerina cratosomoides (Bates, 1862), comb. nov. (from Gymnocerus) and Badenella gavisa (Lane, 1966), comb. nov. (from Chimboincola). New synonyms proposed: Badenella Lane, 1964 = Chimboincola Lane, 1966 syn. nov.; Gymnocerina cratosomoides (Bates, 1862) = Gymnocerus crassus Bates, 1862 syn. nov. = Gymnocerina sulfurea Lane, 1964 syn. nov. = Gymnocerina subsiciva Lane, 1964 syn. nov. = Gymnocerina spuria Lane, 1964 syn. nov. = Gymnocerina oliveirai Lane, 1964 syn. nov.; and Badenella badeni (Bates, 1875) = Gymnocerus badeni fuscus Franz, 1935 syn. nov. = Badenella laceyi Lane, 1964 syn. nov..

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The genus Anisocerus and the two species, A. scopifer (Germar, 1824) and A. stellatus Guérin-Ménéville, 1855, are redescribed and illustrated. A new synonym is proposed: A. stellatus Guérin-Méneville, 1855 = A. onca White, 1855 syn. nov. The two species are redescribed and illustrated.

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The Neotropical genus Xanthandrus Verral, 1901 is revised. Six species are redescribed: X. bucephalus (Wiedemann, 1830), X. cubanus Fluke, 1936, X. mellinoides (Macquart, 1846), X. mexicanus Curran, 1930, X. nitidulus Fluke, 1937, and X. plaumanni Fluke, 1937. Three species are included based on original descriptions: X. flavomaculatus Shannon, 1927, X. palliatus (Fluke, 1945), and X. simplex (Loew, 1861). New synonyms proposed: Argentinomyia longicornis (Walker, 1837) = Xanthandrus biguttatus Hull, 1945 syn. nov., and Xanthandrus bucephalus (Wiedemann, 1830) = Melanostoma quadrinotata Bigot, 1884 syn. nov. Description of terminalia, a key for Neotropical species, and illustrations are also presented.

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Host part selection by ovipositing females of Ascia monuste (Godart, 1919) (Lepidoptera, Pieridae) on kale (Brassica oleracea var. acephala) was determined in greenhouse and field. Performance of offspring (larval period, efficiency of food utilization, number of eggs/female and others) was investigated under laboratory conditions. In the field, the number of A. monuste egg clutches on the apical and medium parts of kale leaves was greater than on the basal part. In greenhouse, A. monuste exhibited a strong preference for the apical part of kale leaves for ovipositing. The best results on food utilization indices, pupal mass and female wing size were obtained with the leaf apical part. This part of kale leaves exhibited the highest nitrogen and protein concentration and the smallest water content, when compared to the other leaf parts. However, the apical part of the leaves seems not to provide ovipositing females with enough protection against birds, making them easy preys in the field. We suggest that good relationship between oviposition preference and performance of offspring was hindered by predation in field conditions.