OBJETIVOS: Verificar a diversidade de criadouros e tipos de imóveis freqüentados por fêmeas de Aedes albopictus e Aedes aegypti.
MÉTODOS: O estudo foi realizado nos anos de 2002 e 2003 no bairro de CampoGrande, Rio de Janeiro, RJ. Realizou-se pesquisa larvária em diferentes tipos de imóveis. As larvas encontradas foram identificadas em laboratório. A freqüência de larvas dessas duas espécies foi computada nos diversos criadouros disponíveis. Foram calculados os índices de infestação predial e de Breteau, as diferenças foram testadas pelo qui-quadrado.
RESULTADOS:Os tipos de imóveis positivos para os aedinos foram: residências (83,9% do total); igrejas, escolas, clubes (6,8%); terrenos baldios (6,4%); e comércios (2,8%). Das 9.153 larvas, 12,0% eram de Aedes albopictus e 88,0% de Aedes aegypti. Para aquela espécie, os recipientes onde foram mais encontradas foram ralos (25,4%), latas, garrafas, vasilhames (23,9%) e vasos com plantas (16,2%). Aedes aegypti mostrou-se mais freqüente nos criadouros que Aedes albopictus (χ 2 =145,067, p<0,001). Também ocorreu diferença significante na freqüência dessas espécies em criadouros artificiais do que em naturais (χ
CONCLUSÕES:Verificou-se a freqüência das fêmeas de Aedes albopictus e Ae. aegypti em variados tipos de criadouros e tipos de imóveis para postura. A oferta abundante de recipientes artificiais inservíveis nas residências, associada à capacidade de Ae. albopictus de freqüentar também os criadouros naturais, contribui sobremaneira para sua adaptação gradativa ao meio antrópico. ABSTRACT OBJECTIVE: To assess the diversity of oviposition containers and buildings where females of Aedes albopictus and Aedes aegypti can be found.
Histological and ultrastrucutural alterations in the midgut of Aedes albopictus larvae infected with Bacillus thuringiensis var. israelensis (Bti) were observed by light and transmission electron microscopy (TEM). Two formulations of Bti were used: granulated and powder, with 0.2% active ingredient in 90 larvae of Ae. albopictus distributed in three containers containing 30 larvae each (one control group and two test groups). The midgut epithelium of the control group presented flattened and elongated cells with mace-shape with a narrow base. Midgut epithelium cells' surface was convex and had a large circular nucleus located in the median-apical portion of the cell. These cells also presented a basal lamina with a small accumulation of extracellular fibrous matrix, thus characterizing a basal membrane, with a muscle layer and a peritoneal membrane more externally. After Bti ingestion, the larvae stopped/slowed their natural movements down in 5 min. After 30 min approximately, the swimming movements stopped completely. Internally, the intestinal cells showed a disorganization of the basal processes, dilatation and fragmentation of the rough endoplasmic reticulum, with intense cytoplasmic vacuolization. There were concentric dense laminas accumulated in the cytoplasm, and these residual membranous bodies were seen greatly increased in size after 60 min. Mitochondria, fragments of rough endoplasmic reticulum and other remainder organelles were surrounded and segregated from the cytoplasm by exocytosis. This article reports the histopathological alterations in the midgut of Ae. albopictus after infection with Bti and contributes to a better understanding of the mode of action of this bacterial strain used as bioinsecticide against mosquito larvae.
In the above paper, the name of the seventh-listed author was misspelled. The correct name is Rodrigo Chaves.We apologize for any confusion caused by this error.
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