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1.
Environ Sci Pollut Res Int ; 23(18): 18111-28, 2016 Sep.
Artigo em Inglês | MEDLINE | ID: mdl-27259959

RESUMO

The Iguaçu River, located at the Southern part of Brazil, has a great socioeconomic and environmental importance due to its high endemic fish fauna and its potential to generate hydroelectric power. However, Iguaçu River suffers intense discharge of pollutants in the origin of the river. In a previous report, the local environmental agency described water quality to improve along the river course. However, no study with integrated evaluation of chemical analysis and biological responses has been reported so far for the Iguaçu River. In the current study, three different Brazilian fish species (Astyanax bifasciatus, Chrenicicla iguassuensis, and Geophagus brasiliensis) were captured in the five cascading reservoirs of Iguaçu River for a multi-biomarker study. Chemical analysis in water, sediment, and muscle indicated high levels of bioavailable metals in all reservoirs. Polycyclic aromatic hydrocarbons (PAHs) were detected in the bile of the three fish species. Integration of the data through a FA/PCA analysis demonstrated the poorest environmental quality of the reservoir farthest from river's source, which is the opposite of what has been reported by the environmental agency. The presence of hazardous chemicals in the five reservoirs of Iguaçu River, their bioaccumulation in the muscle of fish, and the biological responses showed the impacts of human activities to this area and did not confirm a gradient of pollution between the five reservoirs, from the source toward Iguaçu River's mouth. Therefore, diffuse source of pollutants present along the river course are increasing the risk of exposure to biota and human populations.


Assuntos
Biota , Rios/química , Poluentes Químicos da Água/análise , Animais , Disponibilidade Biológica , Brasil , Peixes , Hidrocarbonetos Policíclicos Aromáticos/análise , Qualidade da Água
2.
Braz J Biol ; 71(3): 747-54, 2011 Aug.
Artigo em Inglês | MEDLINE | ID: mdl-21881800

RESUMO

We examined the post-embryonic development of the male and female genital apparatus of the brown spider, Loxosceles intermedia. The development of the genital apparatus for both sexes begins with the appearance of inner structures. In the male genital apparatus, formation of the testes occurs first, followed by differentiation of the duct, ampulla and vas deferens, and finally the formation of the genital opening and differentiation of the copulatory organ (secondary sexual characteristic). Similarly, the development of the female genital apparatus begins with the formation of the ovaries, followed by the appearance of oocytes in vitellogenesis, then the development of oviducts and uterus internus and, finally, the spermatheca. These data may be very important in further comparative studies on the development of the reproductive system of spiders.


Assuntos
Genitália Feminina/crescimento & desenvolvimento , Genitália Masculina/crescimento & desenvolvimento , Maturidade Sexual , Aranhas/crescimento & desenvolvimento , Animais , Feminino , Masculino , Aranhas/classificação
3.
Braz. J. Biol. ; 71(3): 747-754, Aug. 2011. ilus
Artigo em Inglês | VETINDEX | ID: vti-10927

RESUMO

We examined the post-embryonic development of the male and female genital apparatus of the brown spider, Loxosceles intermedia. The development of the genital apparatus for both sexes begins with the appearance of inner structures. In the male genital apparatus, formation of the testes occurs first, followed by differentiation of the duct, ampulla and vas deferens, and finally the formation of the genital opening and differentiation of the copulatory organ (secondary sexual characteristic). Similarly, the development of the female genital apparatus begins with the formation of the ovaries, followed by the appearance of oocytes in vitellogenesis, then the development of oviducts and uterus internus and, finally, the spermatheca. These data may be very important in further comparative studies on the development of the reproductive system of spiders.(AU)


Examinamos o desenvolvimento pós-embrionário do aparelho genital masculino e feminino da aranha-marrom Loxosceles intermedia. O desenvolvimento do aparelho genital de ambos os sexos começa com o aparecimento de estruturas internas. No aparelho genital masculino a formação dos testículos ocorre primeiro, seguida pela diferenciação do ducto, ampola e vas deferens e, finalmente, a formação da abertura genital e diferenciação do órgão copulador (característica sexual secundária). Da mesma forma, o desenvolvimento do aparelho genital feminino começa com a formação dos ovários, seguida pelo aparecimento de oócitos em vitelogênese, o desenvolvimento dos ovidutos e uterus internus e, finalmente, a espermateca. Esses dados podem ser muito importantes em estudos comparativos sobre o desenvolvimento do sistema reprodutivo de aranhas.(AU)


Assuntos
Animais , Masculino , Feminino , Genitália Feminina/crescimento & desenvolvimento , Genitália Masculina/crescimento & desenvolvimento , Maturidade Sexual , Aranhas/crescimento & desenvolvimento , Aranhas/classificação
4.
Tissue Cell ; 41(4): 239-48, 2009 Aug.
Artigo em Inglês | MEDLINE | ID: mdl-19136131

RESUMO

The Japanese Silky chicken (SK) shows dermal and visceral hyperpigmentation. This study characterizes ultrastructurally the melanin granules developing in dermal melanocytes of the dorsal skin of SK, in an attempt to better understand the processes of melanogenesis in these permanently ectopic cells. The steps of melanogenesis are similar to those described for epidermal melanocytes, with melanosomes going from stage I to IV but, in SK, the maturation occurs in the cell body, as well as in the cytoplasmic processes. At stage III, the deposition of melanin is cumulative and can aggregate in rounded structures, which combine to turn into the mature granule. The final destiny of mature melanosomes is still unclear, although it was observed that dermal macrophages can accumulate melanin granules in their phagosomes. Even with the close proximity between melanocytes and other dermal cells, the transference of melanosomes was not observed. Our findings indicate that melanogenesis in dermal melanocytes in SK has the same morphological characteristics found in epidermal melanocytes, but the functional aspect still remains to be elucidated.


Assuntos
Melaninas/biossíntese , Melanócitos/metabolismo , Animais , Embrião de Galinha , Melaninas/metabolismo , Melanócitos/ultraestrutura , Melanossomas/fisiologia , Melanossomas/ultraestrutura , Pele/citologia , Pigmentação da Pele/fisiologia
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