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1.
Pesqui. vet. bras ; 30(7): 573-580, July 2010. tab
Article in Portuguese | LILACS | ID: lil-557303

ABSTRACT

A diversidade biológica é representada por todas as unidades da natureza e sua conservação diz respeito à sobrevivência da própria espécie humana. Uma das ameaças à sua conservação são as doenças infecciosas que afetam a fauna, dentre as quais se podee incluir a salmonelose como uma das mais importantes, especialmente para a avifauna. Aves de topo de cadeia alimentar como os Ciconiiformes podem ser potenciais reservatórios e disseminadores da Salmonella spp. para outras espécies silvestres e também para populações humanas e animais domésticos, podendo causar prejuízos à saúde pública e ao meio ambiente. Objetivou-se descrever a infecção ou doença por Salmonella sp., o seu agente etiológico e sua ocorrência em Ciconiiformes, bem como demonstrar a importância destas aves na cadeia epidemiológica silvestre desta zoonose, verificando os riscos para a saúde pública e para a conservação da diversidade biológica.


Biological diversity is represented by all nature units and its conservation is about the survival of human beings. Infectious diseases are one of the possible threats for wildlife conservation, which includes salmonellosis as a most important disease, especially for the avifauna. Top alimentary chain birds such as Ciconiiformes can be reservoirs and disseminators of Salmonella spp. to other wild and domestic animals, and also for human populations, with serious risks to public and environmental health. This review describes infection by Salmonella spp., its etiological agent and occurrence in Ciconiiformes, as well as the importance of these wild birds for the epidemiological chain of the zoonosis, and discusses the risks for public health and biological diversity conservation.


Subject(s)
Animals , Bird Diseases , Salmonella Infections, Animal/epidemiology , Salmonella Infections, Animal/etiology , Brazil/epidemiology , Disease Transmission, Infectious , Salmonella
2.
Indian J Exp Biol ; 2005 Jul; 43(7): 626-30
Article in English | IMSEAR | ID: sea-58816

ABSTRACT

Haemolysins of Salmonella are important due to their probable role in pathogenesis of systemic salmonellosis and use in sub-serovar level typing. The present study was undertaken to determine haemolytic potential of Salmonella Gallinarum strains through phenotypic and genotypic methods. Amplification of haemolysin gene (clyA) and cytolysin gene (slyA) was attempted in order to determine their role in haemolysin production. Study on 94 strains of S. Gallinarum revealed the production of two types of haemolysis viz., beneath the colony haemolysis (BCH) or contact haemolysis and clear zone haemolysis (CZH). Haemolysis was observed on blood agar prepared with blood of cattle, buffalo, sheep, goat, horse, rabbit, guinea pig, fowl, and human blood group A, B, AB and O. Although, haemolysis was also observed on blood agar prepared with whole blood, clarity of zone was more evident on blood agar made from washed erythrocytes. Clear zone haemolysis was best observed on blood agar prepared with washed erythrocytes of goat and a total of 12% (11 of 94) S. Gallinarum strains under study produced CZH on it. The clyA gene could not be detected in any of the 94 strains under study, while slyA gene could be amplified uniformly irrespective of haemolytic potential (CZH) and haemolytic pattern (BCH) of the strains. The study suggested that the two types of haemolysis (CZH and BCH) observed among S. Gallinarum strains may not be due to either slyA or clyA gene products and thus there may be some other gene responsible for haemolytic trait in Gallinarum serovar. Different haemolytic patterns of strains under study indicated multiplicity of haemolysins in S. Gallinarum.


Subject(s)
Animals , Bacterial Proteins/biosynthesis , Base Sequence , DNA, Bacterial/genetics , Genes, Bacterial , Hemolysin Proteins/biosynthesis , Hemolysis , Humans , Poultry , Poultry Diseases/etiology , Salmonella Infections, Animal/etiology , Salmonella enterica/classification
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