Your browser doesn't support javascript.
loading
Show: 20 | 50 | 100
Results 1 - 3 de 3
Filter
Add filters








Language
Year range
1.
Braz. j. microbiol ; 46(4): 1027-1035, Oct.-Dec. 2015. tab, graf
Article in English | LILACS | ID: lil-769635

ABSTRACT

Abstract We investigated the composition and structure of fungal communities associated with leaf litter generated by Clusia nemorosa and Vismia guianensis that belong to phylogenetically-related botanical families and exist together in a remnant of the Atlantic Forest in Bahia, Brazil. Samplings were conducted during wet (June 2011) and dry (January 2013) seasons in Serra da Jibóia. The fungi were isolated using particle filtration and the 1,832 isolates represented 92 taxa. The wet season yielded the largest number of isolates (1,141) and taxa (76) compared with the dry season (641 isolates and 37 taxa). The richness and diversity of fungal species associated with C. nemorosa (64 taxa, Simpson=0.95)were higher compared with those of V.guianensis (59 taxa, Simpson =0.90). Analysis of similarity (ANOSIM) revealed significant variations in the composition and community structure of fungi isolated from the two plants as a function of seasons. In contrast, nonmetric multidimensional scaling (NMDS) analysis show that the seasonality was an important influence on the distribution of fungal species. However, the populations of the saprobic fungal communities were dynamic, and several factors may influence such communities in the Atlantic Forest.


Subject(s)
Brazil/classification , Brazil/genetics , Brazil/isolation & purification , Brazil/microbiology , Clusia/classification , Clusia/genetics , Clusia/isolation & purification , Clusia/microbiology , Clusiaceae/classification , Clusiaceae/genetics , Clusiaceae/isolation & purification , Clusiaceae/microbiology , Ecosystem/classification , Ecosystem/genetics , Ecosystem/isolation & purification , Ecosystem/microbiology , Forests/classification , Forests/genetics , Forests/isolation & purification , Forests/microbiology , Fungi/classification , Fungi/genetics , Fungi/isolation & purification , Fungi/microbiology , Plant Leaves/classification , Plant Leaves/genetics , Plant Leaves/isolation & purification , Plant Leaves/microbiology , Seasons/classification , Seasons/genetics , Seasons/isolation & purification , Seasons/microbiology , Trees/classification , Trees/genetics , Trees/isolation & purification , Trees/microbiology
2.
Braz. j. microbiol ; 46(4): 1001-1008, Oct.-Dec. 2015. tab, graf
Article in English | LILACS | ID: lil-769644

ABSTRACT

A study was performed to investigate the genomic variations in the shrimp farm isolates of Vibrio alginolyticus and V. harveyi when the isolates were subjected to environmental stress. Samples of shrimps, water and sediment were collected from Southern Indian coastal shrimp farms. Vibrio isolates were biochemically identified and confirmed using 16S rDNA and gyrB gene specific PCR. The bacterial strains were genotyped by PCR fingerprinting using GTG(5) and IS (Insertion Sequence) primers. Seven strains each of V. alginolyticus and V. harveyi were subjected to 10 passages through trypticase soya broth (TSB), which contained different NaCl concentrations (3, 6 and 8%) and trypticase soya agar (TSA). V. alginolyticus was also passaged through TSB with a 12% NaCl concentration. PCR fingerprinting, which was performed on the strains that were passaged through different salt concentrations, confirmed that V. alginolyticus and V. harveyi could affect the genomic variations, depending on the environmental conditions of the culture. The study highlights the complex genotypic variations that occur in Vibrio strains of tropical aquatic environment because of varied environmental conditions, which result in genetic divergence and/or probable convergence. Such genetic divergence and/or convergence can lead to the organismal adaptive variation, which results in their ability to cause a productive infection in aquatic organisms or generation of new strains.


Subject(s)
Animals/genetics , Animals/growth & development , Animals/isolation & purification , Animals/microbiology , Aquaculture/genetics , Aquaculture/growth & development , Aquaculture/isolation & purification , Aquaculture/microbiology , DNA Primers/genetics , DNA Primers/growth & development , DNA Primers/isolation & purification , DNA Primers/microbiology , DNA, Bacterial/genetics , DNA, Bacterial/growth & development , DNA, Bacterial/isolation & purification , DNA, Bacterial/microbiology , Ecosystem/genetics , Ecosystem/growth & development , Ecosystem/isolation & purification , Ecosystem/microbiology , Penaeidae/genetics , Penaeidae/growth & development , Penaeidae/isolation & purification , Penaeidae/microbiology , Polymerase Chain Reaction/genetics , Polymerase Chain Reaction/growth & development , Polymerase Chain Reaction/isolation & purification , Polymerase Chain Reaction/microbiology , Vibrio alginolyticus/genetics , Vibrio alginolyticus/growth & development , Vibrio alginolyticus/isolation & purification , Vibrio alginolyticus/microbiology , Vibrio/genetics , Vibrio/growth & development , Vibrio/isolation & purification , Vibrio/microbiology
3.
Braz. j. microbiol ; 46(4): 1087-1091, Oct.-Dec. 2015. tab, graf
Article in English | LILACS | ID: lil-769654

ABSTRACT

Abstract Carbaryl is an important and widely used insecticide that pollutes soil and water systems. Bacteria from the local soil ecosystem of the Gaza Strip capable of utilizing carbaryl as the sole source of carbon and nitrogen were isolated and identified as belonging to Bacillus, Morganella, Pseudomonas, Aeromonas and Corynebacterium genera. Carbaryl biodegradation by Bacillus, Morganella and Corynebacterium isolates was analyzed in minimal liquid media supplemented with carbaryl as the only source of carbon and nitrogen. Bacillus and Morganella exhibited 94.6% and 87.3% carbaryl degradation, respectively, while Corynebacterium showed only moderate carbaryl degradation at 48.8%. These results indicate that bacterial isolates from a local soil ecosystem in the Gaza Strip are able to degrade carbaryl and can be used to decrease the risk of environmental contamination by this insecticide.


Subject(s)
Bacteria/classification , Bacteria/genetics , Bacteria/isolation & purification , Bacteria/metabolism , Biodegradation, Environmental/classification , Biodegradation, Environmental/genetics , Biodegradation, Environmental/isolation & purification , Biodegradation, Environmental/metabolism , Carbaryl/classification , Carbaryl/genetics , Carbaryl/isolation & purification , Carbaryl/metabolism , Ecosystem/classification , Ecosystem/genetics , Ecosystem/isolation & purification , Ecosystem/metabolism , Insecticides/classification , Insecticides/genetics , Insecticides/isolation & purification , Insecticides/metabolism , Middle East/classification , Middle East/genetics , Middle East/isolation & purification , Middle East/metabolism , Soil Microbiology/classification , Soil Microbiology/genetics , Soil Microbiology/isolation & purification , Soil Microbiology/metabolism , Soil Pollutants/classification , Soil Pollutants/genetics , Soil Pollutants/isolation & purification , Soil Pollutants/metabolism
SELECTION OF CITATIONS
SEARCH DETAIL