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1.
Rev. argent. microbiol ; 34(3): 132-137, jul.-sept. 2002.
Article in English | LILACS | ID: lil-331792

ABSTRACT

The presence of nontuberculous mycobacteria (NTM) was investigated in forty soil samples belonging to the four physiographic regions (Eastern, Central, Southern and Western) that constitute La Pampa province. The presence of NTM in 67.5 of these soil samples was determined. The density of mycobacteria ranged 25-4,500 mycobacteria g-1 dry soil (mean = 516 CFU g-1). Significant differences were found in relation to both the investigated regions (p < 0.01) and the soil pH (r = 0.44*) (P = 0.02). The mycobacteria represented less than 0.00001 of the total aerobic bacteria found in the soils. Twenty-seven isolated mycobacteria were classified according to the culture, biochemical, enzymatic characteristics and antibiotic sensitivity. Mycobacterium fortitium was the dominant mycobacterium and was detected in 63 of the positive soils. This species showed ability for living in sandy to sandy loam soils, within a wide pH range (6.5-9.7) and organic matter (4.15-83.63 g kg-1). Two other species were M. phlei (range = 50-4,500 CFU g-1) and M. kansasii (range = 50-500 CFU g-1).


Subject(s)
Nontuberculous Mycobacteria/isolation & purification , Soil Microbiology , Argentina , Nontuberculous Mycobacteria/classification , Nontuberculous Mycobacteria/drug effects , Mycobacterium fortuitum , Mycobacterium kansasii , Mycobacterium phlei , Drug Resistance
2.
Rev. argent. microbiol ; 30(3): 122-9, jul.-set. 1998. tab
Article in English | LILACS | ID: lil-223484

ABSTRACT

Entre los grupos de microorganismos que se estudian por su potencial entomopatógeno, B. thuringiensis (Bt) es sin lugar a dudas la bacteria de mayor importancia en el control de insectos, plagas y vectores. En este trabajo se estudió la patogenicidad y sobrevivencia de células totales y de esporas de tres cepas de B. thuringiensis autóctonas de suelos argentinos (A61, A27 y A68) y una cepa comercial HD-1, a distintas concentraciones de ión hidrógeno (pH=4,4; 5,4;7,4; 8,4; 9,4 y 10,4), bajo condiciones de laboratorio. No se observó disminución de la toxicidad de las cepas desarrolladas a distintos valores de pH en bioensayos contra Cydia pomonella. El mayor efecto antimicrobiano sobre el número de esporas y células totales se detectó a pH 4,4. El pH 5,4 fue el que permitió un mayor índice de sobrevivencia en los serotipos investigados. Tres cepas de Bt (A61,A27,HD-1) mostraron alta toxicidad contra C. pomonella. El serotipo sotto, sin embargo, no produjo ese efecto


Subject(s)
Bacillus thuringiensis/pathogenicity , Cell Survival , Hydrogen-Ion Concentration , Insecticides/toxicity , Insecta/microbiology , Pest Control, Biological , Argentina
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