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| DOI | 10.1080/07388551.2017.1398133 | ||||
| Año | 2018 | ||||
| Tipo | revisión |
Citas Totales
Autores Afiliación Chile
Instituciones Chile
% Participación
Internacional
Autores
Afiliación Extranjera
Instituciones
Extranjeras
Actinobacteria are well-known degraders of toxic materials that have the ability to tolerate and remove organochloride pesticides; thus, they are used for bioremediation. The biodegradation of organochlorines by actinobacteria has been demonstrated in pure and mixed cultures with the concomitant production of metabolic intermediates including -pentachlorocyclohexene (-PCCH); 1,3,4,6-tetrachloro-1,4-cyclohexadiene (1,4-TCDN); 1,2-dichlorobenzene (1,2-DCB), 1,3-dichlorobenzene (1,3-DCB), or 1,4-dichlorobenzene (1,4-DCB); 1,2,3-trichlorobenzene (1,2,3-TCB), 1,2,4-trichlorobenzene (1,2,4-TCB), or 1,3,5-trichlorobenzene (1,3,5-TCB); 1,3-DCB; and 1,2-DCB. Chromatography coupled to mass spectrometric detection, especially GC-MS, is typically used to determine HCH-isomer metabolites. The important enzymes involved in HCH isomer degradation metabolic pathways include hexachlorocyclohexane dehydrochlorinase (LinA), haloalkane dehalogenase (LinB), and alcohol dehydrogenase (LinC). The metabolic versatility of these enzymes is known. Advances have been made in the identification of actinobacterial haloalkane dehydrogenase, which is encoded by linB. This knowledge will permit future improvements in biodegradation processes using Actinobacteria. The enzymatic and genetic characterizations of the molecular mechanisms involved in these processes have not been fully elucidated, necessitating further studies. New advances in this area suggest promising results. The scope of this paper encompasses the following: (i) the aerobic degradation pathways of hexachlorocyclohexane (HCH) isomers; (ii) the important genes and enzymes involved in the metabolic pathways of HCH isomer degradation; and (iii) the identification and quantification of intermediate metabolites through gas chromatography coupled to mass spectrometry (GC-MS).
| Ord. | Autor | Género | Institución - País |
|---|---|---|---|
| 1 | Cuozzo, S. A. | Hombre |
Planta Piloto Proc Ind Microbiol - Argentina
Univ Nacl Tucuman - Argentina Planta Piloto de Procesos Industriales Microbiologicos - Argentina Universidad Nacional de Tucuman (UNT) - Argentina |
| 2 | Sineli, P. E. | Hombre |
Planta Piloto Proc Ind Microbiol - Argentina
Planta Piloto de Procesos Industriales Microbiologicos - Argentina |
| 3 | Davila Costa, J. | - |
Planta Piloto Proc Ind Microbiol - Argentina
Planta Piloto de Procesos Industriales Microbiologicos - Argentina |
| 4 | TORTELLA-FUENTES, GONZALO RODRIGO | Hombre |
Universidad de La Frontera - Chile
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| Fuente |
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| Agencia Nacional de Promoción Científica y Tecnológica |
| Consejo Nacional de Investigaciones Científicas y Técnicas |
| Secretaría Nacional de Ciencia, Tecnología e Innovación |
| Secretaría de Ciencia, Arte e Innovación Tecnológica |
| SCAIT |
| Agradecimiento |
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| This work was supported by the Secretaría de Ciencia, Arte e Innovación Tecnológica (SCAIT) (PIUNT D504), the Agencia Nacional de Promoción Científica y Tecnológica (ANPCyT) (PICT 2013 0141), and the Consejo Nacional de Investigaciones Científicas y Técnicas (CONICET) (PIP 112-201101-00085). |