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Biodegradation of para-amino acetanilide by Halomonas sp. TBZ3

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jjm-08-09-18622.pdf (476.5Kb)
Date
2015
Author
Hajizadeh, N
Heris, YS
Vahed, SZ
Vallipour, J
Hejazi, MA
Golabi, SM
Asadpour-Zeynali, K
Hejazi, MS
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Abstract
Background: Aromatic compounds are known as a group of highly persistent environmental pollutants. Halomonas sp. TBZ3 was isolated from the highly salty Urmia Lake of Iran. In this study, characterization of a new Halomonas isolate called Halomonas sp. TBZ3 and its employment for biodegradation of para-amino acetanilide (PAA), as an aromatic environmental pollutant, is described. Objectives: This study aimed to characterize the TBZ3 isolate and to elucidate its ability as a biodegradative agent that decomposes PAA. Materials and Methods: Primarily, DNA-DNA hybridization between TBZ3, Halomonas denitrificans DSM18045T and Halomonas saccharevitans LMG 23976T was carried out. Para-amino acetanilide biodegradation was assessed using spectrophotometry and confirmed by gas chromatography-mass spectroscopy (GC-MS). Parameters effective on biodegradation of PAA were optimized by the Response Surface Methodology (RSM). Results: The DNA-DNA hybridization experiments between isolate TBZ3, H. denitrificans and H. saccharevitans revealed relatedness levels of 57% and 65%, respectively. According to GC-MS results, TBZ3 degrades PAA to benzene, hexyl butanoate, 3-methyl-1-heptanol and hexyl hexanoate. Temperature 32.92آ°C, pH 6.76, and salinity 14% are the optimum conditions for biodegradation with a confidence level of 95% (at level ? = 0.05). Conclusions: According to our results, Halomonas sp. TBZ3 could be considered as a biological agent for bioremediation of PAA and possibly other similar aromatic compounds. é 2015, Ahvaz Jundishapur University of Medical Sciences.
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http://dspace.tbzmed.ac.ir:8080/xmlui/handle/123456789/52835
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