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Evaluation of Amycolaptosis sp. Ver12 as a potential degrader of benzo(b)fluoranthene
Author(s) -
TreviñoTrejo A. A.,
AlvarezHernández H. A.,
CruzMaya J. A.,
JanRoblero J.
Publication year - 2021
Publication title -
letters in applied microbiology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.698
H-Index - 110
eISSN - 1472-765X
pISSN - 0266-8254
DOI - 10.1111/lam.13526
Subject(s) - fluoranthene , biodegradation , bacteria , pseudomonas , microbiology and biotechnology , bioremediation , biology , microorganism , stenotrophomonas , rhodococcus , yeast extract , pyrene , chemistry , food science , ecology , genetics , astrobiology
Benzo(b)fluoranthene (BbF) is a polycyclic aromatic hydrocarbon (PAH) with five fused benzene rings; it is a highly recalcitrant compound and a priority environmental pollutant due to its detrimental effects on human health and the survival of wild animals. Biodegradation of BbF by microorganisms is an attractive alternative, and few studies have been focused on this issue. In this work, bacteria with the ability to degrade BbF were isolated and selected. The capability of the isolates to tolerate concentrations of 50 and 75 mg l −1 of BbF in liquid medium was evaluated. The selected isolates were identified by the 16S rRNA gene sequencing as belonging to Bacillus , Gordonia , Pseudomonas , Rhodococcus , Ochrobactrum , and Amycolatopsis . All isolates were tolerant and grew at the BbF concentrations tested, some isolates were more competitive than others, and the most prominent was Amycolatopsis sp. Ver12, which removed 47% of BbF, furthermore, with the addition of yeast extract, removed 59% of the compound. In summary, the report shows that Amycolatopsis sp. Ver12 can degrade BbF efficiently and could be considered for bioremediation of BbF‐contaminated environments.