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dc.creatorRousidou K., Chanika E., Georgiadou D., Soueref E., Katsarou D., Kolovos P., Ntougias S., Tourna M., Tzortzakakis E.A., Karpouzas D.G.en
dc.date.accessioned2023-01-31T09:52:09Z
dc.date.available2023-01-31T09:52:09Z
dc.date.issued2016
dc.identifier10.3389/fmicb.2016.00616
dc.identifier.issn1664302X
dc.identifier.urihttp://hdl.handle.net/11615/78600
dc.description.abstractMicrobial degradation is the main process controlling the environmental dissipation of the nematicide oxamyl. Despite that, little is known regarding the microorganisms involved in its biotransformation. We report the isolation of four oxamyl-degrading bacterial strains from an agricultural soil exhibiting enhanced biodegradation of oxamyl. Multilocus sequence analysis (MLSA) assigned the isolated bacteria to different subgroups of the genus Pseudomonas. The isolated bacteria hydrolyzed oxamyl to oxamyl oxime, which was not further transformed, and utilized methylamine as a C and N source. This was further supported by the detection of methylamine dehydrogenase in three of the four isolates. All oxamyl-degrading strains carried a gene highly homologous to a carbamate-hydrolase gene cehA previously identified in carbaryl- and carbofuran-degrading strains. Transcription analysis verified its direct involvement in the hydrolysis of oxamyl. Selected isolates exhibited relaxed degrading specificity and transformed all carbamates tested including the oximino carbamates aldicarb and methomyl (structurally related to oxamyl) and the aryl-methyl carbamates carbofuran and carbaryl which share with oxamyl only the carbamate moiety. © 2016 Rousidou, Chanika, Georgiadou, Soueref, Katsarou, Kolovos, Ntougias, Tourna, Tzortzakakis and Karpouzas.en
dc.language.isoenen
dc.sourceFrontiers in Microbiologyen
dc.source.urihttps://www.scopus.com/inward/record.uri?eid=2-s2.0-84966290923&doi=10.3389%2ffmicb.2016.00616&partnerID=40&md5=ff993f258a51134869759978ab8d132c
dc.subjectaldicarben
dc.subjectcarbamic aciden
dc.subjectcarbarilen
dc.subjectcarbofuranen
dc.subjectDNA polymeraseen
dc.subjectmethomylen
dc.subjectoxamylen
dc.subjectRNA 16Sen
dc.subjectanimal cellen
dc.subjectArticleen
dc.subjectbacterial geneen
dc.subjectbacterium isolationen
dc.subjectcehA geneen
dc.subjectcontrolled studyen
dc.subjectenzymatic degradationen
dc.subjectenzyme kineticsen
dc.subjectgene expressionen
dc.subjectgene identificationen
dc.subjecthigh performance liquid chromatographyen
dc.subjecthydrolysisen
dc.subjectmicrobial degradationen
dc.subjectmultilocus sequence typingen
dc.subjectnonhumanen
dc.subjectnucleotide sequenceen
dc.subjectphylogenyen
dc.subjectreal time polymerase chain reactionen
dc.subjectRNA extractionen
dc.subjectsequence alignmenten
dc.subjectsequence analysisen
dc.subjectFrontiers Research Foundationen
dc.titleIsolation of oxamyl-degrading bacteria and identification of cehA as a novel oxamyl hydrolase geneen
dc.typejournalArticleen


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