Klebsiella pneumoniae KE-1 degrades endosulfan without formation of the toxic metabolite, endosulfan sulfate
GS Kwon, JE Kim, TK Kim, HY Sohn… - FEMS microbiology …, 2002 - academic.oup.com
For bioremediation of toxic endosulfan, endosulfan degradation bacteria, which do not form
toxic endosulfan sulfate, were isolated from various soil samples using endosulfan as sole
carbon and energy source. Among the 40 isolated bacteria, strain KE-1, which was identified
as Klebsiella pneumoniae by physiological and 16S rDNA sequence analysis, showed
superior endosulfan degradation activity. Analysis of culture pH, growth, free sulfate and
endosulfan and its metabolites demonstrated that KE-1 biologically degrades 8.72 μg …
toxic endosulfan sulfate, were isolated from various soil samples using endosulfan as sole
carbon and energy source. Among the 40 isolated bacteria, strain KE-1, which was identified
as Klebsiella pneumoniae by physiological and 16S rDNA sequence analysis, showed
superior endosulfan degradation activity. Analysis of culture pH, growth, free sulfate and
endosulfan and its metabolites demonstrated that KE-1 biologically degrades 8.72 μg …
Klebsiella pneumoniae KE-1 degrades endosulfan without formation of the toxic metabolite, endosulfan sulfate.
KGS Kwon GiSeok, KJE Kim JangEok… - 2002 - cabidigitallibrary.org
For bioremediation of toxic endosulfan, endosulfan degradation bacteria, which do not form
toxic endosulfan sulfate, were isolated from various soil samples using endosulfan as sole
carbon and energy source. Among the 40 isolated bacteria, strain KE-1, which was identified
as Klebsiella pneumoniae by physiological and 16S rDNA sequence analysis, showed
superior endosulfan degradation activity. Analysis of culture pH, growth, free sulfate and
endosulfan and its metabolites demonstrated that KE-1 biologically degrades 8.72 µg …
toxic endosulfan sulfate, were isolated from various soil samples using endosulfan as sole
carbon and energy source. Among the 40 isolated bacteria, strain KE-1, which was identified
as Klebsiella pneumoniae by physiological and 16S rDNA sequence analysis, showed
superior endosulfan degradation activity. Analysis of culture pH, growth, free sulfate and
endosulfan and its metabolites demonstrated that KE-1 biologically degrades 8.72 µg …
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