Abstract a Micrococcus sp. isolated by isophthalate enrichment, utilized 8 of the 13 substituted benzoic acids tested as the sole source of carbon and energy. The organism degraded benzoic acid and anthranilic acid through the intermediate formation of catechol. While salicylate is metabolized through genetisic acid, p-hydroxybenzoic acid is degraded through protocatechuic acid. The organism grew well on isophthalate but failed to utilize phthalate and terphthalate. Catechol disoxygenase, gentisate dioxygenase and protocatechuate dioxygenase activities were shown in the cell-free extracts. Catechol and protocatechuate are further metabolized through an ortho-cleavage pathway
From anaerobic freshwater enrichment cultures with 3-hydroxybenzoate as sole substrate, a slightly c...
Pseudomonas putida CSV86 metabolizes 1- and 2-methylnaphthalene through distinct catabolic and detox...
Degradation of a range of aromatic substrates by anaerobic microbial communities was studied. Active...
Abstract a Micrococcus sp. isolated by isophthalate enrichment, utilized 8 of the 13 substituted ben...
Allelochemicals are metabolites produced by living organisms that have a detrimental effect on other...
900-903This study presents biodegradation of benzoic acid (BA) and anthranilic acid (AA) by Micrococ...
A bacterial strain capable of utilizing a mixture containing 2-hydroxybenzoic acid (2-HBA), 3-hydrox...
A review with 273 refs. Pathways for the degradation of benzoic acid, hydroxybenzoic acids, methoxyb...
Under anoxic conditions, most methoxylated mononuclear aromatic compounds are degraded by bacteria, ...
Acinetobacter sp. utilized p-benzyloxyphenol as sole carbon source and degraded it to p-hydroxy-benz...
From a methanogenic fixed-bed reactor fed with hydroquinone as sole energy and carbon source, a rods...
The aromatic compound benzoic acid and its derivatives are frequently used preservatives in food and...
Aerobic catabolism of benzoate and p-hydroxybenzoate is widely reported in several genera of bacteri...
Pseudomonas sp. strain PPD and Alcaligenes sp. strain PPH isolated from soil by enrichment culture t...
The aromatic compound benzoic acid and its derivatives are frequently used preservatives in food and...
From anaerobic freshwater enrichment cultures with 3-hydroxybenzoate as sole substrate, a slightly c...
Pseudomonas putida CSV86 metabolizes 1- and 2-methylnaphthalene through distinct catabolic and detox...
Degradation of a range of aromatic substrates by anaerobic microbial communities was studied. Active...
Abstract a Micrococcus sp. isolated by isophthalate enrichment, utilized 8 of the 13 substituted ben...
Allelochemicals are metabolites produced by living organisms that have a detrimental effect on other...
900-903This study presents biodegradation of benzoic acid (BA) and anthranilic acid (AA) by Micrococ...
A bacterial strain capable of utilizing a mixture containing 2-hydroxybenzoic acid (2-HBA), 3-hydrox...
A review with 273 refs. Pathways for the degradation of benzoic acid, hydroxybenzoic acids, methoxyb...
Under anoxic conditions, most methoxylated mononuclear aromatic compounds are degraded by bacteria, ...
Acinetobacter sp. utilized p-benzyloxyphenol as sole carbon source and degraded it to p-hydroxy-benz...
From a methanogenic fixed-bed reactor fed with hydroquinone as sole energy and carbon source, a rods...
The aromatic compound benzoic acid and its derivatives are frequently used preservatives in food and...
Aerobic catabolism of benzoate and p-hydroxybenzoate is widely reported in several genera of bacteri...
Pseudomonas sp. strain PPD and Alcaligenes sp. strain PPH isolated from soil by enrichment culture t...
The aromatic compound benzoic acid and its derivatives are frequently used preservatives in food and...
From anaerobic freshwater enrichment cultures with 3-hydroxybenzoate as sole substrate, a slightly c...
Pseudomonas putida CSV86 metabolizes 1- and 2-methylnaphthalene through distinct catabolic and detox...
Degradation of a range of aromatic substrates by anaerobic microbial communities was studied. Active...