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Biological conversion of aromatic monolignol compounds by a Pseudomonas isolate from sediments of the Baltic Sea. | LitMetric

AI Article Synopsis

  • Nine bacterial strains were isolated from Baltic Sea sediments using ferulic acid, guaiacol, and lignin-rich softwood as substrates, with three identified as Pseudomonas species.
  • The fastest-growing isolate, identified as Pseudomonas deceptionensis, showed ability to thrive on four out of six lignin model compounds tested, including ferulate and benzoate.
  • Notably, various intermediate compounds were excreted during growth, such as vanillyl alcohol while growing on vanillin, indicating active catabolic processing of the substrates.

Article Abstract

Bacterial strains were isolated from the sediments of the Baltic Sea using ferulic acid, guaiacol or a lignin-rich softwood waste stream as substrate. In total nine isolates were obtained, five on ferulic acid, two on guaiacol and two on a lignin-rich softwood stream as a carbon source. Three of the isolates were found to be Pseudomonas sp. based on 16S rRNA sequencing. Among them, isolate 9.1, which showed the fastest growth in defined M9 medium, was tentatively identified as a Pseudomonas deceptionensis strain based on the gyrB sequencing. The growth of isolate 9.1 was further examined on six selected lignin model compounds (ferulate, p-coumarate, benzoate, syringate, vanillin and guaiacol) from different upper funneling aromatic pathways and was found able to grow on four out of these six compounds. No growth was detected on syringate and guaiacol. The highest specific growth and uptake rates were observed for benzoate (0.3 h and 4.2 mmol g  h) whereas the lowest were for the compounds from the coniferyl branch. Interestingly, several pathway intermediates were excreted during batch growth. Vanillyl alcohol was found to be excreted during growth on vanillin. Several other intermediates like cis,cis-muconate, catechol, vanillate and 4-hydroxybenzoate from the known bacterial catabolic pathways were excreted during growth on the model compounds.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5834416PMC
http://dx.doi.org/10.1186/s13568-018-0563-xDOI Listing

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