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  1. 3 kwi 2021 · All isolated bacteria are capable of benzoate degradation as a sign of the ability to degrade aromatic compounds. Isolated strains were shown to be prospective agents in biotechnologies.

  2. 2 cze 2018 · The aim of this study was to evaluate the antibacterial activities of acidified sodium benzoate (NaB) solutions against Escherichia coli O157:H7, Salmonella enterica and Listeria monocytogenes in growth medium and on cherry tomatoes.

  3. 20 kwi 2021 · Microorganisms capable of degrading benzoate, as a rule, convert some other aromatic compounds. Our study showed that the selected bacteria more efficiently utilized monoaromatic

  4. 1 sty 2022 · In the environment rich in methanogens, syntrophic bacteria (e.g., Syntrophus buswellii) can degrade benzoate to methanogenic substrates as acetate, CO 2, H 2, and possibly formate. $$ {benzoate}^{-}+7{H}_2O\to 3\ {acetate}^{-}+3{H}^{+}+ HC{O}_3^{-}+3{H}_2 $$

  5. 18 lip 2022 · The nutrient broth medium with 50 mg/L of sodium benzoate was used for the isolation and screening of sodium benzoate degrading aerobic bacterial isolates. The microscopic examination of the isolates was done using Gram’s staining and their spore-forming ability was analyzed using endospore staining.

  6. 3 paź 2011 · The aerobic degradation of benzoate in bacteria and fungi is shown here as an example of a classical O 2-dependent strategy for aromatic-ring cleavage. Fungi convert benzoate mainly to ...

  7. We have studied for the first time the transcriptional regulatory circuit that controls the expression of the box genes encoding the aerobic hybrid pathway used to assimilate benzoate via coenzyme A (CoA) derivatives in bacteria.

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