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Nitrate Feed Improves Growth and Ethanol Production of Clostridium ljungdahlii With CO(2) and H(2), but Results in Stochastic Inhibition Events

The pH-value in fermentation broth is a critical factor for the metabolic flux and growth behavior of acetogens. A decreasing pH level throughout time due to undissociated acetic acid accumulation is anticipated under uncontrolled pH conditions such as in bottle experiments. As a result, the impact...

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Autores principales: Klask, Christian-Marco, Kliem-Kuster, Nicolai, Molitor, Bastian, Angenent, Largus T.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7219301/
https://www.ncbi.nlm.nih.gov/pubmed/32435236
http://dx.doi.org/10.3389/fmicb.2020.00724
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author Klask, Christian-Marco
Kliem-Kuster, Nicolai
Molitor, Bastian
Angenent, Largus T.
author_facet Klask, Christian-Marco
Kliem-Kuster, Nicolai
Molitor, Bastian
Angenent, Largus T.
author_sort Klask, Christian-Marco
collection PubMed
description The pH-value in fermentation broth is a critical factor for the metabolic flux and growth behavior of acetogens. A decreasing pH level throughout time due to undissociated acetic acid accumulation is anticipated under uncontrolled pH conditions such as in bottle experiments. As a result, the impact of changes in the metabolism (e.g., due to a genetic modification) might remain unclear or even unrevealed. In contrast, pH-controlled conditions can be achieved in bioreactors. Here, we present a self-built, comparatively cheap, and user-friendly multiple-bioreactor system (MBS) consisting of six pH-controlled bioreactors at a 1-L scale. We tested the functionality of the MBS by cultivating the acetogen Clostridium ljungdahlii with CO(2) and H(2) at steady-state conditions (=chemostat). The experiments (total of 10 bioreactors) were addressing the two questions: (1) does the MBS provide replicable data for gas-fermentation experiments?; and (2) does feeding nitrate influence the product spectrum under controlled pH conditions with CO(2) and H(2)? We applied four different periods in each experiment ranging from pH 6.0 to pH 4.5. On the one hand, our data showed high reproducibility for gas-fermentation experiments with C. ljungdahlii under standard cultivation conditions using the MBS. On the other hand, feeding nitrate as sole N-source improved growth by up to 62% and ethanol production by 2–3-fold. However, we observed differences in growth, and acetate and ethanol production rates between all nitrate bioreactors. We explained the different performances with a pH-buffering effect that resulted from the interplay between undissociated acetic acid production and ammonium production and because of stochastic inhibition events, which led to complete crashes at different operating times.
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spelling pubmed-72193012020-05-20 Nitrate Feed Improves Growth and Ethanol Production of Clostridium ljungdahlii With CO(2) and H(2), but Results in Stochastic Inhibition Events Klask, Christian-Marco Kliem-Kuster, Nicolai Molitor, Bastian Angenent, Largus T. Front Microbiol Microbiology The pH-value in fermentation broth is a critical factor for the metabolic flux and growth behavior of acetogens. A decreasing pH level throughout time due to undissociated acetic acid accumulation is anticipated under uncontrolled pH conditions such as in bottle experiments. As a result, the impact of changes in the metabolism (e.g., due to a genetic modification) might remain unclear or even unrevealed. In contrast, pH-controlled conditions can be achieved in bioreactors. Here, we present a self-built, comparatively cheap, and user-friendly multiple-bioreactor system (MBS) consisting of six pH-controlled bioreactors at a 1-L scale. We tested the functionality of the MBS by cultivating the acetogen Clostridium ljungdahlii with CO(2) and H(2) at steady-state conditions (=chemostat). The experiments (total of 10 bioreactors) were addressing the two questions: (1) does the MBS provide replicable data for gas-fermentation experiments?; and (2) does feeding nitrate influence the product spectrum under controlled pH conditions with CO(2) and H(2)? We applied four different periods in each experiment ranging from pH 6.0 to pH 4.5. On the one hand, our data showed high reproducibility for gas-fermentation experiments with C. ljungdahlii under standard cultivation conditions using the MBS. On the other hand, feeding nitrate as sole N-source improved growth by up to 62% and ethanol production by 2–3-fold. However, we observed differences in growth, and acetate and ethanol production rates between all nitrate bioreactors. We explained the different performances with a pH-buffering effect that resulted from the interplay between undissociated acetic acid production and ammonium production and because of stochastic inhibition events, which led to complete crashes at different operating times. Frontiers Media S.A. 2020-05-06 /pmc/articles/PMC7219301/ /pubmed/32435236 http://dx.doi.org/10.3389/fmicb.2020.00724 Text en Copyright © 2020 Klask, Kliem-Kuster, Molitor and Angenent. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Microbiology
Klask, Christian-Marco
Kliem-Kuster, Nicolai
Molitor, Bastian
Angenent, Largus T.
Nitrate Feed Improves Growth and Ethanol Production of Clostridium ljungdahlii With CO(2) and H(2), but Results in Stochastic Inhibition Events
title Nitrate Feed Improves Growth and Ethanol Production of Clostridium ljungdahlii With CO(2) and H(2), but Results in Stochastic Inhibition Events
title_full Nitrate Feed Improves Growth and Ethanol Production of Clostridium ljungdahlii With CO(2) and H(2), but Results in Stochastic Inhibition Events
title_fullStr Nitrate Feed Improves Growth and Ethanol Production of Clostridium ljungdahlii With CO(2) and H(2), but Results in Stochastic Inhibition Events
title_full_unstemmed Nitrate Feed Improves Growth and Ethanol Production of Clostridium ljungdahlii With CO(2) and H(2), but Results in Stochastic Inhibition Events
title_short Nitrate Feed Improves Growth and Ethanol Production of Clostridium ljungdahlii With CO(2) and H(2), but Results in Stochastic Inhibition Events
title_sort nitrate feed improves growth and ethanol production of clostridium ljungdahlii with co(2) and h(2), but results in stochastic inhibition events
topic Microbiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7219301/
https://www.ncbi.nlm.nih.gov/pubmed/32435236
http://dx.doi.org/10.3389/fmicb.2020.00724
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