The role of temperature and carbon dioxide climatic stress factors on the growth kinetics ofEscherichia coli

Author:

Roufou Styliani1,Griffin Sholeem12,Attard Juan1ORCID,Katsini Lydia3,Polańska Monika3,Van Impe Jan F M3,Gatt Ruben4,Valdramidis Vasilis P125

Affiliation:

1. Department of Food Science and Nutrition, Faculty of Health Sciences, University of Malta , MSD 2080 , Malta

2. Centre of Molecular Medicine and Biobanking, University of Malta , MSD 2080 , Malta

3. Department of Chemical Engineering BioTeC+, Chemical & Biochemical Process Technology & Control Chemical, KU Leuven , Ghent 9000 , Belgium

4. Department of Metamaterials Unit, Faculty of Science, University of Malta , MSD 2080 , Malta

5. Department of Chemistry, School of Science, National Kapodistrian University of Athens , Athens 15771 , Greece

Abstract

AbstractAimsThe global level of carbon dioxide and temperature in the atmosphere is expected to increase, which may affect the survival of the stress-adapted bacteria. In this study, the effect of temperature and dissolved carbon dioxide on the growth rate of Escherichia coli-eGFP tagged strain was studied, thus assessing its response to induced environmental stress factors.Methods and resultsA kinetic assay has been performed using a microplate reader with a spectrofluorometer to determine the specific growth rates. Polynomial models were developed to correlate the environmental conditions of temperature and carbon dioxide with Escherichia coli BL21 (DE3) growth in culture media and dairy by-products. At a temperature of 42°C, as the dissolved CO2 increased, a decrease in μmax by 0.76 h−1 was observed. In contrast, at 27°C, this increase led to an increase in μmax by 0.99 h−1. Moreover, a correction factor was added when applying the model to dairy whey samples.ConclusionsThe application of this developed model can be considered a useful tool for predicting the growth of Escherichia coli using climate projections.

Funder

European Union

Publisher

Oxford University Press (OUP)

Subject

Applied Microbiology and Biotechnology,General Medicine,Biotechnology

Reference63 articles.

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