Pigments Production, Growth Kinetics, and Bioenergetic Patterns in <i>Dunaliella tertiolecta</i> (Chlorophyta) in Response to Different Culture Media

This work dealt with the study of growth parameters, pigments production, and bioenergetic aspects of the microalga <i>Dunaliella tertiolecta</i> in different culture media. For this purpose, cultures were carried out in Erlenmeyer flasks containing F/2 medium, Bold’s Basal medium, or an...

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Main Authors: Yanara Alessandra Santana Moura, Daniela de Araújo Viana-Marques, Ana Lúcia Figueiredo Porto, Raquel Pedrosa Bezerra, Attilio Converti
Format: Article
Language:English
Published: MDPI AG 2020-10-01
Series:Energies
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Online Access:https://www.mdpi.com/1996-1073/13/20/5347
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Summary:This work dealt with the study of growth parameters, pigments production, and bioenergetic aspects of the microalga <i>Dunaliella tertiolecta</i> in different culture media. For this purpose, cultures were carried out in Erlenmeyer flasks containing F/2 medium, Bold’s Basal medium, or an alternative medium made up of the same constituents of the Bold’s Basal medium dissolved in natural seawater instead of distilled water. <i>D. tertiolecta</i> reached the highest dry cell concentration (<i>X<sub>max</sub></i> = 1223 mgDM·L<sup>−1</sup>), specific growth rate (<i>µ<sub>max</sub></i> = 0.535 d<sup>−1</sup>), cell productivity (<i>P<sub>X</sub></i> = 102 mgDM·L<sup>−1</sup>·d<sup>−1</sup>), and photosynthetic efficiency (<i>PE</i> = 14.54%) in the alternative medium, while the highest contents of carotenoids (52.0 mg·g<sup>−1</sup>) and chlorophyll (108.0 mg·g<sup>−1</sup>) in the biomass were obtained in Bold’s Basal medium. As for the bioenergetic parameters, the biomass yield on Gibbs energy dissipation was higher and comparable in both seawater-based media. However, the F/2 medium led to the highest values of moles of photons absorbed to produce 1 C-mol of biomass (<i>n</i><sub>Ph</sub>), total Gibbs energy absorbed by the photosynthesis (Δ<i>G</i><sub>a</sub>) and released heat (<i>Q</i>), as well as the lowest cell concentration, thus proving to be the least suitable medium for <i>D. tertiolecta</i> growth. On the other hand, the highest values of molar development of O<sub>2</sub> and consumption of H<sup>+</sup> and H<sub>2</sub>O were obtained in the alternative medium, which also ensured the best kinetic parameters, thereby allowing for the best energy exploitation for cell growth. These results demonstrate that composition of culture medium for microalgae cultivation has different effects on pigments production, growth kinetics, and bioenergetics parameters, which should be taken into consideration for any use of biomass, including as raw material for biofuels production.
ISSN:1996-1073