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Supra-Optimal Temperature: An Efficient Approach for Overaccumulation of Starch in the Green Alga Parachlorella kessleri

Green algae are fast-growing microorganisms that are considered promising for the production of starch and neutral lipids, and the chlorococcal green alga Parachlorella kessleri is a favorable model, as it can produce both starch and neutral lipids. P. kessleri commonly divides into more than two da...

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Autores principales: Zachleder, Vilém, Kselíková, Veronika, Ivanov, Ivan N., Bialevich, Vitali, Vítová, Milada, Ota, Shuhei, Takeshita, Tsuyoshi, Kawano, Shigeyuki, Bišová, Kateřina
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8306380/
https://www.ncbi.nlm.nih.gov/pubmed/34359975
http://dx.doi.org/10.3390/cells10071806
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author Zachleder, Vilém
Kselíková, Veronika
Ivanov, Ivan N.
Bialevich, Vitali
Vítová, Milada
Ota, Shuhei
Takeshita, Tsuyoshi
Kawano, Shigeyuki
Bišová, Kateřina
author_facet Zachleder, Vilém
Kselíková, Veronika
Ivanov, Ivan N.
Bialevich, Vitali
Vítová, Milada
Ota, Shuhei
Takeshita, Tsuyoshi
Kawano, Shigeyuki
Bišová, Kateřina
author_sort Zachleder, Vilém
collection PubMed
description Green algae are fast-growing microorganisms that are considered promising for the production of starch and neutral lipids, and the chlorococcal green alga Parachlorella kessleri is a favorable model, as it can produce both starch and neutral lipids. P. kessleri commonly divides into more than two daughter cells by a specific mechanism—multiple fission. Here, we used synchronized cultures of the alga to study the effects of supra-optimal temperature. Synchronized cultures were grown at optimal (30 °C) and supra-optimal (40 °C) temperatures and incident light intensities of 110 and 500 μmol photons m(−2) s(−1). The time course of cell reproduction (DNA replication, cellular division), growth (total RNA, protein, cell dry matter, cell size), and synthesis of energy reserves (net starch, neutral lipid) was studied. At 40 °C, cell reproduction was arrested, but growth and accumulation of energy reserves continued; this led to the production of giant cells enriched in protein, starch, and neutral lipids. Furthermore, we examined whether the increased temperature could alleviate the effects of deuterated water on Parachlorella kessleri growth and division; results show that supra-optimal temperature can be used in algal biotechnology for the production of protein, (deuterated) starch, and neutral lipids.
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spelling pubmed-83063802021-07-25 Supra-Optimal Temperature: An Efficient Approach for Overaccumulation of Starch in the Green Alga Parachlorella kessleri Zachleder, Vilém Kselíková, Veronika Ivanov, Ivan N. Bialevich, Vitali Vítová, Milada Ota, Shuhei Takeshita, Tsuyoshi Kawano, Shigeyuki Bišová, Kateřina Cells Article Green algae are fast-growing microorganisms that are considered promising for the production of starch and neutral lipids, and the chlorococcal green alga Parachlorella kessleri is a favorable model, as it can produce both starch and neutral lipids. P. kessleri commonly divides into more than two daughter cells by a specific mechanism—multiple fission. Here, we used synchronized cultures of the alga to study the effects of supra-optimal temperature. Synchronized cultures were grown at optimal (30 °C) and supra-optimal (40 °C) temperatures and incident light intensities of 110 and 500 μmol photons m(−2) s(−1). The time course of cell reproduction (DNA replication, cellular division), growth (total RNA, protein, cell dry matter, cell size), and synthesis of energy reserves (net starch, neutral lipid) was studied. At 40 °C, cell reproduction was arrested, but growth and accumulation of energy reserves continued; this led to the production of giant cells enriched in protein, starch, and neutral lipids. Furthermore, we examined whether the increased temperature could alleviate the effects of deuterated water on Parachlorella kessleri growth and division; results show that supra-optimal temperature can be used in algal biotechnology for the production of protein, (deuterated) starch, and neutral lipids. MDPI 2021-07-16 /pmc/articles/PMC8306380/ /pubmed/34359975 http://dx.doi.org/10.3390/cells10071806 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Zachleder, Vilém
Kselíková, Veronika
Ivanov, Ivan N.
Bialevich, Vitali
Vítová, Milada
Ota, Shuhei
Takeshita, Tsuyoshi
Kawano, Shigeyuki
Bišová, Kateřina
Supra-Optimal Temperature: An Efficient Approach for Overaccumulation of Starch in the Green Alga Parachlorella kessleri
title Supra-Optimal Temperature: An Efficient Approach for Overaccumulation of Starch in the Green Alga Parachlorella kessleri
title_full Supra-Optimal Temperature: An Efficient Approach for Overaccumulation of Starch in the Green Alga Parachlorella kessleri
title_fullStr Supra-Optimal Temperature: An Efficient Approach for Overaccumulation of Starch in the Green Alga Parachlorella kessleri
title_full_unstemmed Supra-Optimal Temperature: An Efficient Approach for Overaccumulation of Starch in the Green Alga Parachlorella kessleri
title_short Supra-Optimal Temperature: An Efficient Approach for Overaccumulation of Starch in the Green Alga Parachlorella kessleri
title_sort supra-optimal temperature: an efficient approach for overaccumulation of starch in the green alga parachlorella kessleri
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8306380/
https://www.ncbi.nlm.nih.gov/pubmed/34359975
http://dx.doi.org/10.3390/cells10071806
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