Impact of pH, nutrient, and salinity stress on lipid synthesis in Coelastrella sp. for sustainable biodiesel production

Highlights Coelastrella sp. demonstrated strong lipid production potential, especially at pH 7.0 and 0.5% fertilizer concentration. Stress conditions enhanced lipid accumulation, indicating resilience and adaptability for cultivation. The fatty acid profile supports the use of Coelastrella sp. for s...

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Main Authors: Suresh Arumugham, Fuad Ameen, Sagaya John Paul Joseph, Praveen Kumar Ramasamy, Thajuddin Nooruddin, Nagaraj Subramani
Format: Article
Language:English
Published: Springer 2024-12-01
Series:Discover Applied Sciences
Subjects:
Online Access:https://doi.org/10.1007/s42452-024-06378-z
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author Suresh Arumugham
Fuad Ameen
Sagaya John Paul Joseph
Praveen Kumar Ramasamy
Thajuddin Nooruddin
Nagaraj Subramani
author_facet Suresh Arumugham
Fuad Ameen
Sagaya John Paul Joseph
Praveen Kumar Ramasamy
Thajuddin Nooruddin
Nagaraj Subramani
author_sort Suresh Arumugham
collection DOAJ
description Highlights Coelastrella sp. demonstrated strong lipid production potential, especially at pH 7.0 and 0.5% fertilizer concentration. Stress conditions enhanced lipid accumulation, indicating resilience and adaptability for cultivation. The fatty acid profile supports the use of Coelastrella sp. for sustainable biodiesel production.
format Article
id doaj-art-9b84a433fa124de880ddf3f1c5afde28
institution OA Journals
issn 3004-9261
language English
publishDate 2024-12-01
publisher Springer
record_format Article
series Discover Applied Sciences
spelling doaj-art-9b84a433fa124de880ddf3f1c5afde282025-08-20T01:57:19ZengSpringerDiscover Applied Sciences3004-92612024-12-017111110.1007/s42452-024-06378-zImpact of pH, nutrient, and salinity stress on lipid synthesis in Coelastrella sp. for sustainable biodiesel productionSuresh Arumugham0Fuad Ameen1Sagaya John Paul Joseph2Praveen Kumar Ramasamy3Thajuddin Nooruddin4Nagaraj Subramani5Atal Centre for Ocean Science and Technology for Islands, National Institute of Ocean TechnologyDepartment of Botany & Microbiology, College of Science, King Saud UniversityCentre for Advanced Studies in Botany, University of Madras, Guindy Campus, Tamil NaduDanish Institute of TechnologyDanish Institute of TechnologyCentre for Advanced Studies in Botany, University of Madras, Guindy Campus, Tamil NaduHighlights Coelastrella sp. demonstrated strong lipid production potential, especially at pH 7.0 and 0.5% fertilizer concentration. Stress conditions enhanced lipid accumulation, indicating resilience and adaptability for cultivation. The fatty acid profile supports the use of Coelastrella sp. for sustainable biodiesel production.https://doi.org/10.1007/s42452-024-06378-zFreshwater microalgaeNutrient stressBiomassLipidBiodiesel
spellingShingle Suresh Arumugham
Fuad Ameen
Sagaya John Paul Joseph
Praveen Kumar Ramasamy
Thajuddin Nooruddin
Nagaraj Subramani
Impact of pH, nutrient, and salinity stress on lipid synthesis in Coelastrella sp. for sustainable biodiesel production
Discover Applied Sciences
Freshwater microalgae
Nutrient stress
Biomass
Lipid
Biodiesel
title Impact of pH, nutrient, and salinity stress on lipid synthesis in Coelastrella sp. for sustainable biodiesel production
title_full Impact of pH, nutrient, and salinity stress on lipid synthesis in Coelastrella sp. for sustainable biodiesel production
title_fullStr Impact of pH, nutrient, and salinity stress on lipid synthesis in Coelastrella sp. for sustainable biodiesel production
title_full_unstemmed Impact of pH, nutrient, and salinity stress on lipid synthesis in Coelastrella sp. for sustainable biodiesel production
title_short Impact of pH, nutrient, and salinity stress on lipid synthesis in Coelastrella sp. for sustainable biodiesel production
title_sort impact of ph nutrient and salinity stress on lipid synthesis in coelastrella sp for sustainable biodiesel production
topic Freshwater microalgae
Nutrient stress
Biomass
Lipid
Biodiesel
url https://doi.org/10.1007/s42452-024-06378-z
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