Modulation of Polar Lipid Profiles in <i>Chlorella</i> sp. in Response to Nutrient Limitation

We evaluate the effects of nutrient limitation on cellular composition of polar lipid classes/species in <i>Chlorella</i> sp. using modern polar lipidomic profiling methods (liquid chromatography&#8315;tandem mass spectrometry; LC-MS/MS). Total polar lipid concentration was highest i...

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Main Authors: Daniel A. White, Paul A. Rooks, Susan Kimmance, Karen Tait, Mark Jones, Glen A. Tarran, Charlotte Cook, Carole A. Llewellyn
Format: Article
Language:English
Published: MDPI AG 2019-02-01
Series:Metabolites
Subjects:
Online Access:https://www.mdpi.com/2218-1989/9/3/39
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spelling doaj-81d30f4d11974179a002aea12f4d4a6d2020-11-24T23:56:44ZengMDPI AGMetabolites2218-19892019-02-01933910.3390/metabo9030039metabo9030039Modulation of Polar Lipid Profiles in <i>Chlorella</i> sp. in Response to Nutrient LimitationDaniel A. White0Paul A. Rooks1Susan Kimmance2Karen Tait3Mark Jones4Glen A. Tarran5Charlotte Cook6Carole A. Llewellyn7Plymouth Marine Laboratory, Prospect Place, The Hoe, Plymouth, Devon PL1 3DH, UKPlymouth Marine Laboratory, Prospect Place, The Hoe, Plymouth, Devon PL1 3DH, UKPlymouth Marine Laboratory, Prospect Place, The Hoe, Plymouth, Devon PL1 3DH, UKPlymouth Marine Laboratory, Prospect Place, The Hoe, Plymouth, Devon PL1 3DH, UKPlymouth Marine Laboratory, Prospect Place, The Hoe, Plymouth, Devon PL1 3DH, UKPlymouth Marine Laboratory, Prospect Place, The Hoe, Plymouth, Devon PL1 3DH, UKPlymouth Marine Laboratory, Prospect Place, The Hoe, Plymouth, Devon PL1 3DH, UKDepartment of Biosciences, Singleton Park, Swansea University, Swansea, Wales SA2 8PP, UKWe evaluate the effects of nutrient limitation on cellular composition of polar lipid classes/species in <i>Chlorella</i> sp. using modern polar lipidomic profiling methods (liquid chromatography&#8315;tandem mass spectrometry; LC-MS/MS). Total polar lipid concentration was highest in nutrient-replete (HN) cultures with a significant reduction in monogalactosyldiacylglycerol (MGDG), phosphatidylglycerol (PG), phosphatidylcholine (PC), and phosphatidylethanolamine (PE) class concentrations for nutrient-deplete (LN) cultures. Moreover, reductions in the abundance of MGDG relative to total polar lipids versus an increase in the relative abundance of digalactosyldiacylglycerol (DGDG) were recorded in LN cultures. In HN cultures, polar lipid species composition remained relatively constant throughout culture with high degrees of unsaturation associated with acyl moieties. Conversely, in LN cultures lipid species composition shifted towards greater saturation of acyl moieties. Multivariate analyses revealed that changes in the abundance of a number of species contributed to the dissimilarity between LN and HN cultures but with dominant effects from certain species, e.g., reduction in MGDG 34:7 (18:3/16:4). Results demonstrate that <i>Chlorella</i> sp. significantly alters its polar lipidome in response to nutrient limitation, and this is discussed in terms of physiological significance and polar lipids production for applied microalgal production systems.https://www.mdpi.com/2218-1989/9/3/39polar lipids<i>Chlorella</i> sp.LC-MSnutrient limitation
collection DOAJ
language English
format Article
sources DOAJ
author Daniel A. White
Paul A. Rooks
Susan Kimmance
Karen Tait
Mark Jones
Glen A. Tarran
Charlotte Cook
Carole A. Llewellyn
spellingShingle Daniel A. White
Paul A. Rooks
Susan Kimmance
Karen Tait
Mark Jones
Glen A. Tarran
Charlotte Cook
Carole A. Llewellyn
Modulation of Polar Lipid Profiles in <i>Chlorella</i> sp. in Response to Nutrient Limitation
Metabolites
polar lipids
<i>Chlorella</i> sp.
LC-MS
nutrient limitation
author_facet Daniel A. White
Paul A. Rooks
Susan Kimmance
Karen Tait
Mark Jones
Glen A. Tarran
Charlotte Cook
Carole A. Llewellyn
author_sort Daniel A. White
title Modulation of Polar Lipid Profiles in <i>Chlorella</i> sp. in Response to Nutrient Limitation
title_short Modulation of Polar Lipid Profiles in <i>Chlorella</i> sp. in Response to Nutrient Limitation
title_full Modulation of Polar Lipid Profiles in <i>Chlorella</i> sp. in Response to Nutrient Limitation
title_fullStr Modulation of Polar Lipid Profiles in <i>Chlorella</i> sp. in Response to Nutrient Limitation
title_full_unstemmed Modulation of Polar Lipid Profiles in <i>Chlorella</i> sp. in Response to Nutrient Limitation
title_sort modulation of polar lipid profiles in <i>chlorella</i> sp. in response to nutrient limitation
publisher MDPI AG
series Metabolites
issn 2218-1989
publishDate 2019-02-01
description We evaluate the effects of nutrient limitation on cellular composition of polar lipid classes/species in <i>Chlorella</i> sp. using modern polar lipidomic profiling methods (liquid chromatography&#8315;tandem mass spectrometry; LC-MS/MS). Total polar lipid concentration was highest in nutrient-replete (HN) cultures with a significant reduction in monogalactosyldiacylglycerol (MGDG), phosphatidylglycerol (PG), phosphatidylcholine (PC), and phosphatidylethanolamine (PE) class concentrations for nutrient-deplete (LN) cultures. Moreover, reductions in the abundance of MGDG relative to total polar lipids versus an increase in the relative abundance of digalactosyldiacylglycerol (DGDG) were recorded in LN cultures. In HN cultures, polar lipid species composition remained relatively constant throughout culture with high degrees of unsaturation associated with acyl moieties. Conversely, in LN cultures lipid species composition shifted towards greater saturation of acyl moieties. Multivariate analyses revealed that changes in the abundance of a number of species contributed to the dissimilarity between LN and HN cultures but with dominant effects from certain species, e.g., reduction in MGDG 34:7 (18:3/16:4). Results demonstrate that <i>Chlorella</i> sp. significantly alters its polar lipidome in response to nutrient limitation, and this is discussed in terms of physiological significance and polar lipids production for applied microalgal production systems.
topic polar lipids
<i>Chlorella</i> sp.
LC-MS
nutrient limitation
url https://www.mdpi.com/2218-1989/9/3/39
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