Potential role of multiple carbon fixation pathways during lipid accumulation in <it>Phaeodactylum tricornutum</it>

<p>Abstract</p> <p>Background</p> <p><it>Phaeodactylum tricornutum</it> is a unicellular diatom in the class <it>Bacillariophyceae.</it> The full genome has been sequenced (<30 Mb), and approximately 20 to 30% triacylglyceride (TAG) accumulati...

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Main Authors: Valenzuela Jacob, Mazurie Aurelien, Carlson Ross P, Gerlach Robin, Cooksey Keith E, Peyton Brent M, Fields Matthew W
Format: Article
Language:English
Published: BMC 2012-06-01
Series:Biotechnology for Biofuels
Subjects:
Online Access:http://www.biotechnologyforbiofuels.com/content/5/1/40
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spelling doaj-016feed3d9d7467da9934ffd7f96a6f52020-11-25T01:55:48ZengBMCBiotechnology for Biofuels1754-68342012-06-01514010.1186/1754-6834-5-40Potential role of multiple carbon fixation pathways during lipid accumulation in <it>Phaeodactylum tricornutum</it>Valenzuela JacobMazurie AurelienCarlson Ross PGerlach RobinCooksey Keith EPeyton Brent MFields Matthew W<p>Abstract</p> <p>Background</p> <p><it>Phaeodactylum tricornutum</it> is a unicellular diatom in the class <it>Bacillariophyceae.</it> The full genome has been sequenced (<30 Mb), and approximately 20 to 30% triacylglyceride (TAG) accumulation on a dry cell basis has been reported under different growth conditions. To elucidate <it>P. tricornutum</it> gene expression profiles during nutrient-deprivation and lipid-accumulation, cell cultures were grown with a nitrate to phosphate ratio of 20:1 (N:P) and whole-genome transcripts were monitored over time via RNA-sequence determination.</p> <p>Results</p> <p>The specific Nile Red (NR) fluorescence (NR fluorescence per cell) increased over time; however, the increase in NR fluorescence was initiated before external nitrate was completely exhausted. Exogenous phosphate was depleted before nitrate, and these results indicated that the depletion of exogenous phosphate might be an early trigger for lipid accumulation that is magnified upon nitrate depletion. As expected, many of the genes associated with nitrate and phosphate utilization were up-expressed. The diatom-specific cyclins <it>cyc</it>7 and <it>cyc</it>10 were down-expressed during the nutrient-deplete state, and cyclin B1 was up-expressed during lipid-accumulation after growth cessation. While many of the genes associated with the C3 pathway for photosynthetic carbon reduction were not significantly altered, genes involved in a putative C4 pathway for photosynthetic carbon assimilation were up-expressed as the cells depleted nitrate, phosphate, and exogenous dissolved inorganic carbon (DIC) levels. <it>P. tricornutum</it> has multiple, putative carbonic anhydrases, but only two were significantly up-expressed (2-fold and 4-fold) at the last time point when exogenous DIC levels had increased after the cessation of growth. Alternative pathways that could utilize HCO<sub>3</sub><sup>-</sup> were also suggested by the gene expression profiles (<it>e.g</it>., putative propionyl-CoA and methylmalonyl-CoA decarboxylases).</p> <p>Conclusions</p> <p>The results indicate that <it>P. tricornutum</it> continued carbon dioxide reduction when population growth was arrested and different carbon-concentrating mechanisms were used dependent upon exogenous DIC levels. Based upon overall low gene expression levels for fatty acid synthesis, the results also suggest that the build-up of precursors to the acetyl-CoA carboxylases may play a more significant role in TAG synthesis rather than the actual enzyme levels of acetyl-CoA carboxylases <it>per se</it>. The presented insights into the types and timing of cellular responses to inorganic carbon will help maximize photoautotrophic carbon flow to lipid accumulation.</p> http://www.biotechnologyforbiofuels.com/content/5/1/40AlgaeDiatomLipid-accumulationTranscriptomicsBiofuelCarbon fixationRNA-seqBio-oil
collection DOAJ
language English
format Article
sources DOAJ
author Valenzuela Jacob
Mazurie Aurelien
Carlson Ross P
Gerlach Robin
Cooksey Keith E
Peyton Brent M
Fields Matthew W
spellingShingle Valenzuela Jacob
Mazurie Aurelien
Carlson Ross P
Gerlach Robin
Cooksey Keith E
Peyton Brent M
Fields Matthew W
Potential role of multiple carbon fixation pathways during lipid accumulation in <it>Phaeodactylum tricornutum</it>
Biotechnology for Biofuels
Algae
Diatom
Lipid-accumulation
Transcriptomics
Biofuel
Carbon fixation
RNA-seq
Bio-oil
author_facet Valenzuela Jacob
Mazurie Aurelien
Carlson Ross P
Gerlach Robin
Cooksey Keith E
Peyton Brent M
Fields Matthew W
author_sort Valenzuela Jacob
title Potential role of multiple carbon fixation pathways during lipid accumulation in <it>Phaeodactylum tricornutum</it>
title_short Potential role of multiple carbon fixation pathways during lipid accumulation in <it>Phaeodactylum tricornutum</it>
title_full Potential role of multiple carbon fixation pathways during lipid accumulation in <it>Phaeodactylum tricornutum</it>
title_fullStr Potential role of multiple carbon fixation pathways during lipid accumulation in <it>Phaeodactylum tricornutum</it>
title_full_unstemmed Potential role of multiple carbon fixation pathways during lipid accumulation in <it>Phaeodactylum tricornutum</it>
title_sort potential role of multiple carbon fixation pathways during lipid accumulation in <it>phaeodactylum tricornutum</it>
publisher BMC
series Biotechnology for Biofuels
issn 1754-6834
publishDate 2012-06-01
description <p>Abstract</p> <p>Background</p> <p><it>Phaeodactylum tricornutum</it> is a unicellular diatom in the class <it>Bacillariophyceae.</it> The full genome has been sequenced (<30 Mb), and approximately 20 to 30% triacylglyceride (TAG) accumulation on a dry cell basis has been reported under different growth conditions. To elucidate <it>P. tricornutum</it> gene expression profiles during nutrient-deprivation and lipid-accumulation, cell cultures were grown with a nitrate to phosphate ratio of 20:1 (N:P) and whole-genome transcripts were monitored over time via RNA-sequence determination.</p> <p>Results</p> <p>The specific Nile Red (NR) fluorescence (NR fluorescence per cell) increased over time; however, the increase in NR fluorescence was initiated before external nitrate was completely exhausted. Exogenous phosphate was depleted before nitrate, and these results indicated that the depletion of exogenous phosphate might be an early trigger for lipid accumulation that is magnified upon nitrate depletion. As expected, many of the genes associated with nitrate and phosphate utilization were up-expressed. The diatom-specific cyclins <it>cyc</it>7 and <it>cyc</it>10 were down-expressed during the nutrient-deplete state, and cyclin B1 was up-expressed during lipid-accumulation after growth cessation. While many of the genes associated with the C3 pathway for photosynthetic carbon reduction were not significantly altered, genes involved in a putative C4 pathway for photosynthetic carbon assimilation were up-expressed as the cells depleted nitrate, phosphate, and exogenous dissolved inorganic carbon (DIC) levels. <it>P. tricornutum</it> has multiple, putative carbonic anhydrases, but only two were significantly up-expressed (2-fold and 4-fold) at the last time point when exogenous DIC levels had increased after the cessation of growth. Alternative pathways that could utilize HCO<sub>3</sub><sup>-</sup> were also suggested by the gene expression profiles (<it>e.g</it>., putative propionyl-CoA and methylmalonyl-CoA decarboxylases).</p> <p>Conclusions</p> <p>The results indicate that <it>P. tricornutum</it> continued carbon dioxide reduction when population growth was arrested and different carbon-concentrating mechanisms were used dependent upon exogenous DIC levels. Based upon overall low gene expression levels for fatty acid synthesis, the results also suggest that the build-up of precursors to the acetyl-CoA carboxylases may play a more significant role in TAG synthesis rather than the actual enzyme levels of acetyl-CoA carboxylases <it>per se</it>. The presented insights into the types and timing of cellular responses to inorganic carbon will help maximize photoautotrophic carbon flow to lipid accumulation.</p>
topic Algae
Diatom
Lipid-accumulation
Transcriptomics
Biofuel
Carbon fixation
RNA-seq
Bio-oil
url http://www.biotechnologyforbiofuels.com/content/5/1/40
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