Literature DB >> 31782088

Effects of Excess and Limited Phosphate on Biomass, Lipid and Fatty Acid Contents and the Expression of Four Fatty Acid Desaturase Genes in the Tropical Selenastraceaen Messastrum gracile SE-MC4.

Kaben Anne-Marie1,2, Willy Yee1, Saw Hong Loh1, Ahmad Aziz1, Thye San Cha3,4.   

Abstract

In this study, the effects of limited and excess phosphate on biomass content, oil content, fatty acid profile and the expression of three fatty acid desaturases in Messastrum gracile SE-MC4 were determined. It was found that total biomass (0.67-0.83 g L-1), oil content (30.99-38.08%) and the duration for cells to reach stationary phase (25-27 days) were not considerably affected by phosphate limitation. However, excess phosphate slightly reduced total biomass and oil content to 0.50 g L-1 and 25.36% respectively. The dominant fatty acids in M. gracile, pamitic acid (C16:0) and oleic acid (C18:1) which constitute more than 81% of the total fatty acids remained relatively high and constant across all phosphate concentrations. Reduction of phosphate concentration to 25% and below significantly increased total MUFA, whereas increasing phosphate concentration to ≥ 50% and ≥ 100% significantly increased total SFA and PUFA content respectively. The expression of omega-3 fatty acid desaturase (ω-3 FADi1, ω-3 FADi2) and omega-6 fatty acid desaturase (ω-6 FAD) was increased under phosphate limitation, especially at ≤ 12.5% phosphate, whereas levels of streoyl-ACP desaturase (SAD) transcripts were relatively unchanged across all phosphate concentrations. The first isoform of ω-3 FAD (ω-3 FADi) displayed a binary upregulation under limited (≤ 12.5%) and excess (200%) phosphate. The expression of ω-6 FAD, ω-3 FAD and SAD were inconsistent with the accumulation of oleic acid (C18:1), linoleic acid (C18:2) and alpha-linolenic acid (C18:3), suggesting that these genes may be regulated indirectly by phosphate availability via post-transcriptional or post-translational mechanisms.

Entities:  

Keywords:  Biodiesel; Fatty acid desaturase; Microalgae; Nutrient starvation; Phosphorus limitation

Year:  2019        PMID: 31782088     DOI: 10.1007/s12010-019-03182-z

Source DB:  PubMed          Journal:  Appl Biochem Biotechnol        ISSN: 0273-2289            Impact factor:   2.926


  4 in total

1.  A brief period of darkness induces changes in fatty acid biosynthesis towards accumulation of saturated fatty acids in Chlorella vulgaris UMT-M1 at stationary growth phase.

Authors:  Thye San Cha; Willy Yee; Pamela Szu Phin Phua; Saw Hong Loh; Ahmad Aziz
Journal:  Biotechnol Lett       Date:  2021-01-12       Impact factor: 2.461

2.  Diclofenac removal by the microalgae species Chlorella vulgaris, Nannochloropsis oculata, Scenedesmus acutus, and Scenedesmus obliquus.

Authors:  Danaé Samara Sánchez-Sandoval; Omar González-Ortega; Juan Vazquez-Martínez; Ramón Fernando García de la Cruz; Ruth Elena Soria-Guerra
Journal:  3 Biotech       Date:  2022-08-06       Impact factor: 2.893

3.  Enhanced fatty acid methyl esters recovery through a simple and rapid direct transesterification of freshly harvested biomass of Chlorella vulgaris and Messastrum gracile.

Authors:  Saw Hong Loh; Mee Kee Chen; Nur Syazana Fauzi; Ahmad Aziz; Thye San Cha
Journal:  Sci Rep       Date:  2021-02-01       Impact factor: 4.379

4.  Double-high in palmitic and oleic acids accumulation in a non-model green microalga, Messastrum gracile SE-MC4 under nitrate-repletion and -starvation cultivations.

Authors:  Che-Lah Wan Afifudeen; Saw Hong Loh; Ahmad Aziz; Kazutaka Takahashi; Abd Wahid Mohd Effendy; Thye San Cha
Journal:  Sci Rep       Date:  2021-01-11       Impact factor: 4.379

  4 in total

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