Influence of GABA (Gamma-aminobutyric acid) supplementation on biomass, pigments, lipid and protein content of Pseudochlorella pringsheimii under salinity stress

IF 3.6 Q2 BIOTECHNOLOGY & APPLIED MICROBIOLOGY Current Research in Biotechnology Pub Date : 2024-01-01 DOI:10.1016/j.crbiot.2024.100223
Pooja Bhatnagar , Prateek Gururani , Jyoti Rawat , Krishna Kumar Jaiswal , Pankaj Gautam , Manisha Nanda , P.K. Chauhan , Mikhail S. Vlaskin , Vinod Kumar
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Abstract

Microalgae synthesize valuable compounds like pigments, proteins, lipids and carbohydrates under stress conditions, which make them an interesting feedstock for different industries. The effect of GABA (Gamma-aminobutyric acid) supplementation under salinity stress conditions was investigated on growth, biomass, pigments, lipid and protein content of Pseudochlorella pringsheimii. Between the varying treatments, 5 g/L NaCl combined with 2.5 mM GABA was observed as the best concentration for stimulating the production of bioactive compounds in microalga P. pringsheimii. The results revealed a significant increase in biomass content by 93.24 %, compared with the control. Moreover, a significant increase was also observed in the production of chlorophyll (chl) a, chlorophyll (chl) b, total carotenoids (car), protein and lipid content by 112.15 %, 84 %, 29.94 %, 23.08 % and 35.63 %, respectively. However, as compared to control and salinity stress alone, the total carbohydrate content was sharply declined by 52.30 % and 101.79 % in GABA supplemented groups. In addition, the presence of fatty acids and different biomolecules were also confirmed by GC–MS and FTIR analysis. The existence of different essential and non-essential amino acids in substantial amounts was validated by UHPLC analysis. Collectively, the present work contributes to a novel strategy for boosting the coproduction of biomass, lipids, proteins and pigments in P. pringsheimii under unfavorable conditions.

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盐度胁迫下补充 GABA(γ-氨基丁酸)对假小球藻生物量、色素、脂质和蛋白质含量的影响
微藻类在胁迫条件下可合成色素、蛋白质、脂类和碳水化合物等有价值的化合物,这使它们成为不同行业的一种有趣的原料。本研究考察了在盐度胁迫条件下补充 GABA(γ-氨基丁酸)对 Pseudochlorella pringsheimii 的生长、生物量、色素、脂质和蛋白质含量的影响。在不同的处理中,5 g/L NaCl 和 2.5 mM GABA 被认为是刺激微藻 P. pringsheimii 产生生物活性化合物的最佳浓度。结果显示,与对照组相比,生物量含量明显增加了 93.24%。此外,叶绿素(chl)a、叶绿素(chl)b、类胡萝卜素总量(car)、蛋白质和脂质含量也有明显增加,分别增加了 112.15 %、84 %、29.94 %、23.08 % 和 35.63 %。然而,与对照组和单独盐度胁迫组相比,补充 GABA 组的总碳水化合物含量急剧下降了 52.30 % 和 101.79 %。此外,GC-MS 和傅立叶变换红外分析也证实了脂肪酸和不同生物大分子的存在。超高效液相色谱分析验证了大量必需氨基酸和非必需氨基酸的存在。总之,目前的研究工作为在不利条件下促进 P. pringsheimii 的生物质、脂类、蛋白质和色素的共同生产提供了一种新策略。
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来源期刊
Current Research in Biotechnology
Current Research in Biotechnology Biochemistry, Genetics and Molecular Biology-Biotechnology
CiteScore
6.70
自引率
3.60%
发文量
50
审稿时长
38 days
期刊介绍: Current Research in Biotechnology (CRBIOT) is a new primary research, gold open access journal from Elsevier. CRBIOT publishes original papers, reviews, and short communications (including viewpoints and perspectives) resulting from research in biotechnology and biotech-associated disciplines. Current Research in Biotechnology is a peer-reviewed gold open access (OA) journal and upon acceptance all articles are permanently and freely available. It is a companion to the highly regarded review journal Current Opinion in Biotechnology (2018 CiteScore 8.450) and is part of the Current Opinion and Research (CO+RE) suite of journals. All CO+RE journals leverage the Current Opinion legacy-of editorial excellence, high-impact, and global reach-to ensure they are a widely read resource that is integral to scientists' workflow.
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