Faculty of Science and Marine Environment, Universiti Malaysia Terengganu, 21030, Kuala Terengganu, Terengganu, Malaysia.
Appl Biochem Biotechnol. 2020 Aug;191(4):1653-1669. doi: 10.1007/s12010-020-03312-y. Epub 2020 Mar 21.
Abscisic acid (ABA) has been known to exist in a microalgal system and serves as one of the chemical stimuli in various biological pathways. Nonetheless, the involvement of ABA in fatty acid biosynthesis, particularly at the transcription level in microalgae is poorly understood. The objective of this study was to determine the effects of exogenous ABA on growth, total oil content, fatty acid composition, and the expression level of beta ketoacyl-ACP synthase I (KAS I) and omega-3 fatty acid desaturase (ω-3 FAD) genes in Chlorella vulgaris UMT-M1. ABA was applied to early stationary C. vulgaris cultures at concentrations of 0, 10, 20, and 80 μM for 48 h. The results showed that ABA significantly increased biomass production and total oil content. The increment of palmitic (C16:0) and stearic (C18:0) acids was coupled by decrement in linoleic (C18:2) and α-linolenic (C18:3n3) acids. Both KAS I and ω-3 FAD gene expression were downregulated, which was negatively correlated to saturated fatty acid (SFAs), but positively correlated to polyunsaturated fatty acid (PUFA) accumulations. Further analysis of both KAS I and ω-3 FAD promoters revealed the presence of multiple ABA-responsive elements (ABREs) in addition to other phytohormone-responsive elements. However, the role of these phytohormone-responsive elements in regulating KAS I and ω-3 FAD gene expression still remains elusive. This revelation might suggest that phytohormone-responsive gene regulation in C. vulgaris and microalgae as a whole might diverge from higher plants which deserve further scientific research to elucidate its functional roles.
脱落酸(ABA)已被发现存在于微藻系统中,是各种生物途径中的化学刺激物之一。然而,ABA 在外源添加条件下在脂肪酸生物合成中的作用,特别是在微藻中的转录水平,仍知之甚少。本研究的目的是确定外源 ABA 对小球藻 UMT-M1 生长、总油含量、脂肪酸组成以及β-酮酰-ACP 合酶 I(KAS I)和ω-3 脂肪酸去饱和酶(ω-3 FAD)基因表达水平的影响。将 ABA 以 0、10、20 和 80 μM 的浓度应用于早期静止期 C. vulgaris 培养物中,持续 48 h。结果表明,ABA 显著增加了生物量和总油含量。棕榈酸(C16:0)和硬脂酸(C18:0)的增加与亚油酸(C18:2)和α-亚麻酸(C18:3n3)的减少有关。KAS I 和 ω-3 FAD 基因表达均下调,这与饱和脂肪酸(SFAs)呈负相关,但与多不饱和脂肪酸(PUFA)的积累呈正相关。对 KAS I 和 ω-3 FAD 启动子的进一步分析表明,除了其他植物激素反应元件外,还存在多个 ABA 反应元件(ABREs)。然而,这些植物激素反应元件在调节 KAS I 和 ω-3 FAD 基因表达中的作用仍不清楚。这一发现可能表明,植物激素反应基因在小球藻和微藻中的调控可能与高等植物不同,值得进一步的科学研究来阐明其功能作用。