Kang Nam Seon, An Sung Min, Jo Chang Rak, Ki Hyunji, Kim Sun Young, Jeong Hyeon Gyeong, Choi Grace, Hong Ji Won, Cho Kichul
National Marine Biodiversity Institute of Korea, Seocheon 33662, Republic of Korea.
Department of Hydrogen and Renewable Energy, Kyungpook National University, Daegu 41566, Republic of Korea.
Plants (Basel). 2024 Oct 28;13(21):3008. doi: 10.3390/plants13213008.
strain AQYS21, a green microalga isolated from the brackish waters near Manseong-ri Black Sand Beach in Korea, shows considerable potential as a source of bioactive compounds and biofuels. Therefore, this study analyzed the morphological, molecular, and biochemical characteristics of this strain; optimized its cultivation conditions; and evaluated its suitability for biodiesel production. Morphological analysis revealed characteristics typical of the genus: spherical to ellipsoidal cells with pyrenoid starch plates and mucilage-embedded coenobia. Additionally, features not previously reported in other strains were observed. These included young cells with meridional ribs and an asymmetric spindle-shaped form with one or two pointed ends. Molecular analysis using small-subunit rDNA and A sequences confirmed the identification of the strain AQYS21. This strain showed robust growth across a wide temperature range, with optimal conditions at 24 °C and 88 µmol ms photon flux density. It was particularly rich in ω-3 α-linolenic acid and palmitic acid. Furthermore, its biodiesel properties indicated its suitability for biodiesel formulations. The biomass of this microalga may serve as a viable feedstock for biodiesel production and a valuable source of ω-3 fatty acids. These findings reveal new morphological characteristics of , enhancing our understanding of the species.
菌株AQYS21是从韩国万城里黑沙滩附近的咸淡水中分离出的一种绿色微藻,作为生物活性化合物和生物燃料的来源具有相当大的潜力。因此,本研究分析了该菌株的形态、分子和生化特性;优化了其培养条件;并评估了其用于生物柴油生产的适用性。形态学分析揭示了该属的典型特征:具有蛋白核淀粉板和粘液包埋的群体的球形至椭圆形细胞。此外,还观察到了其他菌株以前未报道过的特征。这些特征包括具有纵向肋条的幼细胞和具有一个或两个尖端的不对称纺锤形。使用小亚基rDNA和A序列进行的分子分析证实了菌株AQYS21的鉴定。该菌株在很宽的温度范围内都能强劲生长,最佳条件是24°C和88 µmol m⁻² s⁻¹的光子通量密度。它特别富含ω-3α-亚麻酸和棕榈酸。此外,其生物柴油特性表明它适用于生物柴油配方。这种微藻的生物质可以作为生物柴油生产的可行原料和ω-3脂肪酸的宝贵来源。这些发现揭示了该物种的新形态特征,增进了我们对该物种的了解。