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Study of Total Lipidome of the Sinularia siaesensis Soft Coral

机译:Sinularia siaesensis软珊瑚的脂质体的研究

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The rapid development of lipidomics of human and higher animals stimulated the study of the lipidome of certain groups of marine organisms. Soft corals are an integral part of the tropical and cold-water ecosystems of the World Ocean, but there is almost no data on the lipidome of these animals. The total lipidome of a tropical soft coral Sinularia siaesensis (Cnidaria: Anthozoa: Octocorallia: Alcionacea) containing intracellular symbiotic microalgae (zooxanthellae) was studied by gas and liquid chromatography-mass spectrometry. The structure and content of 144 molecular species of the main classes of acyl lipids of this alcyonaria were determined, including waxes, triglycerides (TG), monoalkyldiacylglycerides (MADAG), ethanolamine, choline, serine, and inositol glycerophospholipids (PE, PC, PS, and PI), ceramide aminoethylphosphonate (CAEP), sulfoquinovosyldiacylglyceride (SQDG), and mono- and digalactosyldiacylglycerides (MGDG and DGDG). The main components of S. siaesensis lipids were waxes 16:0/16:0, 16:0/18:0, and 18:0/16:0; TG 16:0/16:0/16:0 and 16:2/16:0/16:0; MADAG 18:0e/16:0/16:0, 16:0e/16:0/18:0, and 16:0e/16:0/16:0; and PS 18:0e/24:5, lyso-PC 18:0e, PE 18:1e/20:4, PC 18:0e/20:4, CAEP 18:2b/16:0, SQDG 14:0/16:0, and PI 18:0/24:5. The dominance of saturated waxes in reserve lipids is a species-specific feature of tropical alcyonarians. Waxes are synthesized in the host organism, and zooxanthellae can increase the proportion of saturated waxes by transferring saturated fatty acids (FA). The residues of polyunsaturated FA (PUFA) are found in the molecules of TG and MADAG, mainly in the sn-1 and sn-2 positions, respectively. Detection of MADAG with residues of marker FA of zooxanthellae (18:0e/18:3/16:0, 18:0e/18:4/16:0, and 16:0e/18:3/16:0) confirms the transfer of PUFA from the symbionts to the host. Tetracosapolyenoic FA, which is a chemotaxonomic markers of octocorals, are concentrated in molecular species of PS and PI. Most molecular species of PE, PC, an
机译:人类和更高动物脂类动物的快速发展刺激了某些海洋生物组脂质体的研究。软珊瑚是世界海洋热带和冷水生态系统的一个组成部分,但这些动物的脂质体几乎没有数据。通过气体和液相色谱 - 质谱法研究了热带软珊瑚Sinularia siaEsensis(Cnidaria:Anthozoa:octocorallia:alcocoRallia:alcoxantheela)的总脂质体。测定144个分子种类的酰基脂质的酰基脂质的结构和含量,包括蜡,甘油三酯(Tg),单烷基二烷基甘油(Madag),乙醇胺,胆碱,丝氨酸和肌醇甘油磷脂(PE,PC,PS,和PI),神经酰胺氨基乙基膦酸盐(CAEP),磺喹啉二亚乙二基甘油酯(SQDG)和单 - 和二甲基二酯(MGDG和DGDG)。 S.Siaesensis脂质的主要成分是蜡蜡16:0/16:0,16:0/18:0,和18:0/16:0; TG 16:0/16:0/16:0和16:2/16:0/16:0; Madag 18:0E / 16:0/16:0,16:0E / 16:0/18:0和16:0E / 16:0/16:0;和PS 18:0E / 24:5,LYSO-PC 18:0E,PE 18:1E / 20:4,PC 18:0E / 20:4,CAEP 18:2B / 16:0,SQDG 14:0/16 :0,和PI 18:0/24:5。储备脂质中饱和蜡的优势是热带亚猴的物种特征。在宿主生物中合成蜡,通过转移饱和脂肪酸(FA),Zooxanthellae可以增加饱和蜡的比例。多不饱和Fa(PUFA)的残留物分别在TG和MADAG分子中发现,主要在SN-1和SN-2位置。检测Zooxanthellae的标记Fa残留麦格掌(18:0E / 18:3/16:0,18:0E / 18:4/16:0和16:0E / 18:3/16:0)证实了从Symbion转移到主机的PUFA。 Tetracosapolyeno形ence,其是八陶瓷的趋化学标记物,以PS和PI的分子种类浓缩。 PE,PC大多数分子种类,

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