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首页> 外文期刊>Marine Drugs >Phosphorus-Induced Lipid Class Alteration Revealed by Lipidomic and Transcriptomic Profiling in Oleaginous Microalga Nannochloropsis sp. PJ12
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Phosphorus-Induced Lipid Class Alteration Revealed by Lipidomic and Transcriptomic Profiling in Oleaginous Microalga Nannochloropsis sp. PJ12

机译:含油微藻Nannochloropsis sp。中的脂质组和转录组分析揭示了磷诱导的脂质类改变。 PJ12

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Phytoplankton are primary producers in the marine ecosystem, where phosphorus is often a limiting factor of their growth. Hence, they have evolved strategies to recycle phosphorus by replacing membrane phospholipids with phosphorus-free lipids. However, mechanisms for replacement of lipid classes remain poorly understood. To improve our understanding, we performed the lipidomic and transcriptomic profiling analyses of an oleaginous marine microalga Nannochloropsis sp. PJ12 in response to phosphorus depletion (PD) and replenishing. In this study, by using (liquid chromatography couple with tandem mass spectrometry) LC-MS/MS-based lipidomic analysis, we show that membrane phospholipid levels are significantly reduced upon PD, while phosphorus-free betaine lipid levels are increased. However, levels of phosphorus-free photosynthetic galactolipid and sulfolipid are not increased upon PD, consistent with the reduced photosynthetic activity. RNA-seq-based transcriptomic analysis indicates that enzymes involved in phospholipid recycling and phosphorus-free lipid synthesis are upregulated, supporting the lipidomic analysis. Furthermore, enzymes involved in FASII (type II fatty acid synthesis) elongation cycle upon PD are transcriptionally downregulated. EPA (eicosapentaenoic acid) level decrease upon PD is revealed by both GC-MS (gas chromatography coupled with mass spectrometry) and LC-MS/MS-based lipidomic analyses. PD-induced alteration is reversed after phosphorus replenishing. Taken together, our results suggest that the alteration of lipid classes upon environmental change of phosphorus is a result of remodeling rather than de novo synthesis in Nannochloropsis sp. PJ12.
机译:浮游植物是海洋生态系统的主要生产者,那里的磷通常是其生长的限制因素。因此,他们开发了通过用无磷脂质代替膜磷脂来回收磷的策略。然而,对脂质类别的替换机制仍然知之甚少。为了提高我们的理解,我们对油性海洋微藻Nannochloropsis sp。进行了脂质组和转录组分析。 PJ12响应磷的消耗(PD)和补给。在这项研究中,通过使用(液相色谱与串联质谱联用)基于LC-MS / MS的脂质组学分析,我们发现PD时膜磷脂水平显着降低,而无磷甜菜碱脂质水平则升高。但是,PD时无磷光合半乳糖脂和硫脂的水平并未增加,这与光合活性的降低相一致。基于RNA序列的转录组分析表明,参与磷脂回收和无磷脂质合成的酶被上调,从而支持脂质组学分析。此外,参与PD时FASII(II型脂肪酸合成)延长周期的酶在转录上被下调。通过GC-MS(气相色谱与质谱联用)和基于LC-MS / MS的脂质组分析均可揭示出PD时EPA(二十碳五烯酸)水平降低。磷补充后,PD诱导的改变被逆转。综上所述,我们的结果表明,磷的环境变化对脂质种类的改变是Nannochloropsis sp。中重塑而不是从头合成的结果。 PJ12。

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