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首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >Investigating mixotrophic metabolism in the model diatom Phaeodactylum tricornutum
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Investigating mixotrophic metabolism in the model diatom Phaeodactylum tricornutum

机译:调查模型硅藻肌肌瘤三角形三乳蛛的混纺代谢

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摘要

Diatoms are prominent marine microalgae, interesting not only from an ecological point of view, but also for their possible use in biotechnology applications. They can be cultivated in phototrophic conditions, using sunlight as the sole energy source. Some diatoms, however, can also grow in a mixotrophic mode, wherein both light and external reduced carbon contribute to biomass accumulation. In this study, we investigated the consequences of mixotrophy on the growth and metabolism of the pennate diatom Phaeodactylum tricornutum, using glycerol as the source of reduced carbon. Transcriptomics, metabolomics, metabolic modelling and physiological data combine to indicate that glycerol affects the central-carbon, carbon-storage and lipid metabolism of the diatom. In particular, provision of glycerol mimics typical responses of nitrogen limitation on lipid metabolism at the level of triacylglycerol accumulation and fatty acid composition. The presence of glycerol, despite provoking features reminiscent of nutrient limitation, neither diminishes photosynthetic activity nor cell growth, revealing essential aspects of the metabolic flexibility of these microalgae and suggesting possible biotechnological applications of mixotrophy.
机译:硅藻是一种重要的海洋微藻,不仅从生态学的角度来看很有趣,而且在生物技术应用中也有可能得到应用。它们可以在光营养条件下培养,利用阳光作为唯一的能源。然而,一些硅藻也可以在混合营养模式下生长,其中光和外部还原碳都有助于生物量的积累。在这项研究中,我们以甘油为还原碳源,研究了混合营养对三角褐指藻生长和代谢的影响。转录组学、代谢组学、代谢建模和生理数据结合起来表明,甘油影响硅藻的中心碳、碳储存和脂质代谢。特别是,在三酰甘油积累和脂肪酸组成水平上,甘油的供应模拟了氮限制对脂质代谢的典型反应。甘油的存在,尽管具有令人联想到营养限制的特征,但既不会降低光合活性,也不会降低细胞生长,揭示了这些微藻代谢灵活性的基本方面,并暗示了混合营养可能的生物技术应用。

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  • 作者单位

    Fermentalg SA F-33500 Libourne France;

    UPMC Sorbonne Univ Inst Biol Paris Seine Lab Biol Computat &

    Quantitat CNRS 15 Rue Ecole Med F-75006 Paris France;

    Oxford Brookes Univ Dept Biol &

    Med Sci Oxford OX3 0BP England;

    UGA CNRS Lab Physiol Cellulaire &

    Vegetale Commissariat Energie Atom &

    Energies Alternat CEA INRA Inst Biosci &

    Biotechnol Grenoble BIG CEA Gr F-38000 Grenoble France;

    UGA CNRS Lab Physiol Cellulaire &

    Vegetale Commissariat Energie Atom &

    Energies Alternat CEA INRA Inst Biosci &

    Biotechnol Grenoble BIG CEA Gr F-38000 Grenoble France;

    Max Planck Inst Mol Pflanzenphysiol Muhlenberg 1 D-14476 Golm Germany;

    UGA CNRS Lab Physiol Cellulaire &

    Vegetale Commissariat Energie Atom &

    Energies Alternat CEA INRA Inst Biosci &

    Biotechnol Grenoble BIG CEA Gr F-38000 Grenoble France;

    Max Planck Inst Mol Pflanzenphysiol Muhlenberg 1 D-14476 Golm Germany;

    UGA CNRS Lab Physiol Cellulaire &

    Vegetale Commissariat Energie Atom &

    Energies Alternat CEA INRA Inst Biosci &

    Biotechnol Grenoble BIG CEA Gr F-38000 Grenoble France;

    UPMC Sorbonne Univ Inst Biol Paris Seine Lab Biol Computat &

    Quantitat CNRS 15 Rue Ecole Med F-75006 Paris France;

    Fermentalg SA F-33500 Libourne France;

    Fermentalg SA F-33500 Libourne France;

    Oxford Brookes Univ Dept Biol &

    Med Sci Oxford OX3 0BP England;

    UGA CNRS Lab Physiol Cellulaire &

    Vegetale Commissariat Energie Atom &

    Energies Alternat CEA INRA Inst Biosci &

    Biotechnol Grenoble BIG CEA Gr F-38000 Grenoble France;

    UGA CNRS Lab Physiol Cellulaire &

    Vegetale Commissariat Energie Atom &

    Energies Alternat CEA INRA Inst Biosci &

    Biotechnol Grenoble BIG CEA Gr F-38000 Grenoble France;

    UGA CNRS Lab Physiol Cellulaire &

    Vegetale Commissariat Energie Atom &

    Energies Alternat CEA INRA Inst Biosci &

    Biotechnol Grenoble BIG CEA Gr F-38000 Grenoble France;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物科学 ;
  • 关键词

    mixotrophy; metabolism; marine diatoms; omics analyses; photosynthesis;

    机译:混纺;新陈代谢;海洋硅藻;OMICS分析;光合作用;

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