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首页> 外文期刊>Progress in Lipid Research: An International Journal >Innovations in improving lipid production: Algal chemical genetics
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Innovations in improving lipid production: Algal chemical genetics

机译:改善脂质生产的创新:藻类化学遗传学

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Perturbation of a biological system with small molecules to achieve a desired phenotype or activity is commonly referred as chemical genetics. In pharmaceutical discovery, this approach is most often employed in target-based screening but in plants systems the focus is primarily on phenotypic selection for commercially relevant phenotype generation such as crop improvement or disease and pathogen resistance. Likewise, algae are considered feedstock organisms for viable and sustainable biofuels and other high value products with commercial applications. Algal triacylglycerol synthesis is therefore an important target for chemical genetics using high throughput technologies. In this review, efforts are directed towards summarizing our present understanding of the regulation of algal triacylglycerol biosynthesis, highlighting critical enzymes in lipid and carbon metabolism that may be manipulated to increase lipid metabolism in algae. These enzymes and pathways are targets for chemical genetics with the focus on selection of small molecules as tools to improve triacylglycerol storage. Using case studies, we summarize how chemical genetics is being used in plant and microalgal systems to address these critical problems.
机译:具有小分子的生物系统的扰动,以获得所需的表型或活性通常被称为化学遗传学。在药物发现中,这种方法最常在基于目标的筛选中使用,但在植物系统中,重点主要是在商业上相关表型产生的表型选择,例如作物改善或疾病和病原体抗性。同样地,藻类被认为是用于可行性和可持续的生物燃料和其他具有商业应用的高价值产品的原料生物。因此,藻类三酰基甘油合成是使用高通量技术的化学遗传学的重要靶标。在本文中,努力总结我们对藻类三酰基甘油生物合成调节的了解,突出了可能被操纵的脂质和碳代谢中的关键酶以增加藻类中的脂质代谢。这些酶和途径是化学遗传学的靶标,重点是选择小分子作为改善三酰基甘油储存的工具。使用案例研究,我们总结了如何在植物和微藻系统中使用化学遗传学来解决这些关键问题。

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