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Modulation of lipid biosynthesis by stress in diatoms

机译:硅藻胁迫调节脂质生物合成

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摘要

Diatoms are responsible for up to 40% of the carbon fixation in our oceans. The fixed carbon is moved through carbon metabolism towards the synthesis of organic molecules that are consumed through interlocking foodwebs, and this process is strongly impacted by the abiotic environment. However, it has become evident that diatoms can be used as 'platform' organisms for the production of high valuable bio-products such as lipids, pigments and carbohydrates where stress conditions can be used to direct carbon metabolism towards the commercial production of these compounds. In the first section of this review, some aspects of carbon metabolism in diatoms and how it is impacted by environmental factors are briefly described. The second section is focused on the biosynthesis of lipids and in particular omega-3 long-chain polyunsaturated fatty acids and how low temperature stress impacts on the production of these compounds. In a third section, we review the recent advances in bioengineering for lipid production. Finally, we discuss new perspectives for designing strains for the sustainable production of high-value lipids.
机译:硅藻责任海洋中最多40%的碳固定。固定碳通过碳代谢移动,朝向通过互锁食品消耗的有机分子的合成,并且该过程受非生物环境的强烈影响。然而,已经显而易见的是,硅藻可以用作生产高价生物产品的“平台”生物,如脂质,颜料和碳水化合物,其中应力条件可用于将碳代谢引向这些化合物的商业生产。在本综述的第一部分中,简要描述了硅藻中碳代谢的一些方面,以及如何简要描述如何受环境因素的影响。第二部分重点关注脂质的生物合成,特别是ω-3长链多不饱和脂肪酸以及低温胁迫对这些化合物的产生程度的影响程度。在第三部分中,我们审查了脂质生产生物工程的最新进展。最后,我们讨论了为可持续生产高价值脂质的菌株设计的新观点。

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