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光照和氮供应对三种原始底栖硅藻菌株光合效率和脂肪酸含量的影响。

Effects of light and nitrogen availability on photosynthetic efficiency and fatty acid content of three original benthic diatom strains.

机构信息

Université de Nantes, Laboratoire Mer Molécules Santé, Nantes, France.

PBA-IFREMER, Nantes, France.

出版信息

PLoS One. 2019 Nov 6;14(11):e0224701. doi: 10.1371/journal.pone.0224701. eCollection 2019.

Abstract

Microalgal biotechnology has gained considerable importance in recent decades. Applications range from simple biomass production for food and animal feed to valuable products for fuel, pharmaceuticals, health, biomolecules and materials relevant to nanotechnology. There are few reports of the exploration of wider microalgae biodiversity in the literature on high value microalgal compounds, however, because it is believed that there is little to be gained in terms of biomass productivity by examining new strains. Still, without diversity, innovation in biotechnology applications is currently limited. Using microalgal diversity is a very promising way to match species and processes for a specific biotechnological application. In this context, three benthic marine diatom strains (Entomoneis paludosa NCC18.2, Nitzschia alexandrina NCC33, and Staurosira sp NCC182) were selected for their lipid production and growth capacities. Using PAM fluorometry and FTIR spectroscopy, this study investigated the impact of nitrogen repletion and depletion as well as light intensity (30, 100, and 400 μmol.photons.m-2.s-1) on their growth, photosynthetic performance and macromolecular content, with the aim of improving the quality of their lipid composition. Results suggest that under high light and nitrogen limitation, the photosynthetic machinery is negatively impacted, leading cells to reduce their growth and accumulate lipids and/or carbohydrates. However, increasing lipid content under stressful conditions does not increase the production of lipids of interest: PUFA, ARA and EPA production decreases. Culture conditions to optimize production of such fatty acids in these three original strains led to a balance between economic and ecophysiological constraints: low light and no nitrogen limitation led to better photosynthetic capacities associated with energy savings, and hence a more profitable approach.

摘要

微藻生物技术在近几十年得到了相当大的重视。其应用范围从简单的生物质生产,用于食品和动物饲料,到有价值的产品,如燃料、制药、健康、生物分子和与纳米技术相关的材料。然而,在高价值微藻化合物的文献中,很少有关于探索更广泛的微藻生物多样性的报道,因为人们认为通过检查新菌株,在生物质生产力方面几乎没有什么可获得的。尽管如此,如果没有多样性,生物技术应用的创新目前仍然受到限制。利用微藻多样性是一种非常有前途的方法,可以针对特定的生物技术应用来匹配物种和过程。在这种情况下,选择了三种底栖海洋硅藻菌株(Entomoneis paludosa NCC18.2、Nitzschia alexandrina NCC33 和 Staurosira sp NCC182),因为它们具有产脂和生长能力。本研究使用 PAM 荧光法和 FTIR 光谱法,研究了氮补充和耗尽以及光照强度(30、100 和 400 μmol.photons.m-2.s-1)对它们生长、光合作用性能和大分子含量的影响,目的是改善其脂质组成的质量。结果表明,在高光和氮限制下,光合作用机制受到负面影响,导致细胞减少生长并积累脂质和/或碳水化合物。然而,在胁迫条件下增加脂质含量并不增加感兴趣的脂质的产量:PUFA、ARA 和 EPA 的产量下降。优化这三种原始菌株中这些脂肪酸生产的培养条件导致了经济和生理生态限制之间的平衡:低光和无氮限制导致与节能相关的更好的光合作用能力,从而带来更有利可图的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e8bb/6834396/5712f1682b7a/pone.0224701.g001.jpg

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