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Photosynthetic Accumulation of Lutein in Auxenochlorella protothecoides after Heterotrophic Growth

机译:异养生长后原生态小球藻中叶黄素的光合积累

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In order to enhance lutein accumulation and to explain the reasons for the difference in lutein accumulation under photoautotrophic and heterotrophic conditions, different culture modes and the associated transcriptome profiles were investigated in Auxenochlorella protothecoides . The heterotrophic-photoautotrophic transition culture mode was investigated for lutein accumulation, changing from organic carbon to increase biomass in dark fermentation to irradiation under nitrogen rich conditions. This strategy increased the lutein content 10 times along with chloroplast regeneration and little biomass loss in 48 h. The highest lutein productivity and production in the heterotrophic-photoautotrophic transition culture reached 12.36 mg/L/day and 34.13 mg/L respectively within seven days. Furthermore, compared to the photoautotrophic conditions, most genes involved in lutein biosynthesis and photosystem generation were down-regulated during heterotrophic growth. By contrast, two β-ring hydroxylases were transiently upregulated, while violaxanthin de-epoxidase and zeaxanthin epoxidase were mostly downregulated, which explained the extremely low lutein content of heterotrophic cells. Nevertheless, the lutein proportion in total carotenoids reached nearly 100%. This study is the first to our knowledge to report on a comparative transcriptome analysis of lutein biosynthesis, and it provides a promising strategy to boost lutein production in A. protothecoides .
机译:为了增强叶黄素的积累并解释光合自养和异养条件下叶黄素积累差异的原因,研究了原副球藻的不同培养模式和相关的转录组谱。研究了叶绿素积累的异养-光养养过渡培养模式,其从黑暗发酵中的有机碳改变为增加生物量,再到富氮条件下的辐照。该策略在48小时内将叶黄素含量提高了10倍,同时叶绿体再生,且几乎没有生物量损失。在异养-光养自养过渡培养物中,最高的叶黄素生产率和产量在7天内分别达到12.36 mg / L / day和34.13 mg / L。此外,与光合自养条件相比,大多数叶黄素生物合成和光系统生成相关基因在异养生长过程中均被下调。相比之下,两个β环羟化酶被瞬时上调,而紫黄质脱环氧酶和玉米黄质环氧酶大多被下调,这说明异养细胞的叶黄素含量极低。尽管如此,叶黄素在总类胡萝卜素中所占的比例达到了近100%。这项研究是我们所知的第一个有关叶黄素生物合成的比较转录组分析的报告,它提供了一种有希望的策略来增加原壳拟南芥中的叶黄素产量。

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