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Physiological and transcriptome analysis elucidates the metabolic mechanism of versatile Porphyridium purpureum under nitrogen deprivation for exopolysaccharides accumulation

机译:生理和转录组分析阐明了在氮剥夺氮剥夺下的多功能卟啉毒液的代谢机制,以进行泛多糖分积累

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Porphyridium purpureum is a mesophilic, unicellular red alga rich in phycoerythrin, sulfate polysaccharides, and polyunsaturated fatty acids. Nitrogen deficiency inhibited the growth of P. purpureum and resulted in yellowing of the cells and thickening of the extracellular viscousness sheath. Under nitrogen stress, the contents of total lipids and exopolysaccharides in P. purpureum were increased by 65.2% and 188.0%, respectively. We demonstrate that the immediate response of P. purpureum to nitrogen deficiency is mediated by carbon flow to polysaccharide synthesis, while the synthesis of lipids is enhanced as a permanent energy storage substance at the later stage. Based on transcriptome annotation information, we elucidate the synthesis pathway of polysaccharides from P. purpureum from the perspective of glycosyl-donor interconversion, and demonstrate that the n-6 pathway is the main synthesis pathway of polyunsaturated fatty acids. This study not only provides a production strategy for polysaccharides and fatty acids by single-celled marine red algae P. purpureum, but also provides targets for further genetic modification.
机译:Porphyridium purpureum是一种富含植物,硫酸盐多糖和多不饱和脂肪酸的嗜苯胺,单细胞红藻。缺乏缺乏抑制p. purpureum的生长,并导致细胞变黄并使细胞外粘性护套的增稠。在氮气胁迫下,P. Purpureum中总脂质和外偶糖的含量分别增加了65.2%和188.0%。我们证明,P. purpureum对缺乏缺乏症的立即响应是通过碳流向多糖合成的介导的,而在后期的永久储能物质中,脂质的合成增强。基于转录体注释信息,我们从糖基 - 供体互连的角度阐明P. purpureum的多糖的合成途径,并证明了N-6途径是多不饱和脂肪酸的主要合成途径。本研究不仅通过单细胞海洋红藻P. purpureum提供多糖和脂肪酸的生产策略,还提供了进一步遗传修饰的靶标。

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