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Feasibility and transcriptomic analysis of betalain production by biomembrane surface fermentation of Penicillium novae- zelandiae

机译:新青霉- zelandiae 的生物膜表面发酵生产甜菜碱的可行性和转录组学分析

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摘要

In this study, a biomembrane surface fermentation was used to produce red pigments of Penicillium novae - zelandiae , and the significant improvement in pigment production by the addition of 0.4?g/L of tyrosine demonstrated that the red pigments probably contained betalain. Therefore, one red pigment was purified, and identified as 2-decarboxybetanin by high-resolution mass spectrometry (MS) and MS/MS analysis. Transcriptomic analysis revealed the differentially expressed genes and metabolic profile of P. novae - zelandiae in response to different cultivations and exhibited the complete biosynthetic pathway of 2-decarboxybetanin in P. novae - zelandiae . Betalains are important water-soluble nitrogen-containing food coloring agents, obtained mainly from beetroot by chemical extraction. This paper is the first report about the production of betalain by microbial fermentation, and results exhibit the possible use of fungal fermentation in future 2-decarboxybetanin production. Electronic supplementary material The online version of this article (10.1186/s13568-017-0529-4) contains supplementary material, which is available to authorized users.
机译:在这项研究中,生物膜表面发酵被用于生产新青霉-西兰氏霉菌的红色颜料,并且通过添加0.4?g / L酪氨酸显着改善了颜料产量,表明该红色颜料可能含有甜菜碱。因此,纯化了一种红色颜料,并通过高分辨率质谱(MS)和MS / MS分析将其识别为2-脱羧甜菜碱。转录组分析显示,新西兰疫霉菌响应不同的栽培基因差异表达基因和代谢谱,并显示了新西兰疫霉菌中的2-decarboxybetanin完整的生物合成途径。甜菜碱是重要的水溶性含氮食用色素,主要通过化学提取从甜菜根中获得。本文是有关微生物发酵生产甜菜碱的第一份报告,结果表明真菌发酵可能在将来的2-脱羧甜菜碱生产中使用。电子补充材料本文的在线版本(10.1186 / s13568-017-0529-4)包含补充材料,授权用户可以使用。

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