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牛磺酸介导的基因转录和细胞膜通透性增强了新分离的紫红红曲霉菌生物乙醇和红曲氮杂蒽酮色素的联产。

Taurine-mediated gene transcription and cell membrane permeability reinforced co-production of bioethanol and Monascus azaphilone pigments for a newly isolated Monascus purpureus.

作者信息

Yi Xia, Han Jianqi, Xu Xiaoyan, Wang Yilong, Zhang Meng, Zhu Jie, He Yucai

机构信息

National-Local Joint Engineering Research Center for Biomass Refining and High-Quality Utilization, Institute of Urban and Rural Mining, Changzhou Key Laboratory of Biomass Green, Safe & High Value Utilization Technology, School of Petrochemical Engineering, Changzhou University, Changzhou, 213164, Jiangsu, China.

School of Pharmacy & School of Biological and Food Engineering, Changzhou University, Changzhou, 213164, Jiangsu, China.

出版信息

Biotechnol Biofuels Bioprod. 2024 May 3;17(1):59. doi: 10.1186/s13068-024-02511-7.

Abstract

BACKGROUND

Taurine, a semi-essential micronutrient, could be utilized as a sulfur source for some bacteria; however, little is known about its effect on the accumulation of fermentation products. Here, it investigated the effect of taurine on co-production of bioethanol and Monascus azaphilone pigments (MonAzPs) for a fungus.

RESULTS

A newly isolated fungus of 98.92% identity with Monascus purpureus co-produced 23.43 g/L bioethanol and 66.12, 78.01 and 62.37 U/mL red, yellow and orange MonAzPs for 3 d in synthetic medium (SM). Taurine enhanced bioethanol titer, ethanol productivity and ethanol yield at the maximum by 1.56, 1.58 and 1.60 times than those of the control in corn stover hydrolysates (CSH), and red, yellow and orange MonAzPs were raised by 1.24, 1.26 and 1.29 times, respectively. Taurine was consumed extremely small quantities for M. purpureus and its promotional effect was not universal for the other two biorefinery fermenting strains. Taurine intensified the gene transcription of glycolysis (glucokinase, phosphoglycerate mutase, enolase and alcohol dehydrogenase) and MonAzPs biosynthesis (serine hydrolases, C-11-ketoreductase, FAD-dependent monooxygenase, 4-O-acyltransferase, deacetylase, NAD(P)H-dependent oxidoredutase, FAD-dependent oxidoredutase, enoyl reductase and fatty acid synthase) through de novo RNA-Seq assays. Furthermore, taurine improved cell membrane permeability through changing cell membrane structure by microscopic imaging assays.

CONCLUSIONS

Taurine reinforced co-production of bioethanol and MonAzPs by increasing gene transcription level and cell membrane permeability for M. purpureus. This work would offer an innovative, efficient and taurine-based co-production system for mass accumulation of the value-added biofuels and biochemicals from lignocellulosic biomass.

摘要

背景

牛磺酸是一种半必需的微量营养素,可作为某些细菌的硫源;然而,关于其对发酵产物积累的影响知之甚少。在此,研究了牛磺酸对一种真菌联产生物乙醇和红曲菌嗜氮色素(MonAzPs)的影响。

结果

一株与紫色红曲菌相似度为98.92%的新分离真菌在合成培养基(SM)中3天联产23.43 g/L生物乙醇以及66.12、78.01和62.37 U/mL的红色、黄色和橙色MonAzPs。在玉米秸秆水解物(CSH)中,牛磺酸使生物乙醇滴度、乙醇生产率和乙醇产量最高分别比对照提高1.56、1.58和1.60倍,红色、黄色和橙色MonAzPs分别提高1.24、1.26和1.29倍。紫色红曲菌消耗的牛磺酸量极少,其促进作用对其他两种生物炼制发酵菌株并不普遍。通过从头RNA测序分析,牛磺酸增强了糖酵解(葡萄糖激酶、磷酸甘油酸变位酶、烯醇化酶和乙醇脱氢酶)和MonAzPs生物合成(丝氨酸水解酶、C-11-酮还原酶、FAD依赖的单加氧酶、4-O-酰基转移酶、脱乙酰酶、NAD(P)H依赖的氧化还原酶、FAD依赖的氧化还原酶、烯酰还原酶和脂肪酸合酶)的基因转录。此外,通过显微镜成像分析,牛磺酸通过改变细胞膜结构提高了细胞膜通透性。

结论

牛磺酸通过提高紫色红曲菌的基因转录水平和细胞膜通透性,增强了生物乙醇和MonAzPs的联产。这项工作将为从木质纤维素生物质中大量积累增值生物燃料和生物化学品提供一种创新、高效且基于牛磺酸的联产系统。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0fa5/11069175/6418bb3dda7c/13068_2024_2511_Fig1_HTML.jpg

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