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通过生长活性分析和综合基因转录水平评估以麦麸为营养资源培养条件下的细胞反应。

Evaluation of Cell Responses of under Cultivation Using Wheat Bran as a Nutrient Resource by Analyses of Growth Activities and Comprehensive Gene Transcription Levels.

作者信息

Nakanishi Akihito, Mori Minori, Yamamoto Naotaka, Nemoto Shintaro, Kanamaru Nono, Yomogita Misaki, Omino Natsumi, Matsumoto Riri

机构信息

School of Bioscience and Biotechnology, Tokyo University of Technology, Tokyo 192-0982, Japan.

Graduate School of Bionics, Tokyo University of Technology, Tokyo 192-0982, Japan.

出版信息

Microorganisms. 2023 Oct 31;11(11):2674. doi: 10.3390/microorganisms11112674.

Abstract

Wheat bran has high nutritional values and is also cheaper than yeast nitrogen base as an important component of a medium. Although its use in microbial cultivations is expected, research and development has hardly progressed so far. In this study, with experimental BY4741, the cell responses to wheat bran as a nutrient were evaluated by analyses of cell growth, ethanol production, and comprehensive gene transcription levels. Comparing wheat bran and yeast nitrogen base, BY4741 showed specific growth rates of 0.277 ± 0.002 and 0.407 ± 0.035 as a significant difference. Additionally, wheat bran could be used as a restricted media component like yeast nitrogen base. However, in 24 h of cultivation with wheat bran and yeast nitrogen base, although conversion ratios of ethanol productions showed no significant difference at 63.0 ± 7.2% and 62.5 ± 8.2%, the ratio of cell production displayed a significant difference at 7.31 ± 0.04% and 4.90 ± 0.16%, indicating a different cell response. In fact, the comprehensive evaluation of transcription levels strongly suggested major changes in glucose metabolism. This study indicated that BY4741 could switch transcription levels efficiently to use wheat bran.

摘要

麦麸具有很高的营养价值,并且作为培养基的一种重要成分,它比酵母氮源更便宜。尽管预计它可用于微生物培养,但到目前为止研发进展甚微。在本研究中,以实验性的BY4741为对象,通过分析细胞生长、乙醇产量和综合基因转录水平,评估了细胞对作为营养物质的麦麸的反应。比较麦麸和酵母氮源,BY4741的比生长速率分别为0.277±0.002和0.407±0.035,存在显著差异。此外,麦麸可以像酵母氮源一样用作受限的培养基成分。然而,在用麦麸和酵母氮源培养24小时后,尽管乙醇产量的转化率在63.0±7.2%和62.5±8.2%时没有显著差异,但细胞产量的比率在7.31±0.04%和4.90±0.16%时显示出显著差异,表明细胞反应不同。事实上,转录水平的综合评估强烈表明葡萄糖代谢发生了重大变化。本研究表明,BY4741可以有效地切换转录水平以利用麦麸。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cf88/10673363/2054e0fbe664/microorganisms-11-02674-g001.jpg

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