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脯氨酸可改善高糖胁迫条件下的普鲁兰多糖生物合成。

Proline Improves Pullulan Biosynthesis Under High Sugar Stress Condition.

作者信息

Liu Keyi, Wang Junqing, Li Feng, Wang Ruiming, Zeng Qingming, Zhang Zhenxing, Liu Hongwei, Li Piwu

机构信息

School of Bioengineering, Qilu University of Technology (Shandong Academy of Sciences), Jinan 250353, China.

State Key Laboratory of Biobased Material and Green Papermaking, Qilu University of Technology (Shandong Academy of Sciences), Jinan 250353, China.

出版信息

Microorganisms. 2024 Dec 21;12(12):2657. doi: 10.3390/microorganisms12122657.

Abstract

Pullulan is an extracellular polysaccharide produced via the fermentation of . However, high sugar concentrations and hyperosmotic stress limit pullulan biosynthesis during the fermentation process. Therefore, we investigated the effects of proline supplementation on . growth and pullulan biosynthesis under high sugar and hyperosmotic stress using physiological, biochemical, and transcriptomic analyses. High sugar concentrations significantly inhibited . growth and pullulan biosynthesis. High sugar and hyperosmotic stress conditions significantly increased intracellular proline content in . . However, treatment with proline (400 mg/L proline) significantly increased biomass and pullulan yield by 10.75% and 30.06% (174.8 g/L), respectively, compared with those in the control group. To further investigate the effect of proline on the fermentation process, we performed scanning electron microscopy and examined the activities of key fermentation enzymes. Proline treatment preserved cell integrity and upregulated the activities of key enzymes involved in pullulan biosynthesis. Transcriptome analysis revealed that most differentially expressed genes in the proline group were associated with metabolic pathways, including glycolysis/gluconeogenesis, pyruvate metabolism, and sulfur metabolism. Conclusively, proline supplementation protects . against high sugar and hyperosmotic stress, providing a new theoretical basis and strategy for the efficient industrial production of pullulans.

摘要

普鲁兰多糖是通过发酵产生的一种胞外多糖。然而,高糖浓度和高渗胁迫限制了发酵过程中普鲁兰多糖的生物合成。因此,我们使用生理学、生物化学和转录组学分析方法,研究了脯氨酸添加对在高糖和高渗胁迫下生长及普鲁兰多糖生物合成的影响。高糖浓度显著抑制了生长和普鲁兰多糖的生物合成。高糖和高渗胁迫条件显著增加了细胞内脯氨酸含量。然而,与对照组相比,脯氨酸(400毫克/升脯氨酸)处理分别使生物量和普鲁兰多糖产量显著提高了10.75%和30.06%(174.8克/升)。为了进一步研究脯氨酸对发酵过程的影响,我们进行了扫描电子显微镜检查并检测了关键发酵酶的活性。脯氨酸处理保持了细胞完整性并上调了参与普鲁兰多糖生物合成的关键酶的活性。转录组分析表明,脯氨酸组中大多数差异表达基因与代谢途径相关,包括糖酵解/糖异生、丙酮酸代谢和硫代谢。总之,脯氨酸添加可保护细胞免受高糖和高渗胁迫,为普鲁兰多糖的高效工业化生产提供了新的理论基础和策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/473f/11728471/a7d805bc5ca3/microorganisms-12-02657-g001.jpg

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