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木质纤维素水解产物中酸类产生的抑制剂对TG1菌株和Tuner菌株生长的影响

Influence of Inhibitors Generated in Lignocellulosic Hydrolysates from Group of Acids on the Growth of Strains TG1 and Tuner of .

作者信息

Gaspar Suelen S, Alves-Ferreira Júnia, Moniz Patrícia, Silva-Fernandes Talita, Silvestre Adriana I R, Torrado Ivone, Pesce Gaetano R, Carvalheiro Florbela, Duarte Luís C, Fernandes Maria C

机构信息

Alentejo Biotechnology Center for Agriculture and Agro-Food (CEBAL)/Polytechnic Institute of Beja (IPBeja), Apartado 6158, 7801-908 Beja, Portugal.

MED-Mediterranean Institute for Agriculture, Environment and Development & CHANGE-Global Change and Sustainability Institute, CEBAL-Alentejo Biotechnology Center for Agriculture and Agro-Food, Apartado 6158, 7801-908 Beja, Portugal.

出版信息

Microorganisms. 2025 Mar 5;13(3):605. doi: 10.3390/microorganisms13030605.

Abstract

Concerns over fossil fuels are of increasing interest in biorefineries that utilize lignocellulosic residues. Besides sugars, inhibitors are formed during biomass pretreatment, including acetic acid (AI) and formic acid (FI), which can hinder microbial fermentation. The TG1 and Tuner strains of were subjected to various acid concentrations. Samples were taken during fermentation to monitor growth, sugar consumption, biomass yield, and product yield. With increasing AI, the TG1 strain maintained stable growth (0.102 1/h), while xylose consumption decreased, and product formation improved, making it better suited for high-acetic-acid industrial applications. In contrast, the Tuner strain performed better under low-inhibitor conditions but suffered metabolic inhibition at high AI levels, compensating by increasing lactic acid production-an adaptation absent in TG1. However, Tuner showed greater resistance to formic acid stress, sustaining higher growth and ethanol production, whereas TG1 experienced a greater metabolic decline but maintained stable acetic acid output. Both strains experienced inhibition in formic acid metabolism, but TG1 had a higher yield despite its lower overall robustness in formic acid conditions. The use of TG1 for value-added compounds such as ethanol or formic acid may help to avoid the use of chemicals that eliminate acetic acid. Tuner could be used for lactic acid production, especially in hydrolysates with under moderate concentration.

摘要

对化石燃料的担忧使得利用木质纤维素残渣的生物精炼厂越来越受关注。除了糖类,生物质预处理过程中会形成抑制剂,包括乙酸(AI)和甲酸(FI),它们会阻碍微生物发酵。对TG1和Tuner菌株施加不同的酸浓度。在发酵过程中取样以监测生长、糖消耗、生物质产量和产物产量。随着AI浓度增加,TG1菌株保持稳定生长(0.102 1/h),而木糖消耗减少,产物形成改善,使其更适合高乙酸浓度的工业应用。相比之下,Tuner菌株在低抑制剂条件下表现更好,但在高AI水平下受到代谢抑制,通过增加乳酸产量来补偿——这是TG1所没有的适应性。然而,Tuner对甲酸胁迫表现出更大的抗性,维持更高的生长和乙醇产量,而TG1经历了更大的代谢下降但保持乙酸产量稳定。两种菌株在甲酸代谢中都受到抑制,但尽管TG1在甲酸条件下总体稳健性较低,但其产量更高。使用TG1生产乙醇或甲酸等增值化合物可能有助于避免使用去除乙酸的化学物质。Tuner可用于生产乳酸,特别是在中等浓度的水解产物中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a86e/11945654/a148f31b608c/microorganisms-13-00605-g001.jpg

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