Keating Jeffrey D, Panganiban Chris, Mansfield Shawn D
Department of Wood Science, University of British Columbia, 2424 Main Mall, Vancouver, British Columbia, V6T 1Z4, Canada.
Biotechnol Bioeng. 2006 Apr 20;93(6):1196-206. doi: 10.1002/bit.20838.
Synthetic mixtures of predominant lignocellulosic hexose sugars were supplemented with separate aliquots of three inhibitory compounds (furfural, hydroxymethylfurfural (HMF), and acetic acid) in a series of concentrations and fermented by the spent sulfite liquor (SSL)-adapted yeast strain Tembec T1 and the natural isolate Saccharomyces cerevisiae (S. cerevisiae) Y-1528 to compare tolerance and assess fermentative efficacy. The performance of Y-1528 exceeded that of Tembec T1 by a significant margin, with faster hexose sugar consumption, higher ethanol productivity, and in the case of furfural and HMF, faster inhibitor consumption. Nevertheless, furfural had a dose-proportionate effect on sugar consumption rate and ethanol productivity in both strains, but did not substantially affect ethanol yield. HMF had a similar effect on sugar consumption rate and ethanol productivity, and also lowered ethanol yield. Surprisingly, acetic acid had the least impact on sugar consumption rate and ethanol productivity, and stimulated ethanol yield at moderate concentrations. Sequential iterations of softwood (SW) and hardwood (HW) SSL were subsequently inoculated with the two yeast strains in order to compare adaptation to, and performance in lignocellulosic substrates in a cell recycle batch fermentation (CRBF) regime. Both strains were severely affected by the HW SSL, which was attributed to specific syringyl lignin-derived degradation products and synergistic interactions between inhibitors. Though ethanologenic capacity was preserved, a net loss of performance was evident from both strains, indicating the absence of adaptation to the substrates, regardless of the sequence in which the SSL types were employed.
将主要的木质纤维素己糖合成混合物分别添加一系列浓度的三种抑制性化合物(糠醛、羟甲基糠醛(HMF)和乙酸),并由适应亚硫酸盐废液(SSL)的酵母菌株Tembec T1和天然分离株酿酒酵母(S. cerevisiae)Y-1528进行发酵,以比较耐受性并评估发酵效率。Y-1528的性能显著超过Tembec T1,己糖消耗更快,乙醇生产率更高,在糠醛和HMF的情况下,抑制剂消耗更快。然而,糠醛对两种菌株的糖消耗率和乙醇生产率具有剂量比例效应,但对乙醇产率没有实质性影响。HMF对糖消耗率和乙醇生产率有类似影响,也降低了乙醇产率。令人惊讶的是,乙酸对糖消耗率和乙醇生产率的影响最小,并且在中等浓度下刺激了乙醇产率。随后,用这两种酵母菌株接种软木(SW)和硬木(HW)SSL的连续迭代物,以比较在细胞循环分批发酵(CRBF)模式下对木质纤维素底物的适应性和性能。两种菌株都受到HW SSL的严重影响,这归因于特定的紫丁香基木质素衍生降解产物和抑制剂之间的协同相互作用。尽管产乙醇能力得以保留,但两种菌株的性能都明显出现净损失,这表明无论采用SSL类型的顺序如何,都没有适应底物。