Warmerdam Marieke, Vieira-Lara Marcel A, Mans Robert, Daran Jean Marc, Pronk Jack T
Department of Biotechnology, Delft University of Technology, Van der Maasweg 9, 2629 HZ Delft, the Netherlands.
FEMS Yeast Res. 2024 Jan 9;24. doi: 10.1093/femsyr/foae037.
Emerging low-emission production technologies make ethanol an interesting substrate for yeast biotechnology, but information on growth rates and biomass yields of yeasts on ethanol is scarce. Strains of 52 Saccharomycotina yeasts were screened for growth on ethanol. The 21 fastest strains, among which representatives of the Phaffomycetales order were overrepresented, showed specific growth rates in ethanol-grown shake-flask cultures between 0.12 and 0.46 h-1. Seven strains were studied in aerobic, ethanol-limited chemostats (dilution rate 0.10 h-1). Saccharomyces cerevisiae and Kluyveromyces lactis, whose genomes do not encode Complex-I-type NADH dehydrogenases, showed biomass yields of 0.59 and 0.56 gbiomass gethanol-1, respectively. Different biomass yields were observed among species whose genomes do harbour Complex-I-encoding genes: Phaffomyces thermotolerans (0.58 g g-1), Pichia ethanolica (0.59 g g-1), Saturnispora dispora (0.66 g g-1), Ogataea parapolymorpha (0.67 g g-1), and Cyberlindnera jadinii (0.73 g g-1). Cyberlindnera jadinii biomass showed the highest protein content (59 ± 2%) of these yeasts. Its biomass yield corresponded to 88% of the theoretical maximum that is reached when growth is limited by assimilation rather than by energy availability. This study suggests that energy coupling of mitochondrial respiration and its regulation will become key factors for selecting and improving yeast strains for ethanol-based processes.
新兴的低排放生产技术使乙醇成为酵母生物技术中一种引人关注的底物,但关于酵母在乙醇上的生长速率和生物量产量的信息却很匮乏。对52种酵母菌纲酵母菌株进行了乙醇生长筛选。21株生长最快的菌株(其中毕赤酵母目代表菌株占比过高)在乙醇培养的摇瓶培养物中的比生长速率在0.12至0.46 h⁻¹之间。对7株菌株在好氧、乙醇限制的恒化器中进行了研究(稀释率0.10 h⁻¹)。基因组不编码复合体I型NADH脱氢酶的酿酒酵母和乳酸克鲁维酵母的生物量产量分别为0.59和0.56 g生物量/g乙醇。在基因组中含有复合体I编码基因的物种中观察到了不同的生物量产量:嗜热毕赤酵母(0.58 g/g)、乙醇毕赤酵母(0.59 g/g)、分散土星孢(0.66 g/g)、近平奥塔酵母(0.67 g/g)和季也蒙毕赤酵母(0.73 g/g)。季也蒙毕赤酵母的生物量显示出这些酵母中最高的蛋白质含量(59±2%)。其生物量产量相当于生长受同化而非能量可用性限制时达到的理论最大值的88%。这项研究表明,线粒体呼吸的能量偶联及其调节将成为选择和改良用于基于乙醇工艺的酵母菌株的关键因素。