National Food Institute, Technical University of Denmark, DK-2800 Kgs. Lyngby, Denmark.
Arla Innovation Center, Agro Food Park 19, 8200 Aarhus, Denmark.
J Agric Food Chem. 2020 May 27;68(21):5891-5899. doi: 10.1021/acs.jafc.0c00882. Epub 2020 May 13.
subsp. biovar diacetylactis is widely used in dairy fermentations as it can form the butter aroma compounds acetoin and diacetyl from citrate in milk. Here, we explore the possibility of producing acetoin from the more abundant lactose. Starting from a dairy isolate of biovar diacetylactis, we obtained a series of mutants with low lactate dehydrogenase () activity. One isolate, RD1M5, only had a single insertion mutation in the gene compared to its parental strain as revealed by whole genome resequencing. We tested the ability of RD1M5 to produce acetoin in milk. With aeration, all the lactose could be consumed, and the only product was acetoin. In a simulated cheese fermentation, a 50% increase in acetoin concentration could be achieved. RD1M5 turned out to be an excellent cell factory for acetoin and was able to convert lactose in dairy waste into acetoin with high titer (41 g/L) and high yield (above 90% of the theoretical yield). Summing up, RD1M5 was found to be highly robust and to grow excellently in milk or dairy waste. Being natural in origin opens up for applications within dairies as well as for safe production of food-grade acetoin from low-cost substrates.
双乙酰亚种被广泛应用于乳制品发酵,因为它能够将牛奶中的柠檬酸盐转化为具有黄油香气的化合物乙酰基和双乙酰。在这里,我们探索了利用更丰富的乳糖来生产乙酰基的可能性。从乳制品分离的双乙酰亚种开始,我们获得了一系列乳酸脱氢酶()活性较低的突变体。与亲本菌株相比,一个名为 RD1M5 的分离株在基因中只有一个单一的插入突变,这是通过全基因组重测序揭示的。我们测试了 RD1M5 在牛奶中生产乙酰基的能力。在通气的情况下,所有的乳糖都可以被消耗,并且唯一的产物是乙酰基。在模拟奶酪发酵中,可以实现乙酰基浓度提高 50%。RD1M5 是乙酰基的绝佳细胞工厂,可以将乳制品废物中的乳糖转化为高浓度(41g/L)和高收率(超过理论收率的 90%)的乙酰基。总之,RD1M5 被发现非常稳健,可以在牛奶或乳制品废物中生长良好。由于其天然来源,它可以在乳制品行业中应用,也可以从低成本的底物中安全生产食品级乙酰基。