Wu Chen, Jiang Nan, Wang Ruhong, Jiang Shanshan, Yuan Zhijia, Luo Xue, Wu Junrui, Shi Haisu, Wu Rina
College of Food Science, Shenyang Agricultural University, Shenyang, People's Republic of China.
Liaoning Engineering Research Center of Food Fermentation Technology, Shenyang Agricultural University, Shenyang, People's Republic of China.
J Sci Food Agric. 2023 Apr;103(6):2960-2969. doi: 10.1002/jsfa.12392. Epub 2022 Dec 30.
Mold-ripened cheeses have low levels of unsaturated fatty acids (UFAs). Geotrichum candidum is an adjunct culture for the development of Geotrichum-ripened cheese but has a low ability to produce high levels of UFAs. Δ12 fatty acid desaturase (FADS12) is a pivotal enzyme that converts oleic acid (OA) to linoleic acid (LA) and plays a vital role in UFA biosynthesis. By investigating FADS12 catalytic activity from various species with OA substrates, we found that FADS12 from Mucor circinelloides (McFADS12) had the highest catalytic activity for OA.
In the current study, a plasmid harboring McFADS12 was constructed and overexpressed in G. candidum. Our results showed that LA production increased to 31.1 ± 1.4% in engineered G. candidum - three times higher than that in wild-type G. candidum. To enhance LA production, an exogenous substrate (OA) was supplemented, and the yield of LA was increased to 154 ± 6 mg L in engineered G. candidum. Engineered G. candidum was used as an adjunct culture for Geotrichum-ripened cheese production. The LA level reached 74.3 ± 5.4 g kg cheese, whereas the level of saturated fatty acids (SFAs) decreased by 9.9 ± 0.5%. In addition, the soybean byproduct (okara) was introduced into the engineered G. candidum growth and the level of LA increased to 126 ± 4 g kg cheese and the percentage of UFAs:SFAs increased from 0.8:1 to 1.3:1.
This study offers a suitable technology for converting SFAs to UFAs in Geotrichum-ripened cheeses and provides a novel trend for converting soybean waste into a value-added product. © 2022 Society of Chemical Industry.
霉菌成熟奶酪中的不饱和脂肪酸(UFA)含量较低。白地霉是用于制作白地霉成熟奶酪的辅助培养物,但产生高水平UFA的能力较低。Δ12脂肪酸去饱和酶(FADS12)是一种将油酸(OA)转化为亚油酸(LA)的关键酶,在UFA生物合成中起着至关重要的作用。通过研究不同物种的FADS12对OA底物的催化活性,我们发现卷枝毛霉的FADS12(McFADS12)对OA具有最高的催化活性。
在本研究中,构建了携带McFADS12的质粒并在白地霉中过表达。我们的结果表明,工程化白地霉中LA的产量增加到31.1±1.4%,是野生型白地霉的三倍。为了提高LA产量,添加了外源底物(OA),工程化白地霉中LA的产量增加到154±6mg/L。工程化白地霉用作白地霉成熟奶酪生产的辅助培养物。LA含量达到74.3±5.4g/kg奶酪,而饱和脂肪酸(SFA)含量下降了9.9±0.5%。此外,将大豆副产品(豆渣)引入工程化白地霉的生长过程中,LA含量增加到126±4g/kg奶酪,UFA:SFA的比例从0.8:1增加到1.3:1。
本研究提供了一种在白地霉成熟奶酪中将SFA转化为UFA的合适技术,并为将大豆废料转化为增值产品提供了新的趋势。©2022化学工业协会。