Zhang Xiaoling, Miao Qin, Xu Xia, Ji Boyang, Qu Lingbo, Wei Yongjun
Key Laboratory of Advanced Drug Preparation Technologies, Ministry of Education, School of Pharmaceutical Sciences, Zhengzhou University, Zhengzhou, China.
Laboratory of Synthetic Biology, Zhengzhou University, Zhengzhou, China.
Front Microbiol. 2021 Nov 11;12:759975. doi: 10.3389/fmicb.2021.759975. eCollection 2021.
The use of traditional chemical insecticides for pest control often leads to environmental pollution and a decrease in biodiversity. Recently, insect sex pheromones were applied for sustainable biocontrol of pests in fields, due to their limited adverse impacts on biodiversity and food safety compared to that of other conventional insecticides. However, the structures of insect pheromones are complex, and their chemical synthesis is not commercially feasible. As yeasts have been widely used for fatty acid-derived pheromone production in the past few years, using engineered yeasts may be promising and sustainable for the low-cost production of fatty acid-derived pheromones. The primary fatty acids produced by and other yeasts are C16 and C18, and it is also possible to rewire/reprogram the metabolic flux for other fatty acids or fatty acid derivatives. This review summarizes the fatty acid biosynthetic pathway in and recent progress in yeast engineering in terms of metabolic engineering and synthetic biology strategies to produce insect pheromones. In the future, insect pheromones produced by yeasts might provide an eco-friendly pest control method in agricultural fields.
使用传统化学杀虫剂进行害虫防治往往会导致环境污染和生物多样性下降。近年来,昆虫性信息素因其与其他传统杀虫剂相比对生物多样性和食品安全的不利影响有限,被应用于田间害虫的可持续生物防治。然而,昆虫信息素的结构复杂,其化学合成在商业上不可行。由于酵母在过去几年中已被广泛用于生产脂肪酸衍生的信息素,利用工程酵母低成本生产脂肪酸衍生的信息素可能是有前景且可持续的。酿酒酵母和其他酵母产生的主要脂肪酸是C16和C18,也可以重新调整/重编程代谢通量以生产其他脂肪酸或脂肪酸衍生物。本文综述了酿酒酵母中的脂肪酸生物合成途径以及酵母工程在代谢工程和合成生物学策略生产昆虫信息素方面的最新进展。未来,酵母产生的昆虫信息素可能为农业领域提供一种生态友好的害虫防治方法。