4.7 Article

Manufacturing specialized wax esters in plants

期刊

METABOLIC ENGINEERING
卷 72, 期 -, 页码 391-402

出版社

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.ymben.2022.05.005

关键词

Wax esters; Insect sex pheromones; Pest control; Spermaceti; Plant factory; Synthetic biology

资金

  1. Swedish Foundation for Strategic Research [RBP14-0037]
  2. Crops for the Future (C4F) a Strategic Research Area at SLU
  3. Swedish Government
  4. Formas [2010-857, 2015-1336]
  5. Swedish Foundation for Strategic Research (SSF) [RBP14-0037] Funding Source: Swedish Foundation for Strategic Research (SSF)

向作者/读者索取更多资源

Biologically produced wax esters can be used for various industrial purposes, such as biolubricants and insect sex pheromones. In this study, we investigated the possibility of assembling wax esters in plants through transient expression of different gene combinations. We successfully obtained industrially important wax esters enriched in specific fatty acyl and fatty alcohol moieties, as well as unsaturated moieties similar to moth pheromones. This research provides valuable insights for the production of specialized wax esters in plants.
Biologically produced wax esters can fulfil different industrial purposes. These functionalities almost drove the sperm whale to extinction from hunting. After the ban on hunting, there is a niche in the global market for biolubricants with properties similar to spermaceti. Wax esters can also serve as a mechanism for producing insect sex pheromone fatty alcohols. Pheromone-based mating disruption strategies are in high demand to replace the toxic pesticides in agriculture and manage insect plagues threatening our food and fiber reserves. In this study we set out to investigate the possibilities of in planta assembly of wax esters, for specific applications, through transient expression of various mix-and-match combinations of genes in Nicotiana benthamiana leaves. Our synthetic biology designs were outlined in order to pivot plant lipid metabolism into producing wax esters with targeted fatty acyl and fatty alcohols moieties. Through this approach we managed to obtain industrially important spermaceti-like wax esters enriched in medium-chain fatty acyl and/or fatty alcohol moieties of wax esters. Via employment of plant codon-optimized moth acyl-CoA desaturases we also managed to capture unusual, unsaturated fatty alcohol and fatty acyl moieties, structurally similar to moth pheromone compounds, in plant-accumulated wax esters. Comparison between outcomes of different experimental designs identified targets for stable transformation to accumulate specialized wax esters and helped us to recognize possible bottlenecks of such accumulation.

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