4.7 Review

Achievements and perspectives of synthetic biology in botanical insecticides

期刊

JOURNAL OF CELLULAR PHYSIOLOGY
卷 -, 期 -, 页码 -

出版社

WILEY
DOI: 10.1002/jcp.30888

关键词

biosynthetic pathways; botanical insecticides; cytotoxicity engineering; enzyme engineering; host engineering; synthetic biology

资金

  1. Shaoxing MingShiZhiXiang Meritocrat Project [CXCQ2402376]
  2. National Key Research and Development Project of China [2020YFA0907900]

向作者/读者索取更多资源

Botanical insecticides, the origin of all insecticidal compounds, have been widely used in crop pest control. However, their commercial production is limited due to insufficient raw material supply. Synthetic biology offers a promising solution to address this issue. This review summarizes recent developments in the heterologous production of botanical insecticides, discussing challenges and potential production strategies.
Botanical insecticides are the origin of all insecticidal compounds. They have been widely used to control pests in crops for a long time. Currently, the commercial production of botanical insecticides extracted from plants is limited because of insufficient raw material supply. Synthetic biology is a promising and effective approach for addressing the current problems of the production of botanical insecticides. It is an emerging biological research hotspot in the field of botanical insecticides. However, the biosynthetic pathways of many botanical insecticides are not completely elucidated. On the other hand, the cytotoxicity of botanical pesticides and low efficiency of these biosynthetic enzymes in new hosts make it still challenging for their heterologous production. In the present review, we summarized the recent developments in the heterologous production of botanical insecticides, analyzed the current challenges, and discussed the feasible production strategies, focusing on elucidating biosynthetic pathways, enzyme engineering, host engineering, and cytotoxicity engineering. Looking to the future, synthetic biology promises to further advance heterologous production of more botanical pesticides.

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