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甘蔗穗蛾性信息素生物合成:为生物技术生产铺平道路。

Sex pheromone biosynthesis in the sugarcane borer Diatraea saccharalis: paving the way for biotechnological production.

机构信息

Department of Biology, Lund University, Lund, Sweden.

Departamento de Química, Universidade Federal do Paraná, Curitiba, Brazil.

出版信息

Pest Manag Sci. 2024 Mar;80(3):996-1007. doi: 10.1002/ps.7830. Epub 2023 Nov 6.

Abstract

BACKGROUND

The sugarcane borer Diatraea saccharalis (Lepidoptera) is a key pest on sugarcane and other grasses in the Americas. Biological control as well as insecticide treatments are used for pest management, but economic losses are still significant. The use of female sex pheromones for mating disruption or mass trapping in pest management could be established for this species, provided that economical production of pheromone is available.

RESULTS

Combining in vivo labelling studies, differential expression analysis of transcriptome data and functional characterisation of insect genes in a yeast expression system, we reveal the biosynthetic pathway and identify the desaturase and reductase enzymes involved in the biosynthesis of the main pheromone component (9Z,11E)-hexadecadienal, and minor components hexadecanal, (9Z)-hexadecenal and (11Z)-hexadecenal. We next demonstrate heterologous production of the corresponding alcohols of the pheromone components, by expressing multiple steps of the biosynthetic pathway in yeast.

CONCLUSION

Elucidation of the genetic basis of sex pheromone biosynthesis in D. saccharalis, and heterologous expression in yeast, paves the way for biotechnological production of the pheromone compounds needed for pheromone-based pest management of this species. © 2023 The Authors. Pest Management Science published by John Wiley & Sons Ltd on behalf of Society of Chemical Industry.

摘要

背景

甘蔗钻心虫(鳞翅目)是美洲甘蔗和其他禾本科植物的主要害虫。生物防治和杀虫剂处理都被用于害虫管理,但经济损失仍然很大。如果能够经济有效地生产性信息素,就可以为该物种建立基于性信息素的交配干扰或大量诱捕的害虫管理方法。

结果

通过体内标记研究、转录组数据差异表达分析以及酵母表达系统中昆虫基因的功能特征分析,我们揭示了生物合成途径,并鉴定了参与主要信息素成分(9Z,11E)-十六碳二烯醛以及次要成分十六醛、(9Z)-十六烯醛和(11Z)-十六烯醛生物合成的去饱和酶和还原酶。接下来,我们通过在酵母中表达生物合成途径的多个步骤,展示了相应信息素成分醇的异源生产。

结论

阐明了甘蔗钻心虫性信息素生物合成的遗传基础,并在酵母中进行了异源表达,为该物种基于性信息素的害虫管理所需的信息素化合物的生物技术生产铺平了道路。© 2023 作者。害虫管理科学由 John Wiley & Sons Ltd 代表化学工业协会出版。

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