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斜纹夜蛾性信息素生物合成与转运相关基因的鉴定及表达谱分析

Identification and Expression Profiles of Sex Pheromone Biosynthesis and Transport Related Genes in Spodoptera litura.

作者信息

Zhang Ya-Nan, Zhu Xiu-Yun, Fang Li-Ping, He Peng, Wang Zhi-Qiang, Chen Geng, Sun Liang, Ye Zhan-Feng, Deng Dao-Gui, Li Jin-Bu

机构信息

College of Life Sciences, Huaibei Normal University, Huaibei, China.

State Key Laboratory Breeding Base of Green Pesticide and Agricultural Bioengineering, Key Laboratory of Green Pesticide and Agricultural Bioengineering, Ministry of Education, Guizhou University, Guiyang, China.

出版信息

PLoS One. 2015 Oct 7;10(10):e0140019. doi: 10.1371/journal.pone.0140019. eCollection 2015.

Abstract

Although the general pathway of sex pheromone synthesis in moth species has been established, the molecular mechanisms remain poorly understood. The common cutworm Spodoptera litura is an important agricultural pest worldwide and causes huge economic losses annually. The female sex pheromone of S. litura comprises Z9,E11-14:OAc, Z9,E12-14:OAc, Z9-14:OAc, and E11-14:OAc. By sequencing and analyzing the transcriptomic data of the sex pheromone glands, we identified 94 candidate genes related to pheromone biosynthesis (55 genes) or chemoreception (39 genes). Gene expression patterns and phylogenetic analysis revealed that two desaturase genes (SlitDes5 and SlitDes11) and one fatty acyl reductase gene (SlitFAR3) showed pheromone gland (PG) biased or specific expression, and clustered with genes known to be involved in pheromone synthesis in other moth species. Furthermore, 4 chemoreception related genes (SlitOBP6, SlitOBP11, SlitCSP3, and SlitCSP14) also showed higher expression in the PG, and could be additional candidate genes involved in sex pheromone transport. This study provides the first solid background information that should facilitate further elucidation of sex pheromone biosynthesis and transport, and indicates potential targets to disrupt sexual communication in S. litura for a novel pest management strategy.

摘要

尽管蛾类物种性信息素合成的一般途径已经明确,但分子机制仍知之甚少。斜纹夜蛾是一种重要的世界性农业害虫,每年造成巨大经济损失。斜纹夜蛾的雌性性信息素包括Z9,E11 - 14:OAc、Z9,E12 - 14:OAc、Z9 - 14:OAc和E11 - 14:OAc。通过对性信息素腺转录组数据进行测序和分析,我们鉴定出94个与信息素生物合成(55个基因)或化学感受(39个基因)相关的候选基因。基因表达模式和系统发育分析表明,两个去饱和酶基因(SlitDes5和SlitDes11)和一个脂肪酰还原酶基因(SlitFAR3)表现出性信息素腺(PG)偏向或特异性表达,并与已知参与其他蛾类物种信息素合成的基因聚类。此外,4个化学感受相关基因(SlitOBP6、SlitOBP11、SlitCSP3和SlitCSP14)在PG中也表现出较高表达,可能是参与性信息素运输的额外候选基因。本研究提供了首个坚实的背景信息,应有助于进一步阐明性信息素的生物合成和运输,并为破坏斜纹夜蛾的性通讯以制定新的害虫管理策略指明潜在靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0d22/4596838/fa95751ff048/pone.0140019.g001.jpg

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