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首页> 外文期刊>Journal of Chemical Ecology: Official Journal of the International Society of Chemical Ecology >Putative Pathway of Sex Pheromone Biosynthesis and Degradation by Expression Patterns of Genes Identified from Female Pheromone Gland and Adult Antenna of Sesamia inferens (Walker)
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Putative Pathway of Sex Pheromone Biosynthesis and Degradation by Expression Patterns of Genes Identified from Female Pheromone Gland and Adult Antenna of Sesamia inferens (Walker)

机译:雌性信息素腺和芝麻叶成年触角鉴定基因表达模式的性信息素生物合成和降解的假定途径

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摘要

The general pathway of biosynthesis and degradation for Type-I sex pheromones in moths is well established, but some genes involved in this pathway remain to be characterized. The purple stem borer, Sesamia inferens, employs a pheromone blend containing components with three different terminal functional groups (Z11-16:OAc, Z11-16:OH, and Z11-16:Ald) of Type-I sex pheromones. Thus, it provides a good model to study the diversity of genes involved in pheromone biosynthesis and degradation pathways. By analyzing previously obtained transcriptomic data of the sex pheromone glands and antennae, we identified 73 novel genes that are possibly related to pheromone biosynthesis (46 genes) or degradation (27 genes). Gene expression patterns and phylogenetic analysis revealed that one desaturase (SinfDes4), one fatty acid reductase (SinfFAR2), and one fatty acid xtransport protein (SinfFATP1) genes were predominantly expressed in pheromone glands, and clustered with genes involved in pheromone synthesis in other moth species. Ten genes including five carboxylesterases (SinfCXE10, 13, 14, 18, and 20), three aldehyde oxidases (SinfAOX1, 2 and 3), and two alcohol dehydrogenases (SinfAD1 and 3) were expressed specifically or predominantly in antennae, and could be candidate genes involved in pheromone degradation. SinfAD1 and 3 are the first reported alcohol dehydrogenase genes with antennae-biased expression. Based on these results we propose a pathway involving these potential enzyme-encoding gene candidates in sex pheromone biosynthesis and degradation in S. inferens. This study provides robust background information for further elucidation of the genetic basis of sex pheromone biosynthesis and degradation, and ultimately provides potential targets to disrupt sexual communication in S. inferens for control purposes.
机译:蛾类中I型性信息素的生物合成和降解的一般途径已经建立,但是该途径中涉及的一些基因仍有待鉴定。紫茎bore(Sesamia inferens)使用信息素共混物,其中包含具有I型性信息素的三个不同末端官能团(Z11-16:OAc,Z11-16:OH和Z11-16:Ald)的成分。因此,它为研究信息素生物合成和降解途径中涉及的基因多样性提供了一个很好的模型。通过分析先前获得的性信息素腺和触角的转录组数据,我们确定了73个可能与信息素生物合成(46个基因)或降解(27个基因)有关的新基因。基因表达谱和系统发育分析表明,一种去饱和酶(SinfDes4),一种脂肪酸还原酶(SinfFAR2)和一种脂肪酸x转运蛋白(SinfFATP1)基因主要在信息素腺中表达,并与其他飞蛾中信息素合成相关的基因聚集在一起。种类。包括五个羧酸酯酶(SinfCXE10、13、14、18和20),三个醛氧化酶(SinfAOX1、2和3)以及两个醇脱氢酶(SinfAD1和3)的十个基因在触角中特别或主要表达,可以作为候选基因基因参与信息素降解。 SinfAD1和3是第一个报告的具有天线偏向表达的醇脱氢酶基因。基于这些结果,我们提出了一条途径,涉及这些潜在的酶编码基因候选物在性信息素的生物合成和恶臭链球菌的降解中。这项研究为进一步阐明性信息素的生物合成和降解的遗传基础提供了有力的背景信息,并最终为控制目的提供了潜在的干扰性链霉菌性传播的靶标。

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