地甲虫防御级有机酸生物合成的分子机制。

IF 2.3 2区 农林科学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY
Adam M Rork, Sihang Xu, Athula Attygalle, Tanya Renner
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引用次数: 0

摘要

众所周知,昆虫可以合成并分泌数百种独特的防御化学物质,包括苛性酸、辛辣的酚类物质和柑橘萜类物质。尽管人们努力描绘地甲虫(鞘翅目:甲虫科)的防御化学特征,但我们对该家族的符号化学进化以及这些化合物是如何生物合成的知识仍然有限。很少有研究表明某些分类群中某些化合物可能的生物合成前体,只有一项研究表明哪些基因可能参与甲酸的生物合成。在这里,我们描述了防御化学,并生成了代表两种防御化学类别的地面甲虫物种的防御腺转录组:甲酸产生者Platynus angustatus和甲基丙烯酸产生者Pterostichus moestus。通过比较转录组分析,我们证明了不同初级代谢途径的共同选择可能参与了这些分类群防御腺中甲酸和甲基丙烯酸的生物合成。这些结果扩大了我们对地甲虫防御化学的认识,并提供了额外的证据,证明现有的初级代谢途径的选择在地甲虫化学防御的进化中起着重要作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The molecular mechanisms of defensive-grade organic acid biosynthesis in ground beetles.

Insects are known to synthesise and secrete hundreds of unique defensive chemicals, including caustic acids, pungent phenolics and citrusy terpenes. Despite efforts to characterise the defensive chemistry of ground beetles (Coleoptera: Carabidae), our knowledge of semiochemical evolution within the family and how these compounds are biosynthesised remains limited. Few studies have demonstrated the likely biosynthetic precursors of select compounds in certain taxa and only one has demonstrated which genes may be involved in the biosynthesis of formic acid. Here, we characterise the defensive chemistry and generate defensive gland transcriptomes for ground beetle species representing two defensive chemical classes: the formic acid producer Platynus angustatus and the methacrylic acid producer Pterostichus moestus. Through comparative transcriptome analyses, we demonstrate that co-option of distinct primary metabolic pathways may be involved in formic acid and methacrylic acid biosynthesis in the defensive glands of these taxa. These results expand our knowledge of ground beetle defensive chemistry and provide additional evidence that co-option of existing primary metabolic pathways plays a major role in the evolution of ground beetle chemical defence.

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来源期刊
Insect Molecular Biology
Insect Molecular Biology 生物-昆虫学
CiteScore
4.80
自引率
3.80%
发文量
68
审稿时长
6-12 weeks
期刊介绍: Insect Molecular Biology has been dedicated to providing researchers with the opportunity to publish high quality original research on topics broadly related to insect molecular biology since 1992. IMB is particularly interested in publishing research in insect genomics/genes and proteomics/proteins. This includes research related to: • insect gene structure • control of gene expression • localisation and function/activity of proteins • interactions of proteins and ligands/substrates • effect of mutations on gene/protein function • evolution of insect genes/genomes, especially where principles relevant to insects in general are established • molecular population genetics where data are used to identify genes (or regions of genomes) involved in specific adaptations • gene mapping using molecular tools • molecular interactions of insects with microorganisms including Wolbachia, symbionts and viruses or other pathogens transmitted by insects Papers can include large data sets e.g.from micro-array or proteomic experiments or analyses of genome sequences done in silico (subject to the data being placed in the context of hypothesis testing).
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