Chanchay Pornchanan, Vongsangnak Wanwipa, Thancharoen Anchana, Sriboonlert Ajaraporn
Department of Genetics, Faculty of Science, Kasetsart University, Bangkok, Thailand.
Department of Zoology, Faculty of Science, Kasetsart University, Bangkok, Thailand.
PeerJ. 2019 Aug 2;7:e7428. doi: 10.7717/peerj.7428. eCollection 2019.
Insect hormones: ecdysteroids and juvenile hormones have crucial functions during the regulation of different developmental pathways in insects. Insect metamorphosis is one of the primary pathways regulated by these hormones. The insect hormone biosynthetic pathway is conserved among arthropods, including insects, with some variations in the form of hormones used among each group of insects. In this study, the candidate genes involved in the insect hormone pathways and their functional roles were assessed in an aquatic firefly, using a high-throughput RNA sequencing technique. Illumina next-generation sequencing (NGS) was used to generate transcriptome data for the different developmental stages (i.e., larva, pupa, and adult) of . A total of 82,022 unigenes were generated across all different developmental stages. Functional annotation was performed for each gene, based on multiple biological databases, generating 46,230 unigenes. These unigenes were subsequently mapped using KEGG pathways. Accordingly, 221 protein-encoding genes involved in the insect hormone pathways were identified, including, , and Halloween family genes. Twenty potential gene candidates associated with the biosynthetic and degradation pathways for insect hormones were subjected to real-time PCR, reverse transcriptase PCR (RT-PCR) and sequencing analyses. The real-time PCR results showed similar expression patterns as those observed for transcriptome expression profiles for most of the examined genes. RT-PCR and Sanger sequencing confirmed the expressed coding sequences of these gene candidates. This study is the first to examine firefly insect hormone pathways, facilitating a better understanding of firefly growth and development.
蜕皮甾体和保幼激素在昆虫不同发育途径的调控过程中具有关键作用。昆虫变态是受这些激素调控的主要途径之一。昆虫激素生物合成途径在包括昆虫在内的节肢动物中是保守的,不过每组昆虫所使用的激素形式存在一些差异。在本研究中,利用高通量RNA测序技术,对一种水生萤火虫中参与昆虫激素途径的候选基因及其功能作用进行了评估。使用Illumina下一代测序(NGS)技术生成了该萤火虫不同发育阶段(即幼虫、蛹和成虫)的转录组数据。在所有不同发育阶段共生成了82,022个单基因。基于多个生物学数据库对每个基因进行了功能注释,得到了46,230个单基因。随后利用KEGG通路对这些单基因进行了映射。据此,鉴定出了221个参与昆虫激素途径的蛋白质编码基因,包括、以及“万圣节”家族基因。对20个与昆虫激素生物合成和降解途径相关的潜在基因候选物进行了实时PCR、逆转录PCR(RT-PCR)和测序分析。实时PCR结果显示,大多数检测基因的表达模式与转录组表达谱中观察到的相似。RT-PCR和桑格测序证实了这些基因候选物的编码序列已表达。本研究首次对萤火虫的昆虫激素途径进行了研究,有助于更好地了解萤火虫的生长和发育。