Division of Evolutionary Developmental Biology, National Institute for Basic Biology, Okazaki, Japan.
Department of Basic Biology, School of Life Science, The Graduate University for Advanced Studies, SOKENDAI, Okazaki, Japan.
Sci Rep. 2023 May 30;13(1):8735. doi: 10.1038/s41598-023-35246-w.
The Japanese rhinoceros beetle Trypoxylus dichotomus is a giant beetle with distinctive exaggerated horns present on the head and prothoracic regions of the male. T. dichotomus has been used as a research model in various fields such as evolutionary developmental biology, ecology, ethology, biomimetics, and drug discovery. In this study, de novo assembly of 615 Mb, representing 80% of the genome estimated by flow cytometry, was obtained using the 10 × Chromium platform. The scaffold N50 length of the genome assembly was 8.02 Mb, with repetitive elements predicted to comprise 49.5% of the assembly. In total, 23,987 protein-coding genes were predicted in the genome. In addition, de novo assembly of the mitochondrial genome yielded a contig of 20,217 bp. We also analyzed the transcriptome by generating 16 RNA-seq libraries from a variety of tissues of both sexes and developmental stages, which allowed us to identify 13 co-expressed gene modules. We focused on the genes related to horn formation and obtained new insights into the evolution of the gene repertoire and sexual dimorphism as exemplified by the sex-specific splicing pattern of the doublesex gene. This genomic information will be an excellent resource for further functional and evolutionary analyses, including the evolutionary origin and genetic regulation of beetle horns and the molecular mechanisms underlying sexual dimorphism.
日本独角仙 Trypoxylus dichotomus 是一种巨型甲虫,雄性头部和前胸区域有明显夸张的角。T. dichotomus 已被用作进化发育生物学、生态学、行为学、仿生学和药物发现等各个领域的研究模型。在这项研究中,使用 10×Chromium 平台获得了代表通过流式细胞术估计的基因组 80%的 615Mb 从头组装。基因组组装的支架 N50 长度为 8.02Mb,预测重复元件占组装的 49.5%。总共预测了 23987 个编码蛋白质的基因。此外,通过从两性和发育阶段的各种组织生成 16 个 RNA-seq 文库,对线粒体基因组进行了从头组装,得到了一个 20217bp 的连续体。我们还通过分析转录组,从两性和发育阶段的各种组织中生成了 16 个 RNA-seq 文库,鉴定出了 13 个共表达基因模块。我们专注于与角形成相关的基因,并深入了解基因库的进化和性二态性,例如 doublesex 基因的性别特异性剪接模式。该基因组信息将成为进一步进行功能和进化分析的极好资源,包括甲虫角的进化起源和遗传调控以及性二态性的分子机制。