Dainihon Jochugiku Co., Ltd., 1-1-11 Daikoku-cho, Toyonaka, Osaka 561-0827, Japan.
Department of Chemical Science and Engineering, Graduate School of Engineering, Kobe University, 1-1 Rokkodai-cho, Nada-ku, Kobe, Hyogo 657-8501, Japan.
Int J Mol Sci. 2022 Jun 24;23(13):7039. doi: 10.3390/ijms23137039.
The plant (painted daisy) is closely related to (pyrethrum daisy). However, produces large amounts of pyrethrins, a class of natural insecticides, whereas produces much smaller amounts of these compounds. Thus, comparative genomic analysis is expected to contribute a great deal to investigating the differences in biological defense systems, including pyrethrin biosynthesis. Here, we elucidated the 9.4 Gb draft genome of , consisting of 2,836,647 scaffolds and 103,680 genes. Comparative analyses of the draft genome of and that of , generated in our previous study, revealed distinct features of genes. While the genome contains more numerous ribosome-inactivating protein (RIP)-encoding genes, the number of higher-toxicity type-II RIP-encoding genes is larger in . Furthermore, the number of histidine kinases encoded by the genome is smaller than that of , suggesting a biological correlation with pyrethrin biosynthesis. Moreover, the flanking regions of pyrethrin biosynthesis-related genes are also distinct between these two plants. These results provide clues to the elucidation of species-specific biodefense systems, including the regulatory mechanisms underlying pyrethrin production.
该植物(彩叶草)与(除虫菊)关系密切。然而,产生大量的除虫菊酯,这是一类天然杀虫剂,而产生的这些化合物的量要小得多。因此,比较基因组分析有望对生物防御系统的差异做出很大贡献,包括除虫菊酯生物合成。在这里,我们阐明了 的 9.4 Gb 草图基因组,由 2836647 个支架和 103680 个基因组成。对 和我们之前研究中生成的 的草图基因组的比较分析揭示了 基因的独特特征。虽然 基因组包含更多数量的核糖体失活蛋白(RIP)编码基因,但 中编码更高毒性的 II 型 RIP 编码基因的数量更大。此外, 基因组编码的组氨酸激酶的数量小于 ,这表明与除虫菊酯生物合成存在生物学相关性。此外,这两种植物中除虫菊酯生物合成相关基因的侧翼区域也存在差异。这些结果为阐明包括除虫菊酯产生的调控机制在内的物种特异性生物防御系统提供了线索。