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从头组装. 的基因组并进行系统发育分析。

De Novo Genome Assembly and Phylogenetic Analysis of .

机构信息

School of Liberal Arts and Sciences, Korea National University of Transportation, Chungju 27469, Republic of Korea.

Department of Biology Education, Korea National University of Education, Cheongju 28173, Republic of Korea.

出版信息

Genes (Basel). 2024 Sep 27;15(10):1269. doi: 10.3390/genes15101269.

Abstract

, a pharmaceutically valuable plant from the Asteraceae family, has been utilized for over 2000 years. Unlike other thistles, it is native to East Asia and found exclusively on Ulleung Island on the Korea Peninsula. Despite its significance, the genome information of has remained unclear. In this study, we assembled the genome of using both short reads from Illumina sequencing and long reads from Nanopore sequencing. The assembled genome is 929.4 Mb in size with an N50 length of 0.7 Mb, covering 95.1% of BUSCO core groups listed in edicots_odb10. Repeat sequences accounted for 70.94% of the assembled genome. We curated 31,263 protein-coding genes, of which 28,752 were functionally annotated using public databases. Phylogenetic analysis of 11 plant species using single-copy orthologs revealed that diverged from approximately 15.9 million years ago. Gene family evolutionary analysis revealed significant expansion and contraction in genes involved in abscisic acid biosynthesis, late endosome to vacuole transport, response to nitrate, and abaxial cell fate specification. This study provides a reference genome of , enhancing our understanding of its genetic background and facilitating an exploration of genetic resources for beneficial phytochemicals.

摘要

作为菊科的一种有药用价值的植物,已经有超过 2000 年的应用历史。与其他蓟属植物不同,它原产于东亚,仅在朝鲜半岛的郁陵岛发现。尽管具有重要意义,但 的基因组信息仍不清楚。 在这项研究中,我们使用 Illumina 测序的短读长和 Nanopore 测序的长读长组装了 的基因组。组装的基因组大小为 929.4 Mb,N50 长度为 0.7 Mb,覆盖了 edicots_odb10 中列出的核心有胚植物 BUSCO 组的 95.1%。重复序列占组装基因组的 70.94%。我们整理了 31263 个编码蛋白质的基因,其中 28752 个基因使用公共数据库进行了功能注释。使用 11 种植物的单拷贝直系同源物进行的系统发育分析表明, 大约在 1590 万年前从 分化而来。基因家族进化分析表明,在参与脱落酸生物合成、晚期内体到液泡运输、硝酸盐响应和背侧细胞命运特化的基因中发生了显著的扩张和收缩。 这项研究提供了 的参考基因组,增强了我们对其遗传背景的理解,并促进了对有益植物化学物质遗传资源的探索。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/37e6/11507141/2166716c9748/genes-15-01269-g001.jpg

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