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白芷染色体水平的基因组为 Apioideae 进化和药用成分生物合成提供了新见解。

A chromosome-scale genome of Peucedanum praeruptorum provide insights into Apioideae evolution and medicinal ingredient biosynthesis.

机构信息

Anhui Dabieshan Academy of Traditional Chinese Medicine, Anhui Engineering Laboratory for Conservation and Sustainable Utilization of Traditional Chinese Medicine Resources, Anhui Engineering Research Center for Eco-agriculture of Traditional Chinese Medicine, College of Biological and Pharmaceutical Engineering, West Anhui University, Lu'an 237012, China.

Henan Key Laboratory of Rare Diseases, Endocrinology and Metabolism Center, The First Affiliated Hospital, College of Clinical Medicine of Henan University of Science and Technology, Luoyang 471003, China.

出版信息

Int J Biol Macromol. 2024 Jan;255:128218. doi: 10.1016/j.ijbiomac.2023.128218. Epub 2023 Nov 21.

Abstract

Peucedanum praeruptorum Dunn, a traditional Chinese medicine rich in coumarin, belongs to the Apiaceae family. A high-quality assembled genome of P. praeruptorum is lacking, which has posed obstacles to functional identification and molecular evolution studies of genes associated with coumarin production. Here, a chromosome-scale reference genome of P. praeruptorum, an important medicinal and aromatic plant, was first sequenced and assembled using Oxford Nanopore Technologies and Hi-C sequencing. The final assembled genome size was 1.83 Gb, with a contig N50 of 11.12 Mb. The entire BUSCO evaluation and second-generation read comparability rates were 96.0 % and 99.31 %, respectively. Furthermore, 99.91 % of the genome was anchored to 11 pseudochromosomes. The comparative genomic study revealed the presence of 18,593 orthogroups, which included 476 species-specific orthogroups and 1211 expanded gene families. Two whole-genome duplication (WGD) events and one whole-genome triplication (WGT) event occurred in P. praeruptorum. In addition to the γ-WGT shared by core eudicots or most eudicots, the first WGD was shared by Apiales, while the most recent WGD was unique to Apiaceae. Our study demonstrated that WGD events that occurred in Apioideae highlighted the important role of tandem duplication in the biosynthesis of coumarins and terpenes in P. praeruptorum. Additionally, the expansion of the cytochrome P450 monooxygenase, O-methyltransferase, ATP-binding cassette (ABC) transporter, and terpene synthase families may be associated with the abundance of coumarins and terpenoids. Moreover, we identified >170 UDP-glucosyltransferase members that may be involved in the glycosylation post-modification of coumarins. Significant gene expansion was observed in the ABCG, ABCB, and ABCC subgroups of the ABC transporter family, potentially facilitating the transmembrane transport of coumarins after bolting. The P. praeruptorum genome provides valuable insights into the machinery of coumarin biosynthesis and enhances our understanding of Apiaceae evolution.

摘要

前胡(Peucedanum praeruptorum Dunn)是一种富含香豆素的传统中药,属于伞形科。由于缺乏高质量的前胡组装基因组,因此阻碍了与香豆素生产相关的基因的功能鉴定和分子进化研究。在这里,首次使用牛津纳米孔技术和 Hi-C 测序对前胡(一种重要的药用和芳香植物)的染色体规模参考基因组进行了测序和组装。最终组装的基因组大小为 18.3 亿碱基对,其 contig N50 为 11.12Mb。整个 BUSCO 评估和第二代读比较率分别为 96.0%和 99.31%。此外,基因组的 99.91%被锚定到 11 条假染色体上。比较基因组研究揭示了 18593 个直系同源群的存在,其中包括 476 个种特异性直系同源群和 1211 个扩展基因家族。在前胡中发生了两次全基因组复制(WGD)事件和一次全基因组三倍体化(WGT)事件。除了核心真双子叶植物或大多数真双子叶植物共有的γ-WGT 外,第一次 WGD 发生在伞形目植物中,而最近的 WGD 则是伞形科植物所特有的。我们的研究表明,发生在前胡科植物中的 WGD 事件突出了串联重复在后胡中香豆素和萜类生物合成中的重要作用。此外,细胞色素 P450 单加氧酶、O-甲基转移酶、ATP 结合盒(ABC)转运蛋白和萜烯合酶家族的扩张可能与香豆素和萜类化合物的丰度有关。此外,我们鉴定了 >170 个 UDP-葡萄糖基转移酶成员,它们可能参与香豆素的糖基化后修饰。ABC 转运蛋白家族的 ABCG、ABCB 和 ABCC 亚组中观察到显著的基因扩张,这可能有助于在抽薹后促进香豆素的跨膜运输。前胡基因组为香豆素生物合成的机制提供了有价值的见解,并增强了我们对伞形科进化的理解。

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