De novo genome assembly of the medicinal plant Gentiana macrophylla provides insights into the genomic evolution and biosynthesis of iridoids

被引:9
作者
Zhou, Tao [1 ]
Bai, Guoqing [2 ,3 ]
Hu, Yiheng [4 ]
Ruhsam, Markus [5 ]
Yang, Yanci [6 ]
Zhao, Yuemei [7 ]
机构
[1] Xi An Jiao Tong Univ, Sch Pharm, Xian 710061, Peoples R China
[2] Inst Bot Shaanxi Prov, Xian Bot Garden Shaanxi Prov, Shaanxi Engn Res Ctr Conservat & Utilizat Bot Res, Xian 710061, Peoples R China
[3] Shaanxi Eins Ecol Sci & Technol Co Ltd, Xian, Peoples R China
[4] Chinese Acad Sci, Inst Bot, State Key Lab Systemat & Evolutionary Bot, Beijing, Peoples R China
[5] Royal Bot Garden Edinburgh, 20A Inverleith Row, Edinburgh EH3 5LR, Midlothian, Scotland
[6] Baotou TeachersColl, Sch Biol Sci & Technol, Baotou, Peoples R China
[7] Guizhou Educ Univ, Sch Biol Sci, Guiyang, Peoples R China
基金
中国国家自然科学基金;
关键词
medicinal plant; Gentiana macrophylla; genome assembly; whole-genome duplication; iridoid biosynthesis; CHROMOSOME-LEVEL GENOME; DENDROBIUM-OFFICINALE; TRANSPOSABLE ELEMENTS; ALIGNMENT; GENE; ANNOTATION; ACCURATE; IDENTIFICATION; REVEALS; PROGRAM;
D O I
10.1093/dnares/dsac034
中图分类号
Q3 [遗传学];
学科分类号
071007 ; 090102 ;
摘要
Gentiana macrophylla is a perennial herb in the Gentianaceae family, whose dried roots are used in traditional Chinese medicine. Here, we assembled a chromosome-level genome of G. macrophylla using a combination of Nanopore, Illumina, and Hi-C scaffolding approaches. The final genome size was similar to 1.79 Gb (contig N50 = 720.804 kb), and 98.89% of the genome sequences were anchored on 13 pseudochromosomes (scaffold N50 = 122.73 Mb). The genome contained 55,337 protein-coding genes, and 73.47% of the assemblies were repetitive sequences. Genome evolution analysis indicated that G. macrophylla underwent two rounds of whole-genome duplication after the core eudicot. genome triplication event. We further identified candidate genes related to the biosynthesis of iridoids, and the corresponding gene families mostly expanded in G. macrophylla. In addition, we found that root-specific genes are enriched in pathways involved in defense responses, which may greatly improve the biological adaptability of G. macrophylla. Phylogenomic analyses showed a sister relationship of asterids and rosids, and all Gentianales species formed a monophyletic group. Our study contributes to the understanding of genome evolution and active component biosynthesis in G. macrophylla and provides important genomic resource for the genetic improvement and breeding of G. macrophylla.
引用
收藏
页数:15
相关论文
共 50 条
[31]   Gapless Genome Assembly of Puccinia triticina Provides Insights into Chromosome Evolution in Pucciniales [J].
Li, Chuang ;
Qiao, Liuhui ;
Lu, Yanan ;
Xing, Guozhen ;
Wang, Xiaodong ;
Zhang, Gengyun ;
Qian, Huimin ;
Shen, Yilin ;
Zhang, Yibo ;
Yao, Wen ;
Cheng, Kun ;
Ma, Zhenling ;
Liu, Na ;
Wang, Daowen ;
Zheng, Wenming .
MICROBIOLOGY SPECTRUM, 2023, 11 (01)
[32]   The Chromosome-level genome of Aesculus wilsonii provides new insights into terpenoid biosynthesis and Aesculus evolution [J].
Ye, Lichun ;
Yang, Lulu ;
Wang, Bo ;
Chen, Gang ;
Jiang, Liping ;
Hu, Zhigang ;
Shi, Zhaohua ;
Liu, Yifei ;
Chen, Shilin .
FRONTIERS IN PLANT SCIENCE, 2022, 13
[33]   A near-complete assembly of the Houttuynia cordata genome provides insights into the regulatory mechanism of flavonoid biosynthesis in Yuxingcao [J].
Yang, Zhengting ;
He, Fayin ;
Mai, Yingxiao ;
Fan, Sixian ;
An, Yin ;
Li, Kun ;
Wu, Fengqi ;
Tang, Ming ;
Yu, Hui ;
Liu, Jian-Xiang ;
Xia, Rui .
PLANT COMMUNICATIONS, 2024, 5 (10)
[34]   Chromosome-level genome assembly of Prunella vulgaris L. provides insights into pentacyclic triterpenoid biosynthesis [J].
Zhang, Sixuan ;
Meng, Fanqi ;
Pan, Xian ;
Qiu, Xiaoxiao ;
Li, Caili ;
Lu, Shanfa .
PLANT JOURNAL, 2024, 118 (03) :731-752
[35]   Chromosome-Level Genome Assembly Provides New Insights into Genome Evolution and Tuberous Root Formation of Potentilla anserina [J].
Gan, Xiaolong ;
Li, Shiming ;
Zong, Yuan ;
Cao, Dong ;
Li, Yun ;
Liu, Ruijuan ;
Cheng, Shu ;
Liu, Baolong ;
Zhang, Huaigang .
GENES, 2021, 12 (12)
[36]   Telomere-to-telomere Phragmites australis reference genome assembly with a B chromosome provides insights into its evolution and polysaccharide biosynthesis [J].
Cui, Jipeng ;
Wang, Rui ;
Gu, Ruoqing ;
Chen, Minghui ;
Wang, Ziyao ;
Li, Li ;
Hong, Jianming ;
Cui, Suxia .
COMMUNICATIONS BIOLOGY, 2025, 8 (01)
[37]   Current challenges in de novo plant genome sequencing and assembly [J].
Schatz, Michael C. ;
Witkowski, Jan ;
McCombie, W. Richard .
GENOME BIOLOGY, 2012, 13 (04)
[38]   The genome of Magnolia biondii Pamp. provides insights into the evolution of Magnoliales and biosynthesis of terpenoids [J].
Dong, Shanshan ;
Liu, Min ;
Liu, Yang ;
Chen, Fei ;
Yang, Ting ;
Chen, Lu ;
Zhang, Xingtan ;
Guo, Xing ;
Fang, Dongming ;
Li, Linzhou ;
Deng, Tian ;
Yao, Zhangxiu ;
Lang, Xiaoan ;
Gong, Yiqing ;
Wu, Ernest ;
Wang, Yaling ;
Shen, Yamei ;
Gong, Xun ;
Liu, Huan ;
Zhang, Shouzhou .
HORTICULTURE RESEARCH, 2021, 8 (01)
[39]   The reference genome of Camellia chekiangoleosa provides insights into Camellia evolution and tea oil biosynthesis [J].
Shen, Teng-Fei ;
Huang, Bin ;
Xu, Meng ;
Zhou, Peng-Yan ;
Ni, Zhou-Xian ;
Gong, Chun ;
Wen, Qiang ;
Cao, Fu-Liang ;
Xu, Li-An .
HORTICULTURE RESEARCH, 2022, 9
[40]   The Hardy Rubber Tree Genome Provides Insights into the Evolution of Polyisoprene Biosynthesis [J].
Wuyun, Ta-na ;
Wang, Lin ;
Liu, Huimin ;
Wang, Xuewen ;
Zhang, Liangsheng ;
Bennetzen, Jeffrey L. ;
Li, Tiezhu ;
Yang, Lirong ;
Liu, Panfeng ;
Du, Lanying ;
Wang, Lu ;
Huang, Mengzhen ;
Qing, Jun ;
Zhu, Lili ;
Bao, Wenquan ;
Li, Hongguo ;
Du, Qingxin ;
Zhu, Jingle ;
Yang, Hong ;
Yang, Shuguang ;
Liu, Hui ;
Yue, Hui ;
Hu, Jiang ;
Yu, Guoliang ;
Tian, Yu ;
Liang, Fan ;
Hu, Jingjing ;
Wang, Depeng ;
Gao, Ruiwen ;
Li, Dejun ;
Du, Hongyan .
MOLECULAR PLANT, 2018, 11 (03) :429-442