生物
顺序装配
基因组
紫草科
多倍体
进化生物学
基因组学
适应(眼睛)
使负有责任或义务
适应性
植物进化
基因
系统基因组学
比较基因组学
系统发育树
纳米孔测序
基因组大小
计算生物学
转录组
遗传学
合成生物学
植物
DNA测序
系统发育学
作者
Tianqi Sun,Yuman Tang,Min Yang,Xuan Ma,Huaxia Qin,Chun Sui
标识
DOI:10.1016/j.indcrop.2026.122874
摘要
Arnebia euchroma (Royle) I. M. Johnst. is known for producing shikonin, a purplish-red bioactive compound in its roots. This perennial Boraginaceae herb is widely distributed in the frigid Pamir Knot of Asia, and has been extensively utilized in medicine, textile, food and cosmetics industries. Using PacBio and Hi-C technologies, we sequenced and assembled its chromosome-level genome of 2.51 Gb, with Contig N50 at 39.20 Mb and Scaffold N50 at 364.98 Mb. A total of 37,166 protein-coding genes were annotated. Comparative genomic and phylogenomic analyses were performed to explore the molecular basis of its ecological adaptability and evolutionary history. An exceptionally high TEs content of 79.51 % was observed, with two LTR-RTs insertion bursts occurring within the past 0–1 million years, suggesting that A. euchroma may still be in a stage of rapid evolution. Compared with phylogenetic ancestors, A. euchroma shows the expansion of stress resistance gene families that partly explains its genetic adaptation to high-altitude environments. Significant CYP76B subfamily expansion was found, and Aeu01G026690 was first identified as potentially encoding enzyme catalyzing GHQ-3"-OH to deoxyshikonin. Integrated transcriptomic and metabolomic analyses show that deoxyshikonin-to-shikonin step is the key in the difference of shikonin and derivatives between bark and xylem. This high-quality genomic resource offers deeper insights into A. euchroma' s mechanisms of adaptive evolution and shikonin biosynthesis and provides a foundation for plant evolutionary biology and synthetic biology research of A. euchroma , facilitating the conservation and breeding of this species as well as other endangered plant resources in the Boraginaceae family. • First chromosome-level genome assembly of Arnebia euchroma was sequenced and assembled. • Elucidated genomic mechanisms of A. euchroma 's ecological adaptation and evolutionary status. • Revealed deeper insights into A. euchroma 's shikonin biosynthesis. • Aeu01G026690 was first identified as potentially encoding enzyme catalyzing GHQ-3"-OH to deoxyshikonin.
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