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基于等位基因感知的黄花蒿染色体水平基因组组装揭示 ADS 扩增与青蒿素产量的相关性。

Allele-aware chromosome-level genome assembly of Artemisia annua reveals the correlation between ADS expansion and artemisinin yield.

机构信息

Institute of Chinese Materia Medica, China Academy of Chinese Medical Sciences, Beijing 100700, China; Key Laboratory of Quality Evaluation of Chinese Medicine of the Guangdong Provincial Medical Products Administration, the Second Clinical College, Guangzhou University of Chinese Medicine, Guangzhou 510006, China.

Institute of Chinese Materia Medica, China Academy of Chinese Medical Sciences, Beijing 100700, China; Institute of Medicinal Plant Development, Chinese Academy of Medical Sciences, Beijing 100193, China.

出版信息

Mol Plant. 2022 Aug 1;15(8):1310-1328. doi: 10.1016/j.molp.2022.05.013. Epub 2022 Jun 1.

Abstract

Artemisia annua is the major natural source of artemisinin, an anti-malarial medicine commonly used worldwide. Here, we present chromosome-level haploid maps for two A. annua strains with different artemisinin contents to explore the relationships between genomic organization and artemisinin production. High-fidelity sequencing, optical mapping, and chromatin conformation capture sequencing were used to assemble the heterogeneous and repetitive genome and resolve the haplotypes of A. annua. Approximately 50,000 genes were annotated for each haplotype genome, and a triplication event that occurred approximately 58.12 million years ago was examined for the first time in this species. A total of 3,903,467-5,193,414 variants (SNPs, indels, and structural variants) were identified in the 1.5-Gb genome during pairwise comparison between haplotypes, consistent with the high heterozygosity of this species. Genomic analyses revealed a correlation between artemisinin concents and the copy number of amorpha-4,11-diene synthase genes. This correlation was further confirmed by resequencing of 36 A. annua samples with varied artemisinin contents. Circular consensus sequencing of transcripts facilitated the detection of paralog expression. Collectively, our study provides chromosome-level allele-aware genome assemblies for two A. annua strains and new insights into the biosynthesis of artemisinin and its regulation, which will contribute to conquering malaria worldwide.

摘要

青蒿是青蒿素的主要天然来源,青蒿素是一种在世界范围内广泛使用的抗疟药物。在这里,我们呈现了两种青蒿素含量不同的青蒿菌株的染色体水平单倍型图谱,以探索基因组组织与青蒿素生产之间的关系。高保真测序、光学图谱和染色质构象捕获测序被用于组装异质和重复的基因组,并解析青蒿的单倍型。每个单倍型基因组大约注释了 50000 个基因,并且首次在该物种中检查了大约 5.812 亿年前发生的三倍事件。在两个单倍型之间的 1.5Gb 基因组的成对比较中,共鉴定出 3903467-5193414 个变异(SNP、插入缺失和结构变异),与该物种的高度杂合性一致。基因组分析显示青蒿素含量与 amorpha-4,11-diene 合酶基因的拷贝数之间存在相关性。通过对 36 个青蒿素含量不同的青蒿样本进行重测序,进一步证实了这种相关性。对转录物进行圆形一致测序有助于检测基因的表达。总的来说,我们的研究为两种青蒿菌株提供了染色体水平的等位基因感知基因组组装,并为青蒿素的生物合成及其调控提供了新的见解,这将有助于在全球范围内战胜疟疾。

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