Yang Hanting, Wang Can, Zhou Guanru, Zhang Yuxuan, He Tianxing, Yang Lulu, Wu Ya, Wang Zhengnan, Tang Xin, Chen Gang, Liu Zhaoyu, Tang Huanyu, Zhou Hanlin, Kang Xumei, Zhang Sanyin, Leng Liang, Chen Shilin, Song Chi
Institute of Herbgenomics, Chengdu University of Traditional Chinese Medicine, Chengdu 611137, China.
Pharmacy College, Chengdu University of Traditional Chinese Medicine, Chengdu 611137, China.
Hortic Res. 2024 Jan 17;11(3):uhae022. doi: 10.1093/hr/uhae022. eCollection 2024 Mar.
is a commonly used spice worldwide, which possesses medicinal properties and fragrance. These characteristics are conferred, at least partially, by essential oils such as menthol. In this study, a gap-free assembly with a genome size of 414.3 Mb and 31,251 coding genes was obtained for 'Variegata'. Based on its high heterozygosity (1.5%), two complete haplotypic assemblies were resolved, with genome sizes of 401.9 and 405.7 Mb, respectively. The telomeres and centromeres of each haplotype were almost fully annotated. In addition, we detected a total of 41,135 structural variations. Enrichment analysis demonstrated that genes involved in terpenoid biosynthesis were affected by these structural variations. Analysis of volatile metabolites showed that mainly produces piperitenone oxide rather than menthol. We identified three genes in the genome which encode isopiperitenone reductase (ISPR), a key rate-limiting enzyme in menthol biosynthesis. However, the transcription levels of were low. Given that other terpenoid biosynthesis genes were expressed, may account for the accumulation of piperitenone oxide in this species. The findings of this study may provide a valuable resource for improving the detection rate and accuracy of genetic variants, thereby enhancing our understanding of their impact on gene function and expression. Moreover, our haplotype-resolved gap-free genome assembly offers novel insights into molecular marker-assisted breeding of .
是一种在全球广泛使用的香料,具有药用特性和香味。这些特性至少部分是由薄荷醇等精油赋予的。在本研究中,获得了‘Variegata’的无间隙组装基因组,其基因组大小为414.3 Mb,包含31,251个编码基因。基于其高杂合度(1.5%),解析出两个完整的单倍型组装,基因组大小分别为401.9 Mb和405.7 Mb。每个单倍型的端粒和着丝粒几乎都得到了完整注释。此外,我们共检测到41,135个结构变异。富集分析表明,参与萜类生物合成的基因受到这些结构变异的影响。挥发性代谢物分析表明,主要产生氧化胡椒酮而非薄荷醇。我们在基因组中鉴定出三个编码异胡薄荷酮还原酶(ISPR)的基因,ISPR是薄荷醇生物合成中的关键限速酶。然而,其转录水平较低。鉴于其他萜类生物合成基因有表达,这可能解释了该物种中氧化胡椒酮的积累。本研究结果可能为提高遗传变异的检测率和准确性提供有价值的资源,从而增进我们对其对基因功能和表达影响的理解。此外,我们的单倍型解析无间隙基因组组装为的分子标记辅助育种提供了新的见解。