The Isodon serra genome sheds light on tanshinone biosynthesis and reveals the recursive karyotype evolutionary histories within Lamiales

IF 6.2 1区 生物学 Q1 PLANT SCIENCES
Liqiang Hou, Zhimin Niu, Zeyu Zheng, Jin Zhang, Changhong Luo, Xiaojuan Wang, Yongzhi Yang, Ying Li, Qiao Chen
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引用次数: 0

Abstract

Lamiales is one of the largest orders of angiosperms with a complex evolutionary history and plays a significant role in human life. However, the polyploidization and chromosome evolution histories within this group remain in mystery. Among Lamiales, Isodon serra (Maxim.) Kudô shines for its abundance of diterpenes, notably tanshinones, long used in East Asia to combat toxicity and inflammation. Yet, the genes driving its biosynthesis and the factors governing its regulation linger in obscurity. Here, we present the telomere-to-telomere genome assembly of I. serra and, through gene-to-metabolite network analyses, pinpoint the pivotal tanshinone biosynthesis genes and their co-expressed transcription factors. Particularly, through luciferase (LUC) assays, we speculate that IsMYB-13 and IsbHLH-8 may upregulate IsCYP76AH101, which is the key step in the biosynthesis of the tanshinone precursor. Among Lamiales, Oleaceae, Gesneriaceae and Plantaginaceae successively sister to a clade of seven Lamiales families, all sharing a recent whole-genome duplication (designated as α event). By reconstructing the ancestral Lamiales karyotypes (ALK) and post-α event (ALKα), we trace chromosomal evolution trajectories across Lamiales species. Notably, one chromosomal fusion is detected from ALK to ALKα, and three shared chromosomal fusion events are detected sequentially from ALKα to I. serra, which fully supports the phylogeny constructed using single-copy genes. This comprehensive study illuminates the genome evolution and chromosomal dynamics of Lamiales, further enhancing our understanding of the biosynthetic mechanisms underlying the medicinal properties of I. serra.

Isodon serra基因组揭示了丹参酮的生物合成,揭示了叠层动物的递归核型进化史。
层叠属是被子植物中最大的目之一,具有复杂的进化历史,在人类生活中起着重要的作用。然而,这个群体的多倍体化和染色体进化史仍然是一个谜。在Lamiales中,Isodon serra (Maxim)。Kudô以其丰富的二萜而闻名,尤其是丹参酮,长期以来在东亚用于对抗毒性和炎症。然而,驱动其生物合成的基因和控制其调控的因素仍然不为人知。在这里,我们展示了serra的端粒到端粒基因组组装,并通过基因到代谢物网络分析,确定了关键的丹参酮生物合成基因及其共表达的转录因子。特别是,通过荧光素酶(LUC)检测,我们推测IsMYB-13和IsbHLH-8可能上调isyp76ah101,这是丹参酮前体生物合成的关键步骤。在层叠科中,油菜科、苦苣苔科和车前草科依次是七个层叠科的一个分支的姐妹,它们都具有最近的全基因组重复(称为α事件)。通过重建祖先纹条螈的染色体核型(ALK)和α后事件(ALKα),我们追踪了纹条螈不同物种的染色体进化轨迹。值得注意的是,从ALK到ALKα检测到一条染色体融合,从ALKα到I. serra依次检测到三条共享染色体融合事件,这完全支持了单拷贝基因构建的系统发育。这项全面的研究阐明了拉丝虫的基因组进化和染色体动力学,进一步增强了我们对拉丝虫药用特性的生物合成机制的理解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
The Plant Journal
The Plant Journal 生物-植物科学
CiteScore
13.10
自引率
4.20%
发文量
415
审稿时长
2.3 months
期刊介绍: Publishing the best original research papers in all key areas of modern plant biology from the world"s leading laboratories, The Plant Journal provides a dynamic forum for this ever growing international research community. Plant science research is now at the forefront of research in the biological sciences, with breakthroughs in our understanding of fundamental processes in plants matching those in other organisms. The impact of molecular genetics and the availability of model and crop species can be seen in all aspects of plant biology. For publication in The Plant Journal the research must provide a highly significant new contribution to our understanding of plants and be of general interest to the plant science community.
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