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唇形目染色体水平的组装及比较基因组分析揭示了基因组进化情况。

Chromosome-level assembly of and comparative genomic analyses shed light on genome evolution in Lamiales.

作者信息

Chen Bao-Zheng, Li Da-Wei, Luo Kai-Yong, Jiu Song-Tao, Dong Xiao, Wang Wei-Bin, Li Xu-Zhen, Hao Ting-Ting, Lei Ya-Hui, Guo Da-Zhong, Liu Xu-Tao, Duan Sheng-Chang, Zhu Yi-Fan, Chen Wei, Dong Yang, Yu Wen-Bin

机构信息

College of Food Science and Technology, Yunnan Agricultural University, Kunming, Yunnan, China.

Yunnan Provincial Key Laboratory of Biological Big Data, Yunnan Agricultural University, Kunming, Yunnan, China.

出版信息

Front Plant Sci. 2024 Aug 2;15:1444234. doi: 10.3389/fpls.2024.1444234. eCollection 2024.

Abstract

Lamiales, comprising over 23,755 species across 24 families, stands as a highly diverse and prolific plant group, playing a significant role in the cultivation of horticultural, ornamental, and medicinal plant varieties. Whole-genome duplication (WGD) and its subsequent post-polyploid diploidization (PPD) process represent the most drastic type of karyotype evolution, injecting significant potential for promoting the diversity of this lineage. However, polyploidization histories, as well as genome and subgenome fractionation following WGD events in Lamiales species, are still not well investigated. In this study, we constructed a chromosome-level genome assembly of (Orobanchaceae) and conducted comparative genomic analyses with 14 other Lamiales species. is positioned closest to the parasitic lineage within Orobanchaceae and has a conserved karyotype. Through a combination of Ks analysis and syntenic depth analysis, we reconstructed and validated polyploidization histories of Lamiales species. Our results indicated that underwent three rounds of diploidization events following the γ-WGT event, rather than two rounds as reported. Besides, we reconfirmed that most Lamiales species shared a common diploidization event (L-WGD). Subsequently, we constructed the Lamiales Ancestral Karyotype (LAK), comprising 11 proto-chromosomes, and elucidated its evolutionary trajectory, highlighting the highly flexible reshuffling of the Lamiales paleogenome. We identified biased fractionation of subgenomes following the L-WGD event across eight species, and highlighted the positive impacts of non-WGD genes on gene family expansion. This study provides novel genomic resources and insights into polyploidy and karyotype remodeling of Lamiales species, essential for advancing our understanding of species diversification and genome evolution.

摘要

唇形目包含24个科的超过23755个物种,是一个高度多样化且种类繁多的植物类群,在园艺、观赏和药用植物品种的栽培中发挥着重要作用。全基因组复制(WGD)及其随后的多倍体后二倍体化(PPD)过程代表了最剧烈的核型进化类型,为促进该谱系的多样性注入了巨大潜力。然而,唇形目物种的多倍体化历史以及WGD事件后的基因组和亚基因组分离情况仍未得到充分研究。在本研究中,我们构建了一种列当属植物(列当科)的染色体水平基因组组装,并与其他14种唇形目物种进行了比较基因组分析。该列当属植物在列当科中最接近寄生谱系,并且具有保守的核型。通过Ks分析和共线性深度分析相结合的方法,我们重建并验证了唇形目物种的多倍体化历史。我们的结果表明,该列当属植物在γ-WGT事件后经历了三轮二倍体化事件,而不是之前报道的两轮。此外,我们再次证实,大多数唇形目物种共享一个共同的二倍体化事件(L-WGD)。随后,我们构建了由11条原始染色体组成的唇形目祖先核型(LAK),并阐明了其进化轨迹,突出了唇形目古基因组的高度灵活重排。我们确定了八个物种在L-WGD事件后亚基因组的偏向性分离,并强调了非WGD基因对基因家族扩张的积极影响。这项研究为唇形目物种的多倍体和核型重塑提供了新的基因组资源和见解,对于增进我们对物种多样化和基因组进化的理解至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/43cc/11327160/b36de2bab5d0/fpls-15-1444234-g001.jpg

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