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多倍体小麦亚基因组着丝粒的独特进化轨迹

Distinct evolutionary trajectories of subgenomic centromeres in polyploid wheat.

作者信息

Huang Yuhong, Liu Yang, Liu Chang, Yi Congyang, Lai Jinsheng, Ling Hongqing, Su Handong, Han Fangpu

机构信息

Institute of Genetics and Developmental Biology, Chinese Academy of Sciences, 100101, Beijing, China.

China Agricultural University, Beijing, 100193, China.

出版信息

Genome Biol. 2025 Sep 9;26(1):271. doi: 10.1186/s13059-025-03759-4.

Abstract

BACKGROUND

Centromeres are crucial for precise chromosome segregation and maintaining genome stability during cell division. However, their evolutionary dynamics, particularly in polyploid organisms with complex genomic architectures, remain largely enigmatic. Allopolyploid wheat, with its well-defined hierarchical ploidy series and recent polyploidization history, serves as an excellent model to explore centromere evolution.

RESULTS

In this study, we perform a systematic comparative analysis of centromeres in common wheat and its corresponding ancestral species, utilizing the latest comprehensive reference genome assembly available. Our findings reveal that wheat centromeres predominantly consist of five types of centromeric-specific retrotransposon elements (CRWs), with CRW1 and CRW2 being the most prevalent. We identify distinct evolutionary trajectories in the functional centromeres of each subgenome, characterized by variations in copy number, insertion age, and CRW composition. By utilizing CENH3-ChIP data across various ploidy levels, we uncover a series of CRW invasion events that have shaped the evolution of AA subgenome centromeres. Conversely, the evolutionary process of the DD subgenome centromeres involves their expansion from diploid to hexaploid wheat, facilitating adaptation to a larger genomic context. Integration of complete einkorn centromere assemblies and Aegilops tauschii pan-genomes further revealed subgenome-specific centromere evolutionary trajectories. By inclusion of synthetic hexaploid from S-S generations, alongside 2x/6 × natural accessions, we demonstrate that DD subgenome centromere expansion represents a gradual evolutionary process rather than an immediate response to polyploidization.

CONCLUSIONS

Our study provides a comprehensive landscape of centromere adaptation, evolution, and maturation, along with insights into how retrotransposon invasions drive centromere evolution in polyploid wheat.

摘要

背景

着丝粒对于细胞分裂过程中精确的染色体分离和维持基因组稳定性至关重要。然而,它们的进化动态,特别是在具有复杂基因组结构的多倍体生物中,仍然很大程度上是个谜。异源多倍体小麦具有明确的层级倍性系列和近期的多倍体化历史,是探索着丝粒进化的绝佳模型。

结果

在本研究中,我们利用现有的最新综合参考基因组组装,对普通小麦及其相应的祖先物种的着丝粒进行了系统的比较分析。我们的研究结果表明,小麦着丝粒主要由五种着丝粒特异性反转录转座子元件(CRW)组成,其中CRW1和CRW2最为普遍。我们在每个亚基因组的功能着丝粒中确定了不同的进化轨迹,其特征在于拷贝数、插入年龄和CRW组成的变化。通过利用不同倍性水平的CENH3-ChIP数据,我们发现了一系列塑造AA亚基因组着丝粒进化的CRW入侵事件。相反,DD亚基因组着丝粒的进化过程涉及它们从二倍体小麦到六倍体小麦的扩展,有助于适应更大的基因组环境。整合完整的一粒小麦着丝粒组装和节节麦泛基因组进一步揭示了亚基因组特异性的着丝粒进化轨迹。通过纳入S-S世代的人工合成六倍体以及2x/6x天然材料,我们证明DD亚基因组着丝粒扩展代表了一个渐进的进化过程,而不是对多倍体化的即时反应。

结论

我们的研究提供了着丝粒适应度、进化和成熟的全面图景,同时深入了解了反转录转座子入侵如何推动多倍体小麦着丝粒的进化。

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