核型
生物
谱系(遗传)
遗传学
进化生物学
染色体
染色体重排
基因组
染色体易位
断点
基因
作者
Xinyao Jiang,Quanjun Hu,Dong Mei,Xiaonan Li,Ling Xiang,Ihsan A. Al‐Shehbaz,Xiaoming Song,Jianquan Liu,Martin A. Lysák,Pengchuan Sun
标识
DOI:10.1038/s41467-025-59640-2
摘要
The ancestral crucifer karyotype and 22 conserved genomic blocks (CGBs) facilitate phylogenomic analyses in the Brassicaceae. Chromosomal rearrangements reshuffled CGBs of ancestral chromosomes during karyotype evolution. Here, we identify eight protochromosomes representing the common ancestral karyotype (ACBK) of the two Brassicoideae supertribes: Camelinodae (Lineage I) and Brassicodae (Lineage II). The characterization of multiple cascading fusion events allows us to infer evolutionary relationships based on these events. In the Camelinodae, the ACBK first evolved into the AKI genome, which remained conserved in the Cardamineae, whereas it was altered to tAKI by a reciprocal translocation that preceded the diversification of most Camelinodae tribes. The identified fusion breakpoints largely overlap with CGB boundaries, suggesting that CGBs are mainly disrupted by chromosome fusions. Our results demonstrate the stable inheritance of chromosome fusions and their importance for reconstructing evolutionary relationships. The chromosomal breakpoint approach provides a basis for ancestral state reconstruction based on chromosome-level genome assemblies.
科研通智能强力驱动
Strongly Powered by AbleSci AI