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◆ iMeta2026-08-01

Two near-complete assemblies reveal R-subgenome structural and centromeric divergence associated with reproductive isolation in hexaploid triticale.

Yang Liu, Wanna He, Chunhui Wang, Congyang Yi, Tianxin Guo, Congle Zhu, Qian Liu, Fangpu Han

原始摘要(英文原文)· Original abstract
We present two near-complete triticale genome assemblies and perform pan-centromere analyses across >200 haplotypes from parental species, synthetic allopolyploids, cultivars, and 337 resequenced accessions, revealing a shared chromatin framework underlying functional centromeres in all three subgenomes, where wheat- and rye-derived CENH3 co-occupy divergent centromeric repeats. Postpolyploid evolution drives extensive centromere remodeling, including size convergence, repeat turnover, and locus repositioning, with the R subgenome emerging as the primary source of structural and centromeric divergence. In F1 hybrids, R-subgenome structural and centromeric divergence is associated with meiotic abnormalities, including chromosome misalignment, lagging chromosomes, and micronuclei formation, suggesting a link between centromere variation and reduced meiotic stability.
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Two near-complete assemblies reveal R-subgenome structural and centromeric divergence associated with reproductive isolation in hexaploid triticale. — 科研速览 Science Skim