生物
转座因子
多倍体
遗传学
基因
染色质
基因表达
转录组
计算生物学
基因组
基因表达调控
进化生物学
表达式(计算机科学)
基因调控网络
转录因子
基因组学
功能基因组学
DNA转座因子
系统发育学
基因表达谱
多样性(政治)
基因复制
调节顺序
杠杆(统计)
作者
Liel Gribun,Khalil Kashkush
出处
期刊:Plant Journal
[Wiley]
日期:2026-01-01
卷期号:125 (2): e70679-e70679
摘要
Bread wheat (Triticum aestivum L.) is an allohexaploid (AABBDD) whose three ancestral subgenomes generate complex patterns of gene regulation. Most genes exist as homoeologous triads, and the relative expression balance among copies, homoeolog expression bias, is central to polyploid evolution and adaptation. Recent high-quality assemblies, long-read transcriptomics, and pan-transcriptome resources have uncovered extensive cultivar-specific transcriptional diversity. Because transposable elements (TEs) compose over 80% of the wheat genome, they are prime candidates for shaping subgenome asymmetry. We synthesize recent pan-genomic and transcriptomic evidence, including genome-wide associations between TE insertions and genome-specific expression, and propose a unifying framework in which TEs modulate homoeolog expression by donating cis-regulatory sequences, altering chromatin states, producing small RNAs, and driving structural variation. We discuss experimental and computational challenges for establishing causality, and outline future functional and translational strategies to leverage TE-associated regulatory diversity in wheat breeding.
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