National Key Laboratory of Crop Genetic Improvement, College of Plant Science and Technology, Huazhong Agricultural University, Wuhan 430070, P.R. China.
PLoS Genet. 2020 Apr 24;16(4):e1008764. doi: 10.1371/journal.pgen.1008764. eCollection 2020 Apr.
Enhancers are cis-acting DNA segments with the ability to increase target gene expression. They show high sensitivity to DNase and contain specific DNA elements in an open chromatin state that allows the binding of transcription factors (TFs). While numerous enhancers are annotated in the maize genome, few have been characterized genetically. KERNEL ROW NUMBER4 (KRN4), an intergenic quantitative trait locus for kernel row number, is assumed to be a cis-regulatory element of UNBRANCHED3 (UB3), a key inflorescence gene. However, the mechanism by which KRN4 controls UB3 expression remains unclear. Here, we found that KRN4 exhibits an open chromatin state, harboring sequences that showed high enhancer activity toward the 35S and UB3 promoters. KRN4 is bound by UB2-centered transcription complexes and interacts with the UB3 promoter by three duplex interactions to affect UB3 expression. Sequence variation at KRN4 enhances ub2 and ub3 mutant ear fasciation. Therefore, we suggest that KRN4 functions as a distal enhancer of the UB3 promoter via chromatin interactions and recruitment of UB2-centered transcription complexes for the fine-tuning of UB3 expression in meristems of ear inflorescences. These results provide evidence that an intergenic region helps to finely tune gene expression, providing a new perspective on the genetic control of quantitative traits.
增强子是具有增加靶基因表达能力的顺式作用 DNA 片段。它们对 DNase 高度敏感,并且在开放染色质状态下包含特定的 DNA 元件,允许转录因子 (TFs) 结合。虽然在玉米基因组中注释了许多增强子,但只有少数在遗传上得到了表征。KERNEL ROW NUMBER4 (KRN4) 是 kernel row number 的一个基因间数量性状位点,假定是 UNBRANCHED3 (UB3) 的顺式调控元件,UB3 是一个关键的花序基因。然而,KRN4 控制 UB3 表达的机制尚不清楚。在这里,我们发现 KRN4 表现出开放染色质状态,含有对 35S 和 UB3 启动子表现出高增强子活性的序列。KRN4 被以 UB2 为中心的转录复合物结合,并通过三个双链相互作用与 UB3 启动子相互作用,从而影响 UB3 的表达。KRN4 序列变异增强了 ub2 和 ub3 突变体的 ear fasciation。因此,我们认为 KRN4 通过染色质相互作用作为 UB3 启动子的远端增强子发挥作用,并募集以 UB2 为中心的转录复合物,用于精细调节 ear 花序分生组织中 UB3 的表达。这些结果提供了证据表明,一个基因间区域有助于精细调节基因表达,为数量性状的遗传控制提供了新的视角。