颖片
生物
遗传学
内含子
基因座(遗传学)
异位表达
表型
普通小麦
基因
植物
染色体
作者
Jing Liu,Zhaoyan Chen,Zhihui Wang,Zhaoheng Zhang,Xiaoming Xie,Zihao Wang,Lingling Chai,Long Song,Xuejiao Cheng,Man Feng,Xiaobo Wang,Yanhong Liu,Zhaorong Hu,Jiewen Xing,Zhenqi Su,Huiru Peng,Mingming Xin,Yingyin Yao,Weilong Guo,Qixin Sun,Jie Liu,Zhongfu Ni
出处
期刊:Molecular Plant
[Elsevier]
日期:2021-05-25
卷期号:14 (9): 1472-1488
被引量:40
标识
DOI:10.1016/j.molp.2021.05.021
摘要
Abstract Polish wheat (Triticum polonicum) is a unique tetraploid wheat species characterized by an elongated outer glume. The genetic control of the long-glume trait by a single semi-dominant locus, P1 (from P olish wheat), was established more than 100 years ago, but the underlying causal gene and molecular nature remain elusive. Here, we report the isolation of VRT-A2, encoding an SVP-clade MADS-box transcription factor, as the P1 candidate gene. Genetic evidence suggests that in T. polonicum, a naturally occurring sequence rearrangement in the intron-1 region of VRT-A2 leads to ectopic expression of VRT-A2 in floral organs where the long-glume phenotype appears. Interestingly, we found that the intron-1 region is a key ON/OFF molecular switch for VRT-A2 expression, not only because it recruits transcriptional repressors, but also because it confers intron-mediated transcriptional enhancement. Genotypic analyses using wheat accessions indicated that the P1 locus is likely derived from a single natural mutation in tetraploid wheat, which was subsequently inherited by hexaploid T. petropavlovskyi. Taken together, our findings highlight the promoter-proximal intron variation as a molecular basis for phenotypic differentiation, and thus species formation in Triticum plants.
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