John Innes Centre, Norwich Research Park, Norwich, NR4 7UH, UK.
The National Plant Phenomics Centre, Institute of Biological, Rural and Environmental Sciences (IBERS), Aberystwyth University, Gogerddan, Aberystwyth, SY23 3EE, UK.
Plant Cell. 2021 Aug 13;33(7):2296-2319. doi: 10.1093/plcell/koab119.
Flower development is an important determinant of grain yield in crops. In wheat (Triticum spp.), natural variation for the size of spikelet and floral organs is particularly evident in Triticum turgidum ssp. polonicum (also termed Triticum polonicum), a tetraploid subspecies of wheat with long glumes, lemmas, and grains. Using map-based cloning, we identified VEGETATIVE TO REPRODUCTIVE TRANSITION 2 (VRT2), which encodes a MADS-box transcription factor belonging to the SHORT VEGETATIVE PHASE family, as the gene underlying the T. polonicum long-glume (P1) locus. The causal P1 mutation is a sequence rearrangement in intron-1 that results in ectopic expression of the T. polonicum VRT-A2 allele. Based on allelic variation studies, we propose that the intron-1 mutation in VRT-A2 is the unique T. polonicum subspecies-defining polymorphism, which was later introduced into hexaploid wheat via natural hybridizations. Near-isogenic lines differing for the P1 locus revealed a gradient effect of P1 across spikelets and within florets. Transgenic lines of hexaploid wheat carrying the T. polonicum VRT-A2 allele show that expression levels of VRT-A2 are highly correlated with spike, glume, grain, and floral organ length. These results highlight how changes in expression profiles, through variation in cis-regulation, can affect agronomic traits in a dosage-dependent manner in polyploid crops.
花发育是作物产量的重要决定因素。在小麦(Triticum spp.)中,小穗和花器官大小的自然变异在节节麦(Triticum turgidum ssp. polonicum,也称为 Triticum polonicum)中尤为明显,节节麦是小麦的一个四倍体亚种,具有长颖片、外稃和籽粒。通过基于图谱的克隆,我们鉴定出 VRT2(VEGETATIVE TO REPRODUCTIVE TRANSITION 2),它编码一个属于 SHORT VEGETATIVE PHASE 家族的 MADS 框转录因子,是 T. polonicum 长颖片(P1)位点的基因。引起 P1 突变的是内含子 1 中的序列重排,导致 T. polonicum VRT-A2 等位基因的异位表达。基于等位基因变异研究,我们提出 VRT-A2 内含子 1 突变是 T. polonicum 亚种特有的多态性,后来通过自然杂交被引入到六倍体小麦中。在含有 P1 基因座的近等基因系中,P1 对小穗和小花内的影响呈梯度变化。携带 T. polonicum VRT-A2 等位基因的六倍体小麦转基因系表明,VRT-A2 的表达水平与穗、颖片、籽粒和花器官长度高度相关。这些结果突出了通过顺式调控的表达谱变化如何以剂量依赖的方式影响多倍体作物的农艺性状。