Department of Plant Pathology, North Dakota State University, Fargo, ND 58102, USA.
Proc Natl Acad Sci U S A. 2011 Nov 15;108(46):18737-42. doi: 10.1073/pnas.1110552108. Epub 2011 Oct 31.
The Q gene encodes an AP2-like transcription factor that played an important role in domestication of polyploid wheat. The chromosome 5A Q alleles (5AQ and 5Aq) have been well studied, but much less is known about the q alleles on wheat homoeologous chromosomes 5B (5Bq) and 5D (5Dq). We investigated the organization, evolution, and function of the Q/q homoeoalleles in hexaploid wheat (Triticum aestivum L.). Q/q gene sequences are highly conserved within and among the A, B, and D genomes of hexaploid wheat, the A and B genomes of tetraploid wheat, and the A, S, and D genomes of the diploid progenitors, but the intergenic regions of the Q/q locus are highly divergent among homoeologous genomes. Duplication of the q gene 5.8 Mya was likely followed by selective loss of one of the copies from the A genome progenitor and the other copy from the B, D, and S genomes. A recent V(329)-to-I mutation in the A lineage is correlated with the Q phenotype. The 5Bq homoeoalleles became a pseudogene after allotetraploidization. Expression analysis indicated that the homoeoalleles are coregulated in a complex manner. Combined phenotypic and expression analysis indicated that, whereas 5AQ plays a major role in conferring domestication-related traits, 5Dq contributes directly and 5Bq indirectly to suppression of the speltoid phenotype. The evolution of the Q/q loci in polyploid wheat resulted in the hyperfunctionalization of 5AQ, pseudogenization of 5Bq, and subfunctionalization of 5Dq, all contributing to the domestication traits.
Q 基因编码一个 AP2 样转录因子,在多倍体小麦驯化中发挥重要作用。染色体 5A 的 Q 等位基因(5AQ 和 5Aq)已经得到了很好的研究,但对于小麦同源染色体 5B(5Bq)和 5D(5Dq)上的 q 等位基因知之甚少。我们研究了六倍体小麦(Triticum aestivum L.)中 Q/q 同异位基因的组织、进化和功能。Q/q 基因序列在六倍体小麦的 A、B 和 D 基因组以及四倍体小麦的 A 和 B 基因组和二倍体祖先的 A、S 和 D 基因组中高度保守,但 Q/q 基因座的基因间区在同源基因组中高度分化。q 基因的复制可能发生在 5.8 Mya 之前,随后 A 基因组的一个拷贝和 B、D 和 S 基因组的另一个拷贝选择性丢失。最近在 A 系中的 V(329)-到-I 突变与 Q 表型相关。5Bq 同异位基因在异源四倍化后成为假基因。表达分析表明,同异位基因以复杂的方式共同调控。综合表型和表达分析表明,虽然 5AQ 在赋予驯化相关性状方面起着主要作用,但 5Dq 直接和 5Bq 间接有助于抑制野生型表型。多倍体小麦中 Q/q 基因座的进化导致 5AQ 的超功能化、5Bq 的假基因化和 5Dq 的亚功能化,所有这些都有助于驯化性状的形成。