Dept. of Biology, Dalhousie University, 1355 Oxford St., Halifax, NS, B3H 4R2, Canada.
Ottawa Research and Development Centre, Agriculture & Agri-Food Canada, 960 Carling Ave., Ottawa, Ontario, K1A 0C6, Canada.
Sci Rep. 2019 Aug 23;9(1):12298. doi: 10.1038/s41598-019-48639-7.
The genus Avena (oats) contains diploid, tetraploid and hexaploid species that evolved through hybridization and polyploidization. Four genome types (named A through D) are generally recognized. We used GBS markers to construct linkage maps of A genome diploid (Avena strigosa x A. wiestii, 2n = 14), and AB genome tetraploid (A. barbata 2n = 28) oats. These maps greatly improve coverage from older marker systems. Seven linkage groups in the tetraploid showed much stronger homology and synteny with the A genome diploids than did the other seven, implying an allopolyploid hybrid origin of A. barbata from distinct A and B genome diploid ancestors. Inferred homeologies within A. barbata revealed that the A and B genomes are differentiated by several translocations between chromosomes within each subgenome. However, no translocation exchanges were observed between A and B genomes. Comparison to a consensus map of ACD hexaploid A. sativa (2n = 42) revealed that the A and D genomes of A. sativa show parallel rearrangements when compared to the A genomes of the diploids and tetraploids. While intergenomic translocations are well known in polyploid Avena, our results are most parsimoniously explained if translocations also occurred in the A, B and D genome diploid ancestors of polyploid Avena.
野燕麦属(燕麦)包含通过杂交和多倍化进化而来的二倍体、四倍体和六倍体物种。通常公认有四种基因组类型(命名为 A 到 D)。我们使用 GBS 标记构建了 A 基因组二倍体(Avena strigosa x A. wiestii,2n = 14)和 AB 基因组四倍体(A. barbata 2n = 28)燕麦的连锁图谱。这些图谱大大提高了对旧标记系统的覆盖度。四倍体中的七个连锁群与 A 基因组二倍体的同源性和同线性比其他七个要强得多,这表明 A. barbata 是由不同的 A 和 B 基因组二倍体祖先的异源多倍体杂种起源的。在 A. barbata 中推断出的同源性表明,A 和 B 基因组通过每个亚基因组内染色体之间的几次易位而分化。然而,在 A 和 B 基因组之间没有观察到易位交换。与 ACD 六倍体 A. sativa(2n = 42)的共识图谱进行比较表明,与二倍体和四倍体的 A 基因组相比,A. sativa 的 A 和 D 基因组显示出平行重排。虽然基因组间易位在多倍体燕麦中是众所周知的,但如果多倍体燕麦的 A、B 和 D 基因组的祖先也发生了易位,那么我们的结果是最合理的解释。