Triticeae Research Institute, Sichuan Agricultural University, Wenjiang, Chengdu City, Sichuan, People's Republic of China.
Genet Mol Biol. 2011 Oct;34(4):606-15. doi: 10.1590/S1415-47572011000400013. Epub 2011 Oct 1.
In this work, we examined the genetic diversity and evolution of the WAG-2 gene based on new WAG-2 alleles isolated from wheat and its relatives. Only single nucleotide polymorphisms (SNP) and no insertions and deletions (indels) were found in exon sequences of WAG-2 from different species. More SNPs and indels occurred in introns than in exons. For exons, exons+introns and introns, the nucleotide polymorphism π decreased from diploid and tetraploid genotypes to hexaploid genotypes. This finding indicated that the diversity of WAG-2 in diploids was greater than in hexaploids because of the strong selection pressure on the latter. All dn/ds ratios were < 1.0, indicating that WAG-2 belongs to a conserved gene affected by negative selection. Thirty-nine of the 57 particular SNPs and eight of the 10 indels were detected in diploid species. The degree of divergence in intron length among WAG-2 clones and phylogenetic tree topology suggested the existence of three homoeologs in the A, B or D genome of common wheat. Wheat AG-like genes were divided into WAG-1 and WAG-2 clades. The latter clade contained WAG-2, OsMADS3 and ZMM2 genes, indicating functional homoeology among them.
在这项工作中,我们基于从小麦及其近缘种中分离出的新 WAG-2 等位基因,研究了 WAG-2 基因的遗传多样性和进化。不同物种 WAG-2 的外显子序列中仅发现单核苷酸多态性(SNP),没有插入和缺失(indels)。内含子中的 SNP 和 indels 比外显子多。对于外显子、外显子+内含子和内含子,核苷酸多样性π从二倍体和四倍体基因型降低到六倍体基因型。这一发现表明,由于后者受到强烈的选择压力,WAG-2 在二倍体中的多样性大于六倍体。所有 dn/ds 比值都<1.0,表明 WAG-2 属于受负选择影响的保守基因。在二倍体物种中检测到 57 个特定 SNP 中的 39 个和 10 个 indels 中的 8 个。WAG-2 克隆之间内含子长度的差异程度和系统发育树拓扑结构表明,普通小麦的 A、B 或 D 基因组中存在三个同源基因。小麦 AG 样基因分为 WAG-1 和 WAG-2 两个分支。后者分支包含 WAG-2、OsMADS3 和 ZMM2 基因,表明它们之间存在功能同源性。