Blake N K, Lehfeldt B R, Lavin M, Talbert L E
Plant Sciences Department, Montana State University, Bozeman 59717, USA.
Genome. 1999 Apr;42(2):351-60.
Study of bread wheat (Triticum aestivum) may help to resolve several questions related to polyploid evolution. One such question regards the possibility that the component genomes of polyploids may themselves be polyphyletic, resulting from hybridization and introgression among different polyploid species sharing a single genome. We used the B genome of wheat as a model system to test hypotheses that bear on the monophyly or polyphyly of the individual constituent genomes. By using aneuploid wheat stocks, combined with PCR-based cloning strategies, we cloned and sequenced two single-copy-DNA sequences from each of the seven chromosomes of the wheat B genome and the homologous sequences from representatives of the five diploid species in section Sitopsis previously suggested as sister groups to the B genome. Phylogenetic comparisons of sequence data suggested that the B genome of wheat underwent a genetic bottleneck and has diverged from the diploid B genome donor. The extent of genetic diversity among the Sitopsis diploids and the failure of any of the Sitopsis species to group with the wheat B genome indicated that these species have also diverged from the ancestral B genome donor. Our results support monophyly of the wheat B genome.
对普通小麦(Triticum aestivum)的研究可能有助于解决几个与多倍体进化相关的问题。其中一个问题涉及多倍体的组成基因组本身可能是多系起源的可能性,这是由共享单个基因组的不同多倍体物种之间的杂交和基因渗入导致的。我们以小麦的B基因组为模型系统,来检验与各个组成基因组的单系或多系起源相关的假说。通过使用非整倍体小麦品系,结合基于PCR的克隆策略,我们从小麦B基因组的七条染色体中的每一条上克隆并测序了两个单拷贝DNA序列,以及之前被认为是B基因组姐妹群的Sitopsis组中五个二倍体物种代表的同源序列。序列数据的系统发育比较表明,小麦的B基因组经历了遗传瓶颈,并且已经与二倍体B基因组供体分化。Sitopsis二倍体之间的遗传多样性程度以及没有任何一个Sitopsis物种与小麦B基因组归为一类,这表明这些物种也已经与祖先B基因组供体分化。我们的结果支持小麦B基因组的单系起源。