Morimoto Ryoko, Kosugi Takayuki, Nakamura Chiharu, Takumi Shigeo
Laboratory of Plant Genetics, Department of Biological and Environmental Science, Faculty of Agriculture, and Graduate School of Science and Technology, Kobe University, 657-8501, Rokkodai-cho, Nada-ku, Kobe, Japan.
Plant Mol Biol. 2005 Apr;57(6):907-24. doi: 10.1007/s11103-005-3247-2.
Common wheat represents a typical allohexaploid species and provides a good experimental system for studying genomic alterations associated with allopolyploidization. We studied three homoeologous loci of wheat Wknox1 gene, which is highly homologous to the knotted1 (kn1)-like homeobox (KNOX) genes functioning at shoot apical meristems (SAM). Wknox1 transcripts were detected in SAM, and its overexpression caused abnormal leaf morphology with occasional ectopic leaves in transgenic tobacco plants. A comparative study of the three Wknox1 genomic sequences revealed accumulation of a large number of mutations including insertions and deletions, particularly in the fourth intron and the 5'-upstream region. Some structural mutations including MITE-insertions were allocated in the evolutionary lineage of the wheat genome, suggesting that they occurred at all stages of wheat evolution. A mutation rate was the highest in the Wknox1b locus, which is consistent with the known highest degree of differentiation in the B genome. Despite the structural differentiation, all three Wknox1 homoeologs showed an identical expression pattern in wheat and their promoter regions induced the conserved expression pattern in transgenic tobacco plants. A potential of the intragenic diversity in homoeologs of essential genes as a tool for studying the genome evolution associated with allopolyploidization was discussed.
普通小麦是一种典型的异源六倍体物种,为研究与异源多倍体化相关的基因组变化提供了一个良好的实验系统。我们研究了小麦Wknox1基因的三个同源位点,该基因与在茎尖分生组织(SAM)中起作用的knotted1(kn1)类同源异型盒(KNOX)基因高度同源。在SAM中检测到Wknox1转录本,其过表达导致转基因烟草植株叶片形态异常,偶尔出现异位叶。对三个Wknox1基因组序列的比较研究揭示了大量突变的积累,包括插入和缺失,特别是在第四个内含子和5'上游区域。一些包括微型反向重复转座元件(MITE)插入在内的结构突变分布在小麦基因组的进化谱系中,表明它们发生在小麦进化的各个阶段。Wknox1b位点的突变率最高,这与已知的B基因组最高分化程度一致。尽管存在结构差异,但所有三个Wknox1同源基因在小麦中表现出相同的表达模式,并且它们的启动子区域在转基因烟草植株中诱导了保守的表达模式。本文讨论了必需基因同源基因中基因内多样性作为研究与异源多倍体化相关的基因组进化工具的潜力。