Zhu Xiao-Yan, Cai De-Tian, Ding Yi
Key Laboratory of the Ministry of Education for Plant Developmental Biology, College of Life Sciences, Wuhan University, Wuhan, PR China.
Genome. 2008 May;51(5):332-40. doi: 10.1139/G08-016.
We investigated the molecular characteristics and chromosomal organization of 5S rDNA in the genus Oryza, including diploid and tetraploid species. A phylogenetic tree of Oryza species was constructed based on the non-transcribed spacer sequences of 5S rDNA, and some novel relationships were discovered. Specifically, comparative sequence analysis of 5S rDNA in several wild rice species showed unique characteristics inconsistent with the model of concerted evolution: (1) multiple distinct 5S rDNA types were detected within a species, leading to intraspecific divergence of 5S rDNA; (2) multiple identical 5S rDNA types were shared among species, resulting in interspecies clustering of 5S rDNA types; and (3) intraspecific nucleotide diversity was detected within a 5S rDNA class. Our results obtained by fluorescence in situ hybridization revealed that each rice species studied contained only one 5S rDNA locus with two hybridization sites, which were located on either chromosome 7 or chromosome 11. These results suggest that different 5S rDNA classes within the rice genome were arranged together and that one pair of 5S rDNA loci from a diploid progenitor of the tetraploid species might have been lost during evolution. Taken together, our data show that 5S rDNA in rice species is more informative at the gene level than at the chromosome level.
我们研究了稻属中5S rDNA的分子特征和染色体组织,包括二倍体和四倍体物种。基于5S rDNA的非转录间隔区序列构建了稻属物种的系统发育树,并发现了一些新的关系。具体而言,对几种野生稻物种中5S rDNA的比较序列分析显示出与协同进化模型不一致的独特特征:(1)在一个物种内检测到多种不同的5S rDNA类型,导致5S rDNA的种内分化;(2)多个相同的5S rDNA类型在物种间共享,导致5S rDNA类型的种间聚类;(3)在一个5S rDNA类别内检测到种内核苷酸多样性。我们通过荧光原位杂交获得的结果表明,所研究的每个水稻物种仅包含一个具有两个杂交位点的5S rDNA位点,这些位点位于第7号或第11号染色体上。这些结果表明,水稻基因组内不同的5S rDNA类别排列在一起,并且四倍体物种的二倍体祖先的一对5S rDNA位点可能在进化过程中丢失了。综上所述,我们的数据表明,水稻物种中的5S rDNA在基因水平上比在染色体水平上提供了更多信息。