Sasanuma T, Miyashita N T
Laboratory of Plant Genetics, Graduate School of Agriculture, Kyoto University, Japan.
Genes Genet Syst. 1998 Oct;73(5):297-309. doi: 10.1266/ggs.73.297.
To investigate genetic mechanisms acting on multigene family in plants, we analyzed sequence variation in the rbcS gene of 13 species of Triticeae and one species each of related tribes (Bromeae and Aveneae). A total of 36 rbcS genes were analyzed. Based on dimorphism in the length of intron, the rbcSs of investigated species were classified into two subfamilies A and B. The difference in intron length was caused by an indel of about 200 bp in the middle of the intron. The two subfamilies of rbcS were present in the three tribes, indicating that the divergence of rbcS subfamilies occurred before the split of these tribes. Generally, variation between the two subfamilies of rbcS was larger than that within subfamily, but these two measures were about the same at the tribe level. This result suggested that divergence of the subfamilies of rbcS occurred at about the same time of tribe diversification. The level of nucleotide variation in the exon region between subfamilies was reduced in the Triticeae, but clear change was not detected in the intron sequence. This result suggested that the exon sequences between subfamilies of rbcS were homogenized without affecting the intron sequence in the Triticeae lineage.
为了研究作用于植物多基因家族的遗传机制,我们分析了13种小麦族植物以及相关族(雀麦族和燕麦族)各一个物种的rbcS基因的序列变异。共分析了36个rbcS基因。根据内含子长度的二态性,将所研究物种的rbcS分为A和B两个亚家族。内含子长度的差异是由内含子中部约200 bp的插入缺失引起的。rbcS的两个亚家族存在于这三个族中,这表明rbcS亚家族的分化发生在这些族分化之前。一般来说,rbcS两个亚家族之间的变异大于亚家族内部的变异,但在族水平上这两个指标大致相同。这一结果表明,rbcS亚家族的分化与族的多样化大致同时发生。在小麦族中,亚家族间外显子区域的核苷酸变异水平降低,但在内含子序列中未检测到明显变化。这一结果表明,在小麦族谱系中,rbcS亚家族间的外显子序列发生了同质化,而未影响内含子序列。