Hirayama Yumiko, Yamada Toshihiro, Oya Yukiko, Ito Motomi, Kato Masahiro, Imaichi Ryoko
Department of Chemical and Biological Sciences, Japan Women's University, 2-8-1 Mejirodai, Tokyo 112-8681, Japan.
Dev Genes Evol. 2007 May;217(5):363-72. doi: 10.1007/s00427-007-0149-0. Epub 2007 Apr 12.
STM (RaSTM) and YAB2 (RaYAB2) homologues were isolated from Ruscus aculeatus (Asparagaceae, monocots), and their expressions were analyzed by real-time polymerase chain reaction (PCR) to assess hypotheses on the evolutionary origin of the phylloclade in the Asparagaceae. In young shoot buds, RaSTM is expressed in the shoot apex, while RaYAB2 is expressed in the scale leaf subtending the shoot bud. This expression pattern is shared by other angiosperms, suggesting that the expression patterns of RaSTM and RaYAB2 are useful as molecular markers to identify the shoot and leaf, respectively. RaSTM and RaYAB2 are expressed concomitantly in phylloclade primordia. These results suggest that the phylloclade is not homologous to either the shoot or leaf, but that it has a double organ identity.
从刺叶假叶树(天门冬科,单子叶植物)中分离出STM(刺叶假叶树STM,RaSTM)和YAB2(刺叶假叶树YAB2,RaYAB2)同源物,并通过实时聚合酶链反应(PCR)分析它们的表达,以评估关于天门冬科叶状枝进化起源的假说。在幼嫩的芽中,RaSTM在茎尖表达,而RaYAB2在芽下的鳞片叶中表达。这种表达模式在其他被子植物中也有,这表明RaSTM和RaYAB2的表达模式分别可用作鉴定茎和叶的分子标记。RaSTM和RaYAB2在叶状枝原基中同时表达。这些结果表明,叶状枝与茎或叶都不同源,而是具有双重器官身份。