Key Laboratory of Biodiversity and Biogeography, Kunming Institute of Botany, Chinese Academy of Sciences, 650204 Kunming, China.
Planta. 2010 Jan;231(2):265-76. doi: 10.1007/s00425-009-1048-6. Epub 2009 Nov 11.
Asarum caudigerum (Aristolochiaceae) is a paleoherb species that is important for research in origin and evolution of angiosperm flowers due to its basal position in the angiosperm phylogeny. In this study, a subtracted floral cDNA library from floral buds of A. caudigerum was constructed and cDNA arrays by suppression subtractive hybridization were generated. cDNAs of floral buds at different stages before flower opening and of leaves at the seedling stage were used. The macroarray analyses of expression profiles of isolated floral genes showed that 157 genes out of the 612 unique ESTs tested revealed higher transcript abundance in the floral buds and uppermost leaves. Among them, 78 genes were determined to be differentially expressed in the perianth, 62 in the stamens, and 100 genes in the carpels. Quantitative real-time PCR of selected genes validated the macroarray results. Remarkably, APETALA3 (AP3) B-class genes isolated from A. caudigerum were upregulated in the perianth, stamens and carpels, implying that the expression domain of B-class genes in this basal angiosperm was broader than those in their eudicot counterparts.
细辛(马兜铃科)是一种古草本物种,由于其在被子植物系统发育中的基础地位,对于研究被子植物花的起源和进化具有重要意义。本研究构建了细辛花蕾的消减式 cDNA 文库,并通过抑制性消减杂交生成 cDNA 芯片。使用了花蕾在开花前不同阶段和幼苗期叶片的 cDNA。对分离的花基因表达谱的微阵列分析表明,在 612 个独特的 EST 中,有 157 个基因在花蕾和最上部叶片中的转录丰度较高。其中,78 个基因在外轮花被、62 个基因在雄蕊、100 个基因在心皮中差异表达。对选定基因的定量实时 PCR 验证了微阵列结果。值得注意的是,从细辛中分离出的 APETALA3 (AP3) B 类基因在外轮花被、雄蕊和心皮中上调表达,这表明在这个基干被子植物中 B 类基因的表达域比它们在真双子叶植物中的表达域更广泛。