Pioneer Hi-Bred International, a DuPont Business, Johnston, Iowa 50131, USA.
Plant Physiol. 2010 May;153(1):238-51. doi: 10.1104/pp.110.154211. Epub 2010 Mar 3.
TERMINAL FLOWER1 (TFL1)-like genes are highly conserved in plants and are thought to function in the maintenance of meristem indeterminacy. Recently, we described six maize (Zea mays) TFL1-related genes, named ZEA CENTRORADIALIS1 (ZCN1) to ZCN6. To gain insight into their functions, we generated transgenic maize plants overexpressing their respective cDNAs driven by a constitutive promoter. Overall, ectopic expression of the maize TFL1-like genes produced similar phenotypes, including delayed flowering and altered inflorescence architecture. We observed an apparent relationship between the magnitude of the transgenic phenotypes and the degree of homology between the ZCN proteins. ZCN2, -4, and -5 form a monophylogenetic clade, and their overexpression produced the strongest phenotypes. Along with very late flowering, these transgenic plants produced a "bushy" tassel with increased lateral branching and spikelet density compared with nontransgenic siblings. On the other hand, ZCN1, -3, and -6 produced milder effects. Among them, ZCN1 showed moderate effects on flowering time and tassel morphology, whereas ZCN3 and ZCN6 did not change flowering time but still showed effects on tassel morphology. In situ hybridizations of tissue from nontransgenic plants revealed that the expression of all ZCN genes was associated with vascular bundles, but each gene had a specific spatial and temporal pattern. Expression of four ZCN genes localized to the protoxylem, whereas ZCN5 was expressed in the protophloem. Collectively, our findings suggest that ectopic expression of the TFL1-like genes in maize modifies flowering time and inflorescence architecture through maintenance of the indeterminacy of the vegetative and inflorescence meristems.
终端花 1(TFL1)样基因在植物中高度保守,被认为在维持分生组织不定向性方面发挥作用。最近,我们描述了六个玉米(Zea mays)TFL1 相关基因,命名为 ZEA CENTRORADIALIS1(ZCN1)到 ZCN6。为了深入了解它们的功能,我们通过组成型启动子驱动它们各自的 cDNA 生成了转基因玉米植物。总体而言,玉米 TFL1 样基因的异位表达产生了相似的表型,包括开花延迟和花序结构改变。我们观察到转基因表型的幅度与 ZCN 蛋白之间的同源性程度之间存在明显的关系。ZCN2、-4 和 -5 形成一个单系群,它们的过表达产生了最强的表型。除了开花很晚之外,这些转基因植物产生了一个“茂密”的雄穗,与非转基因同系物相比,侧枝和小穗密度增加。另一方面,ZCN1、-3 和 -6 产生了较温和的影响。其中,ZCN1 对开花时间和雄穗形态表现出中等影响,而 ZCN3 和 ZCN6 没有改变开花时间,但仍对雄穗形态有影响。非转基因植物组织的原位杂交显示,所有 ZCN 基因的表达都与维管束有关,但每个基因都有特定的空间和时间模式。四个 ZCN 基因的表达定位于原木质部,而 ZCN5 则在原生韧皮部表达。总的来说,我们的研究结果表明,玉米中 TFL1 样基因的异位表达通过维持营养和花序分生组织的不定向性来改变开花时间和花序结构。