Department of Experimental Plant Biology, Faculty of Science, Charles University in Prague, Viničná 5, 128 44, Prague 2, Czech Republic.
Planta. 2013 Oct;238(4):793-806. doi: 10.1007/s00425-013-1931-z. Epub 2013 Jul 30.
True day-neutral (DN) plants flower regardless of day-length and yet they flower at characteristic stages. DN Nicotiana tabacum cv. Samsun, makes about forty nodes before flowering. The question still persists whether flowering starts because leaves become physiologically able to export sufficient floral stimulus or the shoot apical meristem (SAM) acquires developmental competence to interpret its arrival. This question was addressed using tobacco expressing the Schizosaccharomyces pombe cell cycle gene, Spcdc25, as a tool. Spcdc25 expression induces early flowering and we tested a hypothesis that this phenotype arises because of premature floral competence of the SAM. Scions of vegetative Spcdc25 plants were grafted onto stocks of vegetative WT together with converse grafts and flowering onset followed (as the time since sowing and number of leaves formed till flowering). Spcdc25 plants flowered significantly earlier with fewer leaves, and, unlike WT, also formed flowers from axillary buds. Scions from vegetative Spcdc25 plants also flowered precociously when grafted to vegetative WT stocks. However, in a WT scion to Spcdc25 stock, the plants flowered at the same time as WT. SAMs from young vegetative Spcdc25 plants were elongated (increase in SAM convexity determined by tracing a circumference of SAM sections) with a pronounced meristem surface cell layers compared with WT. Presumably, Spcdc25 SAMs were competent for flowering earlier than WT and responded to florigenic signal produced even in young vegetative WT plants. Precocious reproductive competence in Spcdc25 SAMs comprised a pronounced mantle, a trait of prefloral SAMs. Hence, we propose that true DN plants export florigenic signal since early developmental stages but the SAM has to acquire competence to respond to the floral stimulus.
真正的长日中性(DN)植物无论日照长度如何都会开花,但它们会在特征阶段开花。DN 烟草品种 Samsun 在开花前大约会形成四十个节点。问题仍然存在,即开花是因为叶片变得在生理上能够输出足够的花刺激,还是因为茎尖分生组织(SAM)获得了解释其到来的发育能力。为了解决这个问题,我们使用表达酿酒酵母细胞周期基因 Spcdc25 的烟草作为工具。Spcdc25 的表达会诱导早期开花,我们提出了一个假设,即这种表型是由于 SAM 的过早花能力。营养 Spcdc25 植物的接穗被嫁接到营养 WT 的砧木上,同时进行相反的嫁接,并跟踪开花的开始(播种后时间和开花前形成的叶片数)。Spcdc25 植物开花更早,叶片更少,并且与 WT 不同,还从腋芽形成花朵。当嫁接到营养 WT 砧木上时,营养 Spcdc25 植物的接穗也会过早开花。然而,在 WT 接穗到 Spcdc25 砧木的情况下,植物与 WT 同时开花。与 WT 相比,年轻营养 Spcdc25 植物的 SAM 伸长(通过追踪 SAM 部分的圆周来确定 SAM 凸度的增加),并且具有明显的分生组织表面细胞层。大概,Spcdc25 SAM 比 WT 更早具备开花能力,并对即使在年轻营养 WT 植物中产生的成花素信号做出反应。Spcdc25 SAM 中早熟的生殖能力包括一个明显的套层,这是预花 SAM 的特征。因此,我们提出真正的 DN 植物从早期发育阶段就开始输出成花素信号,但 SAM 必须获得对花刺激做出反应的能力。