NARO Institute of Floricultural Science, National Agricultural Research Organization, 2-1 Fujimoto, Tsukuba, Ibaraki, Japan.
J Exp Bot. 2013 Feb;64(4):909-20. doi: 10.1093/jxb/ers370. Epub 2013 Jan 10.
Flowering time of the short-day plant Chrysanthemum morifolium is largely dependent upon daylength, but it is also distinctly influenced by other environmental factors. Flowering is delayed by summer heat. Here, the underlying basis for this phenomenon was investigated. Heat-induced flowering retardation occurred similarly in C. morifolium and C. seticuspe, a wild-type diploid chrysanthemum. In both plants, this flowering retardation occurred mainly because of inhibition of capitulum development. Concurrently, expression of flowering-related genes in the shoot tip was delayed under high temperature conditions. In chrysanthemums, FLOWERING LOCUS T-like 3 (FTL3) has been identified as a floral inducer produced in the leaves after short-day stimuli and transported to the shoot tip. In C. seticuspe, heat-induced flowering retardation was accompanied by a reduction in FTL3 expression in the leaves. Two C. morifolium cultivars with flowering times that are differently affected by growth temperature were also examined. High temperature-induced FTL3 repression was observed in the leaves of both cultivars, although the degree of repression was greater in the heat-sensitive cultivar than in the heat-tolerant cultivar. When a scion of the heat-sensitive cultivar was grafted onto the stock of the heat-tolerant cultivar, flowering in the shoot tip was less sensitive to heat. Conversely, a scion of the heat-tolerant cultivar grafted onto the heat-sensitive cultivar showed increased heat sensitivity. Thus, several lines of evidence suggest that the reduction of FTL3 signalling from the leaves to the shoot tip at high temperatures is involved in flowering retardation in chrysanthemums.
短日照植物菊花的开花时间主要取决于日照长度,但也明显受到其他环境因素的影响。夏季高温会延迟开花。在这里,我们研究了这种现象的潜在基础。高温诱导的开花延迟在菊花和一种野生型二倍体菊花——野菊中表现相似。在这两种植物中,这种开花延迟主要是由于头状花序发育受到抑制。同时,在高温条件下,茎尖中与开花相关的基因表达被延迟。在菊花中,已经鉴定出 FLOWERING LOCUS T-like 3(FTL3)作为一种在短日照刺激后在叶片中产生的花诱导物,并被运输到茎尖。在野菊中,高温诱导的开花延迟伴随着叶片中 FTL3 表达的减少。我们还检查了两个开花时间受生长温度影响不同的菊花品种。在两个品种的叶片中都观察到高温诱导的 FTL3 抑制,尽管在热敏品种中的抑制程度大于耐热品种。当热敏品种的接穗嫁接到耐热品种的砧木上时,茎尖的开花对高温的敏感性降低。相反,耐热品种的接穗嫁接到热敏品种上时,对高温的敏感性增加。因此,有几条证据表明,高温下叶片到茎尖的 FTL3 信号减少参与了菊花的开花延迟。