Northwest A&F University, College of Forestry, Yangling, 712100 People's Republic of China.
J Exp Bot. 2010 Jun;61(10):2549-60. doi: 10.1093/jxb/erq092. Epub 2010 Apr 20.
Expression of FLOWERING LOCUS T (FT) and its homologues has been shown to accelerate the onset of flowering in a number of plant species, including poplar (Populus spp.). The application of FT should be of particular use in forest trees, as it could greatly accelerate and enable new kinds of breeding and research. Recent evidence showing the extent to which FT is effective in promoting flowering in trees is discussed, and its effectiveness in poplar is reported. Results using one FT gene from Arabidopsis and two from poplar, all driven by a heat-inducible promoter, transformed into two poplar genotypes are also described. Substantial variation in flowering response was observed depending on the FT gene and genetic background. Heat-induced plants shorter than 30 cm failed to flower as well as taller plants. Plants exposed to daily heat treatments lasting 3 weeks tended to produce fewer abnormal flowers than those in heat treatments of shorter durations; increasing the inductive temperature from 37 degrees C to 40 degrees C produced similar benefits. Using optimal induction conditions, approximately 90% of transgenic plants could be induced to flower. When induced FT rootstocks were grafted with scions that lacked FT, flowering was only observed in rootstocks. The results suggest that a considerable amount of species- or genotype-specific adaptation will be required to develop FT into a reliable means for shortening the generation cycle for breeding in poplar.
FT(开花时间)的表达已被证明可以加速许多植物物种,包括杨树(Populus spp.)的开花时间。FT 的应用在林木中应该特别有用,因为它可以大大加速并实现新的育种和研究。本文讨论了 FT 在促进树木开花方面的有效性,并报告了其在杨树中的有效性。还描述了使用来自拟南芥的一个 FT 基因和来自杨树的两个 FT 基因,均由热诱导启动子驱动,转化为两种杨树基因型的结果。开花反应的大量变化取决于 FT 基因和遗传背景。高度小于 30 厘米的热诱导植物以及较高的植物都未能开花。与持续时间较短的热处理相比,每天接受 3 周热处理的植物产生的异常花较少;将诱导温度从 37°C 升高到 40°C 会产生类似的效果。在最佳诱导条件下,大约 90%的转基因植物可以被诱导开花。当缺乏 FT 的接穗嫁接到具有 FT 的砧木上时,仅在砧木上观察到开花。结果表明,需要大量的物种或基因型特异性适应,才能将 FT 开发成为一种可靠的缩短杨树育种周期的手段。