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鉴定和描述伦敦杨树中一个新型 FT 直系同源基因,与 PaFT 相比,该基因对环境刺激有明显不同的表达响应。

Identification and characterisation of a novel FT orthologous gene in London plane with a distinct expression response to environmental stimuli compared to PaFT.

机构信息

Key Laboratory of Horticultural Plant Biology, Ministry of Education, College of Horticulture and Forestry Sciences, Huazhong Agricultural University, Wuhan, Hubei, China.

College of Landscape Architecture, Central South University of Forestry and Technology, Changsha, Hunan, China.

出版信息

Plant Biol (Stuttg). 2019 Nov;21(6):1039-1051. doi: 10.1111/plb.13019. Epub 2019 Jul 26.

Abstract

FLOWERING LOCUS T (FT) is a key integrator of environmental signals and internal cues, and codes for florigen-like activity which regulates the transition from vegetative to reproductive growth in flowering plants. Unlike annual plants, perennial tree species undergo several years of vegetative growth prior to the transition to the reproductive stage, as characterised by the ability to form flower buds. Thereafter, trees in temperate regions typically display an annual growth cycle involving distinct vegetative growth, flowering and dormancy stages. In London plane (Platanus acerifolia Willd.), a FT-like gene has previously been identified. Here, we report the isolation of a novel FT orthologous gene, PaFTL, and investigate the functions of PaFT and PaFTL through the analysis of expression profiles and transgenic phenotypes. PaFT displayed the highest levels of expression during tree dormancy, and similarly elevated expression levels were seen under conditions of low temperature and short days (LT/SD). In contrast, PaFTL transcripts were up-regulated during the floral transition phase, the early stages of inflorescence development and throughout the main flowering period, whereas expression levels were low and variable during dormancy and in response to LT/SD treatments. Ectopic expression of 35s::PaFTL in tobacco produced a phenotype similar to that with PaFT, namely, advanced floral initiation. Overall, the results suggest that PaFT and PaFTL have both conserved and diverse functions in floral initiation, floral development and dormancy regulation.

摘要

开花域 T(FT)是环境信号和内部线索的关键整合者,编码与成花素样活性相关的信息,调节开花植物从营养生长向生殖生长的转变。与一年生植物不同,多年生树种在向生殖阶段转变之前,要经历数年的营养生长,其特征是能够形成花芽。此后,温带地区的树木通常表现出一个年度生长周期,包括明显的营养生长、开花和休眠阶段。在伦敦悬铃木(Platanus acerifolia Willd.)中,先前已经鉴定出一个类似 FT 的基因。在这里,我们报告了一个新的 FT 同源基因 PaFTL 的分离,并通过分析表达谱和转基因表型来研究 PaFT 和 PaFTL 的功能。PaFT 在树木休眠期间表达水平最高,在低温和短日照(LT/SD)条件下也观察到类似的上调表达水平。相比之下,PaFTL 转录本在花转变阶段、花序发育的早期阶段和整个主要开花期上调表达,而在休眠期和对 LT/SD 处理的反应中表达水平较低且变化较大。35s::PaFTL 在烟草中的异位表达产生了类似于 PaFT 的表型,即提前开花启动。总体而言,这些结果表明 PaFT 和 PaFTL 在花启动、花发育和休眠调节方面具有保守和多样化的功能。

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