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在烟草中分离和功能表征一个新的 FLOWERING LOCUS T 同源物(NtFT5)。

Isolation and functional characterization of a novel FLOWERING LOCUS T homolog (NtFT5) in Nicotiana tabacum.

机构信息

State Key Laboratory of Silkworm Genome Biology, Southwest University, No.2 Tiansheng Road, Beibei District, Chongqing, 400715, China; Chongqing Key Laboratory of Sericultural Science, Chongqing engineering and technology research center for novel silk materials, Southwest University, No.2 Tiansheng Road, Beibei District, Chongqing, 400715, China.

State Key Laboratory of Silkworm Genome Biology, Southwest University, No.2 Tiansheng Road, Beibei District, Chongqing, 400715, China.

出版信息

J Plant Physiol. 2018 Dec;231:393-401. doi: 10.1016/j.jplph.2018.10.021. Epub 2018 Oct 28.

Abstract

The phosphatidyl ethanolamine-binding proteins (PEBPs) function primarily in regulating flowering in plants. Here, we report a genome-wide identification of PEBPs and functional characterization of a novel FLOWERING LOCUS T homolog (NtFT5) in tobacco, Nicotiana tabacum. Seven new PEBPs were identified by a genome-wide analysis from N. tabacum. Expression profile showed that NtFT5 was mainly expressed in flowers. Overexpression of NtFT5 conferred an early flowering phenotype. By optimizing rooting medium, heritable short life-cycle tobacco lines were obtained by overexpression of NtFT5. Several orthologs of flowering genes downstream of FT gene were up-regulated in the NtFT5-overexpression transgenic plant lines. The NtFT5-overexpressing tobaccos formed fewer flowers and seeds per capsule compared with wild type. The seed-to-seed life cycle of NtFT5 overexpressing tobacco lines was about 2.5 months. Gene identification was effectively undertaken in the short life-cycle tobacco line by a second transformation via a gusA reporter gene and transient expression of Ros1 via PVX (Potato Virus X)system. Our findings indicate that NtFT5 is a novel FT homolog that has potential to induce flowering, which will improve our understanding of the mechanism underlying flowering control in N. tabacum. In addition, the results show that the generated heritable short life-cycle transgenic tobacco line is an effective and stable host system to accelerate gene function study, which promises to provide a better tobacco research model for plants.

摘要

磷酸乙醇胺结合蛋白(PEBPs)主要在植物开花中起调节作用。在这里,我们报道了烟草(Nicotiana tabacum)中 PEBPs 的全基因组鉴定和一个新的开花时间同源物(NtFT5)的功能特征。通过对烟草的全基因组分析,鉴定了七个新的 PEBPs。表达谱显示,NtFT5 主要在花中表达。过表达 NtFT5 赋予了植物早期开花的表型。通过优化生根培养基,过表达 NtFT5 获得了具有遗传短生命周期的烟草株系。在 NtFT5 过表达转基因植物株系中,FT 基因下游的几个开花基因的同源物被上调。与野生型相比,NtFT5 过表达烟草中的每个蒴果的花和种子数量较少。NtFT5 过表达烟草株系的种子到种子生命周期约为 2.5 个月。通过第二次转化,利用 gusA 报告基因和通过 PVX(马铃薯病毒 X)系统瞬时表达 Ros1,在短生命周期烟草株系中有效地进行了基因鉴定。我们的研究结果表明,NtFT5 是一个新的 FT 同源物,具有诱导开花的潜力,这将有助于我们理解烟草中开花调控的机制。此外,结果表明,产生的可遗传的短生命周期转基因烟草株系是加速基因功能研究的有效且稳定的宿主系统,有望为植物提供更好的烟草研究模型。

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