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马铃薯块茎诱导受块茎形成素复合体各组分间相互作用的调控。

Potato Tuber Induction is Regulated by Interactions Between Components of a Tuberigen Complex.

作者信息

Teo Chin-Jit, Takahashi Kenta, Shimizu Kanae, Shimamoto Ko, Taoka Ken-Ichiro

机构信息

Laboratory of Plant Molecular Genetics, Graduate School of Biological Sciences, Nara Institute of Science and Technology, Takayama, Ikoma, Japan.

Laboratory of Plant Genetic Resources, Kihara Institute for Biological Research, Yokohama City University, Maioka, Totsuka, Yokohama, Japan.

出版信息

Plant Cell Physiol. 2017 Feb 1;58(2):365-374. doi: 10.1093/pcp/pcw197.

Abstract

Photoperiod-regulated flowering and potato tuber formation involve leaf-produced mobile signals, florigen and tuberigen, respectively. The major protein component of florigen has been identified as the FLOWERING LOCUS T (FT) protein. In rice, an FT-like protein, Heading date 3a (Hd3a), induces flowering by making the florigen activation complex (FAC) through interactions with 14-3-3 and OsFD1, a rice FD-like protein. In potato, StSP6A, an FT-like protein, was identified as a major component of tuberigen. However, the molecular mechanism of how StSP6A triggers tuber formation remains elusive. Here we analyzed the significance of the formation of a complex including StSP6A, 14-3-3 and FD-like proteins in tuberization. Yeast two-hybrid, bimolecular fluorescence complementation and in vitro pull-down assays showed that StSP6A and StFDL1, a potato FD-like protein, interact with St14-3-3s. StSP6A overexpression induced early tuberization in a 14-3-3-dependent manner, and suppression of StFDL1 delayed tuberization. These results strongly suggest that an FAC-like complex, the tuberigen activation complex (TAC), comprised of StSP6A, St14-3-3s and StFDL1, regulates potato tuber formation.

摘要

光周期调控的开花和马铃薯块茎形成分别涉及叶片产生的移动信号成花素和块茎素。成花素的主要蛋白质成分已被鉴定为成花素基因座T(FT)蛋白。在水稻中,一种类似FT的蛋白,抽穗期3a(Hd3a),通过与14-3-3和水稻FD样蛋白OsFD1相互作用形成成花素激活复合体(FAC)来诱导开花。在马铃薯中,一种类似FT的蛋白StSP6A被鉴定为块茎素的主要成分。然而,StSP6A如何触发块茎形成的分子机制仍不清楚。在这里,我们分析了包括StSP6A、14-3-3和FD样蛋白的复合体在块茎形成中的重要性。酵母双杂交、双分子荧光互补和体外下拉实验表明,StSP6A和马铃薯FD样蛋白StFDL1与St14-3-3相互作用。StSP6A的过表达以依赖14-3-3的方式诱导早期块茎形成,而StFDL1的抑制则延迟块茎形成。这些结果强烈表明,由StSP6A、St14-3-3和StFDL1组成的类似FAC的复合体,即块茎素激活复合体(TAC),调节马铃薯块茎的形成。

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