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Control of flowering and storage organ formation in potato by FLOWERING LOCUS T

机译:FLOWERING LOCUS T控制马铃薯开花和贮藏器官的形成

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摘要

Seasonal fluctuations in day length regulate important aspects of plant development such as the flowering transition or, in potato (Solatium tuberosum), the formation of tubers. Day length is sensed by the leaves, which produce a mobile signal transported to the shoot apex or underground stems to induce a flowering transition or, respectively, a tuberization transition. Work in Arabidopsis, tomato and rice (Oryza sativa) identified the mobile FLOWERING LOCUS T (FT) protein as a main component of the long-range 'florigen', or flowering hormone, signal. Here we show that expression of the Hd3a gene, the FT orthologue in rice, induces strict short-day potato types to tuberize in long days. Tuber induction is graft transmissible and the Hd3a-GFP protein is detected in the stolons of grafted plants, transport of the fusion protein thus correlating with tuber formation. We provide evidence showing that the potato floral and tuberization transitions are controlled by two different FT-like paralogues (StSP3D and StSP6A) that respond to independent environmental cues, and show that an autorelay mechanism involving CONSTANS modulates expression of the tuberization-control StSP6A gene.
机译:日长的季节性波动会调节植物发育的重要方面,例如开花过渡或马铃薯(马铃薯)的块茎形成。叶片感测到一天的长度,叶片产生一个移动信号,该信号被传输到茎尖或地下茎上,分别诱导开花期或块茎期。在拟南芥,番茄和水稻(Oryza sativa)中的研究确定了流动的FLOERING LOCUS T(FT)蛋白是远程“植物激素”或开花激素信号的主要成分。在这里,我们显示Hd3a基因(FT直系同源物)在水稻中的表达诱导了严格的短日马铃薯类型在长日内进行块茎。块茎诱导可移植,并且在嫁接植物的茎中检测到Hd3a-GFP蛋白,融合蛋白的运输因此与块茎形成相关。我们提供的证据表明,马铃薯的花期和块茎化过渡受两个不同的FT样旁系同源物(StSP3D和StSP6A)的控制,它们响应独立的环境线索,并显示涉及CONSTANS的自动继电器机制调节了块茎化控制StSP6A基因的表达。

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  • 来源
    《Nature》 |2011年第7367期|p.119-122|共4页
  • 作者单位

    Departamento de Genetica Molecular de Plantas, Centra Nacional de Biotecnologia-CSIC, Calle Darwin 3, 28049 Madrid, Spain;

    Departamento de Genetica Molecular de Plantas, Centra Nacional de Biotecnologia-CSIC, Calle Darwin 3, 28049 Madrid, Spain;

    Departamento de Genetica Molecular de Plantas, Centra Nacional de Biotecnologia-CSIC, Calle Darwin 3, 28049 Madrid, Spain;

    Departamento de Genetica Molecular de Plantas, Centra Nacional de Biotecnologia-CSIC, Calle Darwin 3, 28049 Madrid, Spain;

    Laboratory of Plant Molecular Genetics, Nara Institute of Science and Technology, 8916-5 Takayama, Ikoma 630-0101, Japan;

    Departamento de Genetica Molecular de Plantas, Centra Nacional de Biotecnologia-CSIC, Calle Darwin 3, 28049 Madrid, Spain;

    Laboratory of Plant Molecular Genetics, Nara Institute of Science and Technology, 8916-5 Takayama, Ikoma 630-0101, Japan;

    Departamento de Genetica Molecular de Plantas, Centra Nacional de Biotecnologia-CSIC, Calle Darwin 3, 28049 Madrid, Spain;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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  • 入库时间 2022-08-18 02:54:49

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