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首页> 外文期刊>Plant Cell, Tissue and Organ Culture (PCTOC) >The Fast-track breeding approach can be improved by heat-induced expression of the FLOWERING LOCUS T genes from poplar (Populus trichocarpa) in apple (Malus × domestica Borkh.)
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The Fast-track breeding approach can be improved by heat-induced expression of the FLOWERING LOCUS T genes from poplar (Populus trichocarpa) in apple (Malus × domestica Borkh.)

机译:通过热诱导苹果(Malus×domestica Borkh。)的白杨(Populus trichocarpa)的FLOWERING LOCUS T基因表达,可以改善快速跟踪育种方法。

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摘要

The Fast-track breeding approach in apple is based on the utilization of the BpMADS4 gene from Betula pendula. However, this approach has several disadvantages which could be solved using other flowering inducing genes and inducible promoters. The FLOWERING LOCUS T genes (PtFT1 and PtFT2) from poplar (Populus trichocarpa) driven by the heat-inducible Gmhsp 17.5-E (HSP)-promoter from soybean (Glycine max) were transferred into apple (Malus × domestica Borkh.) cv. ‘Pinova’ in order to induce flowering. Seven transgenic apple lines were obtained. All transgenic apple lines micrografted onto ‘Golden Delicious’ seedlings used as rootstocks were transferred to the greenhouse. Six out of seven transgenic lines developed flowers after a heat treatment at 42 °C for 1 h daily over a period of 28 days. The transgenic line T836 failed to flower. Flower morphology and pollen vitality of transgenic lines appeared normal. Transgenic plants were successfully used for hybridizations. Pollen from Malus ×robusta 5 applied to flowers of transgenic plants resulted in fruit formation. Heat induced PtFT1, respectively PtFT2 over-expressing rootstocks did not cause flowering in micrografted non-transgenic ‘Pinova’ scions. The mRNA of the PtFT genes was transported from transgenic rootstocks to non-transgenic scions only in one case. As a balance between plant development and flowering is important for the production of early flowering plants usable for a fast-track breeding program the new approach based on heat-induced flowering could be a refinement of the fast breeding program using the possibility of turning-on-turning-off flowering in physiological well developed plants.
机译:苹果的快速追踪育种方法是基于利用来自西南桦的BpMADS4基因的。然而,该方法具有几个缺点,可以使用其他开花诱导基因和诱导型启动子来解决。来自大豆(Glycine max)的热诱导Gmhsp 17.5-E(HSP)启动子驱动的杨树(Populus trichocarpa)的FLOWERING LOCUS T基因(PtFT1和PtFT2)被转移到苹果(Malus×domestica Borkh。)cv。 “ Pinova”以诱导开花。获得了七个转基因苹果系。将所有微基因移植到用作砧木的“ Golden Delicious”幼苗上的转基因苹果系转移到温室中。七个转基因品系中有六个在28天的时间内每天于42°C热处理1小时后就开花。转基因品系T836未能开花。转基因品系的花形态和花粉活力均正常。转基因植物已成功用于杂交。将苹果属(Malus×robusta)5的花粉施用到转基因植物的花上导致果实形成。热诱导的PtFT1和过表达的PtFT2的砧木在微嫁接的非转基因“ Pinova”接穗中均未引起开花。仅在一种情况下,PtFT基因的mRNA从转基因砧木转运到非转基因接穗。由于植物发育与开花之间的平衡对于可用于快速育种计划的早期开花植物的生产很重要,因此基于热诱导开花的新方法可能是利用开启可能性对快速育种计划进行改进在生理发达的植物中关闭开花。

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  • 来源
    《Plant Cell, Tissue and Organ Culture (PCTOC)》 |2013年第2期|127-137|共11页
  • 作者单位

    Julius Kühn-Institut Federal Research Institute for Cultivated Plants Institute for Breeding Research on Horticultural and Fruit Crops">(1);

    Julius Kühn-Institut Federal Research Institute for Cultivated Plants Institute for Breeding Research on Horticultural and Fruit Crops">(1);

    Julius Kühn-Institut Federal Research Institute for Cultivated Plants Institute for Breeding Research on Horticultural and Fruit Crops">(1);

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Grafting; Heat shock promoter; Malus; PtFT; Transformation;

    机译:嫁接;热激促进剂;海棠;PtFT;转型;

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