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首页> 外文期刊>Plant Biotechnology Journal >Constitutive expression of cell wall invertase genes increases grain yield and starch content in maize.
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Constitutive expression of cell wall invertase genes increases grain yield and starch content in maize.

机译:细胞壁转化酶基因的组成型表达增加了玉米中的籽粒产量和淀粉含量。

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摘要

Grain size, number and starch content are important determinants of grain yield and quality. One of the most important biological processes that determine these components is the carbon partitioning during the early grain filling, which requires the function of cell wall invertase. Here, we showed the constitutive expression of cell wall invertase-encoding gene from Arabidopsis, rice (Oryza sativa) or maize (Zea mays), driven by the cauliflower mosaic virus (CaMV) 35S promoter, all increased cell wall invertase activities in different tissues and organs, including leaves and developing seeds, and substantially improved grain yield up to 145.3% in transgenic maize plants as compared to the wild-type plants, an effect that was reproduced in our 2-year field trials at different locations. The dramatically increased grain yield is due to the enlarged ears with both enhanced grain size and grain number. Constitutive expression of the invertase-encoding gene also increased total starch content up to 20% in the transgenic kernels. Our results suggest that cell wall invertase gene can be genetically engineered to improve both grain yield and grain quality in crop plants.
机译:粒度,数量和淀粉含量是粮食产量和质量的重要决定因素。确定这些组分的最重要的生物过程之一是早期籽粒填充过程中的碳分配,这需要细胞壁转化酶的功能。在这里,我们展示了由花椰菜马赛克病毒(CAMV)35s启动子驱动的拟南芥,水稻(Oryza Sativa)或玉米(Zea Mays)的细胞壁转化酶编码基因的组成型表达,所有增加的细胞壁倒置在不同组织中的活性与野生型植物相比,在转基因玉米植物中,包括叶片和显影种子,并且在转基因玉米植物中显着提高了145.3%的谷物产量,这是在不同地点的2年田间试验中转载的效果。大幅增加的谷物产量是由于增强晶粒尺寸和晶粒数的耳朵的扩大。转化酶编码基因的组成型表达还增加了转基因核中的总淀粉含量高达20%。我们的研究结果表明,细胞壁转化酶基因可以遗传地改造,以提高作物植物中的谷物产量和粒度。

著录项

  • 来源
    《Plant Biotechnology Journal》 |2013年第9期|共12页
  • 作者单位

    National Key Laboratory of Plant Molecular Genetics Shanghai Institute of Plant Physiology and Ecology Chinese Academy of Sciences Shanghai China;

    National Key Laboratory of Plant Molecular Genetics Shanghai Institute of Plant Physiology and Ecology Chinese Academy of Sciences Shanghai China;

    National Key Laboratory of Plant Molecular Genetics Shanghai Institute of Plant Physiology and Ecology Chinese Academy of Sciences Shanghai China;

    National Key Laboratory of Plant Molecular Genetics Shanghai Institute of Plant Physiology and Ecology Chinese Academy of Sciences Shanghai China;

    State Key Laboratory of Crop Biology College of Agronomy Shandong Agricultural University Tai抋n Shandong Province China;

    Hunan Provincial Key Laboratory of Phytohormones and Growth Development Hunan Agricultural University Changsha Hunan Province China;

    National Key Laboratory of Plant Molecular Genetics Shanghai Institute of Plant Physiology and Ecology Chinese Academy of Sciences Shanghai China;

    National Key Laboratory of Plant Molecular Genetics Shanghai Institute of Plant Physiology and Ecology Chinese Academy of Sciences Shanghai China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子生物学;
  • 关键词

    cell wall invertase; GIF1; grain yield; maize; starch content; transgenic plants.;

    机译:细胞壁转化酶;GIF1;谷物产量;玉米;淀粉含量;转基因植物。;

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