小麦原生质体高效转化体系的建立
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国家转基因生物新品种培育重大科技专项


Establishment of a highly-efficient transformation system of wheat protoplasts
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National Genetically Modified Organisms Breeding Major Projects of China

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    摘要:

    植物原生质体在高效解析植物细胞信号的传导途径、研究基因功能与蛋白组学中是一种方便有效的实验材料。当前,小麦基因的亚细胞定位和功能分析,大多利用模式植物拟南芥等来源的原生质体,可能存在研究结果的不准确。小麦原生质体成功制备及转化体系的建立与应用,将促进小麦內源基因特有的功能基因组研究及蛋白组学研究。本文测试了环境温度、抑制胞外核酸酶活性的因素和提高质粒DNA浓度等多个条件对转化效率的影响,旨在建立小麦原生质体的高效转化体系。结果表明,以高活性原生质体为基础,转化过程中始终保持低温环境(1 ℃)能有效提高2-10 %的转化效率,同时加入20 μg的质粒DNA进行转化,可以使小麦原生质体的转化效率提高到85 %。本文还将该系统成功地应用于2个小麦抗病相关蛋白的亚细胞定位研究,证明了该系统的高效性和实用性。该研究对小麦基因的亚细胞定位与功能的快速分析奠定了基础。

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    A plant protoplast system can be used to study transient gene expression, protein subcellular localization, protein-protein interaction and protein activity as well as gene function. The application of heterologous protoplast systems to the expressed proteins may exhibit aberrant trait. To avoid this mistaking, it is necessary to establish and apply the host protoplast systems. In wheat, the PEG-mediated gene protoplast transformation is hampered by the release of nucleases from the protoplasts, which leads to extensive degradation of plasmid DNAs. In this study, in order to get the high efficiency of the wheat protoplast transformation, means including inhibiting the nucleases activity and enlarging the plasmid quantity were used. The results showed that the protoplast transformation efficiency could be improved through double-fold usage of the plasmid quantity and inhibiting the nucleases activity by low transformation temperate. Consequently, the wheat protoplast transformation efficiency was raised to 85 %. Moreover, this wheat protoplast transformation system was used to study the expression protein subcellular localization of 2 wheat disease-related genes. This research has reference value for the future relevant work

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刘鑫,魏学宁,张学文,等.小麦原生质体高效转化体系的建立[J].植物遗传资源学报,2017,18(1):117-124.

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  • 收稿日期:2016-02-29
  • 最后修改日期:2016-03-21
  • 录用日期:2016-03-30
  • 在线发布日期: 2017-01-17
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