首页> 外文期刊>Genetica >An Ac transposon system based on maize chromosome 4S for isolating long-distance-transposed Ac tags in the maize genome
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An Ac transposon system based on maize chromosome 4S for isolating long-distance-transposed Ac tags in the maize genome

机译:一种基于玉米染色体4S的AC转座系统,用于隔离玉米基因组中的长距离转置AC标签

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摘要

Transposon tagging is an important tool for gene isolation and functional studies. In maize, several transposon-tagging systems have been developed, mostly using Activator/Dissociation (Ac/Ds) and Mutator systems. Here, we establish another Ac-based transposon system with the donor Ac tightly linked with sugary1 (su1) on maize chromosome 4S. Newly transposed Ac (tr-Acs) were detected based on a negative dosage effect, and long-distance-transposed Ac events were identified and isolated from the donor Ac by a simple backcross scheme. In this study, we identified 208 independent long-distance-transposed Ac lines. Thirty-one flanking sequences of these tr-Acs were isolated and localized in the maize genome. As found in previous studies, the tr-Acs preferentially inserted into genic sequences. The distribution of tr-Acs is not random. In our study, the tr-Acs preferentially transposed into chromosomes 1, 2, 9 and 10. We discuss the preferential distribution of tr-Acs from Ac systems. Our system is complementary to two other Ac-based regional-mutagenesis systems in maize, and the combined use of these systems will achieve an even and high-density distribution of Ac elements throughout the maize genome for functional-genomics studies.
机译:转座子标记是基因分离和功能研究的重要工具。在玉米中,已经开发了几种转座子标记系统,主要是使用活化剂/解离(AC / DS)和突变系统。在这里,我们建立另一个基于AC的转座子系统,其中供体AC与玉米染色体4S上的含糖1(SU1)紧密连接。基于负剂量效应检测到新转移的AC(TR-ACS),通过简单的回程方案,从供体AC鉴定并分离长距离转移的AC事件。在这项研究中,我们确定了208个独立的长距离转换交流线路。将这些TR-AC的三十一张侧翼序列分离并局存在玉米基因组中。如在先前的研究中,TR-AC优先插入基因序列。 TR-AC的分布不是随机的。在我们的研究中,优先转移到染色体1,2,9和10中的TR-AC。我们讨论了来自AC系统的TR-AC的优先分布。我们的系统与玉米的另外两种其他基于AC的区域诱变系统互补,并且这些系统的结合使用将在整个玉米基因组中实现AC元素的均匀和高密度分布,用于功能基因组学研究。

著录项

  • 来源
    《Genetica》 |2010年第12期|共10页
  • 作者单位

    School of Life Sciences Shanghai University Shanghai Key Laboratory of Bio-energy Crop 333 Nanchen Road 200444 Shanghai People’s Republic of China;

    School of Life Sciences Shanghai University Shanghai Key Laboratory of Bio-energy Crop 333 Nanchen Road 200444 Shanghai People’s Republic of China;

    School of Life Sciences Shanghai University Shanghai Key Laboratory of Bio-energy Crop 333 Nanchen Road 200444 Shanghai People’s Republic of China;

    School of Life Sciences Shanghai University Shanghai Key Laboratory of Bio-energy Crop 333 Nanchen Road 200444 Shanghai People’s Republic of China;

    School of Life Sciences Shanghai University Shanghai Key Laboratory of Bio-energy Crop 333 Nanchen Road 200444 Shanghai People’s Republic of China;

    School of Life Sciences Shanghai University Shanghai Key Laboratory of Bio-energy Crop 333 Nanchen Road 200444 Shanghai People’s Republic of China;

    School of Life Sciences Shanghai University Shanghai Key Laboratory of Bio-energy Crop 333 Nanchen Road 200444 Shanghai People’s Republic of China;

    School of Life Sciences Shanghai University Shanghai Key Laboratory of Bio-energy Crop 333 Nanchen Road 200444 Shanghai People’s Republic of China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 遗传学;
  • 关键词

    Zea mays.; Ac/Ds; Long-distance transposition; Regional mutagenesis; Internet resource.;

    机译:Zea Mays。;AC / DS;长途转置;区域诱变;互联网资源。;

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