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Ice-Cap. A High-Throughput Method for Capturing Plant Tissue Samples for Genotype Analysis

机译:冰帽。捕获植物组织样品进行基因型分析的高通量方法

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摘要

High-throughput genotype screening is rapidly becoming a standard research tool in the post-genomic era. A major bottleneck currently exists, however, that limits the utility of this approach in the plant sciences. The rate-limiting step in current high-throughput pipelines is that tissue samples from living plants must be collected manually, one plant at a time. In this article I describe a novel method for harvesting tissue samples from living seedlings that eliminates this bottleneck. The method has been named Ice-Cap to reflect the fact that ice is used to capture the tissue samples. The planting of seeds, growth of seedlings, and harvesting of tissue are all performed in a 96-well format. I demonstrate the utility of this system by using tissue harvested by Ice-Cap to genotype a population of Arabidopsis seedlings that is segregating a previously characterized mutation. Because the harvesting of tissue is performed in a nondestructive manner, plants with the desired genotype can be transferred to soil and grown to maturity. I also show that Ice-Cap can be used to analyze genomic DNA from rice (Oryza sativa) seedlings. It is expected that this method will be applicable to high-throughput screening with many different plant species, making it a useful technology for performing marker assisted selection.
机译:高通量基因型筛选正迅速成为后基因组时代的标准研究工具。但是,目前存在一个主要瓶颈,限制了该方法在植物科学中的应用。当前高通量管道中的限速步骤是必须手动采集活植物的组织样品,一次采集一株。在本文中,我描述了一种从活苗中采集组织样本的新颖方法,该方法消除了这一瓶颈。该方法已被命名为Ice-Cap,以反映使用冰捕获组织样本的事实。种子的播种,幼苗的生长和组织的收获均以96孔形式进行。我通过使用Ice-Cap收集的组织对正在分离先前表征的突变的拟南芥幼苗群体进行基因分型,证明了该系统的实用性。因为组织的收获是以非破坏性的方式进行的,所以具有所需基因型的植物可以转移到土壤中并生长到成熟。我还展示了Ice-Cap可用于分析水稻(Oryza sativa)幼苗的基因组DNA。预期该方法将适用于许多不同植物物种的高通量筛选,使其成为进行标记辅助选择的有用技术。

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