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Ice-Cap: A Method for Growing Arabidopsis and Tomato Plants in 96-well Plates for High-Throughput Genotyping

机译:冰帽:一种用于高通量基因分型的96孔板中拟南芥和番茄植物的生长方法

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摘要

It is becoming common for plant scientists to develop projects that require the genotyping of large numbers of plants. The first step in any genotyping project is to collect a tissue sample from each individual plant. The traditional approach to this task is to sample plants one-at-a-time. If one wishes to genotype hundreds or thousands of individuals, however, using this strategy results in a significant bottleneck in the genotyping pipeline. The Ice-Cap method that we describe here provides a high-throughput solution to this challenge by allowing one scientist to collect tissue from several thousand seedlings in a single day 1,2. This level of throughput is made possible by the fact that tissue is harvested from plants 96-at-a-time, rather than one-at-a-time.The Ice-Cap method provides an integrated platform for performing seedling growth, tissue harvest, and DNA extraction. The basis for Ice-Cap is the growth of seedlings in a stacked pair of 96-well plates. The wells of the upper plate contain plugs of agar growth media on which individual seedlings germinate. The roots grow down through the agar media, exit the upper plate through a hole, and pass into a lower plate containing water. To harvest tissue for DNA extraction, the water in the lower plate containing root tissue is rapidly frozen while the seedlings in the upper plate remain at room temperature. The upper plate is then peeled away from the lower plate, yielding one plate with 96 root tissue samples frozen in ice and one plate with 96 viable seedlings. The technique is named "Ice-Cap" because it uses ice to capture the root tissue. The 96-well plate containing the seedlings can then wrapped in foil and transferred to low temperature. This process suspends further growth of the seedlings, but does not affect their viability. Once genotype analysis has been completed, seedlings with the desired genotype can be transferred from the 96-well plate to soil for further propagation. We have demonstrated the utility of the Ice-Cap method using Arabidopsis thaliana, tomato, and rice seedlings. We expect that the method should also be applicable to other species of plants with seeds small enough to fit into the wells of 96-well plates.
机译:植物科学家开发需要对大量植物进行基因分型的项目正变得越来越普遍。任何基因分型项目的第一步都是从每个植物中收集组织样本。执行此任务的传统方法是一次采样植物。但是,如果希望对成百上千的个体进行基因分型,则使用这种策略会导致基因分型流程出现重大瓶颈。我们在此描述的Ice-Cap方法通过允许一位科学家在一天之内 1,2 从数千棵幼苗中收集组织,从而为这一挑战提供了高通量的解决方案。如此高的吞吐率是因为这样的事实,组织是一次从植物中收获96次,而不是一次从植物中收获。Ice-Cap方法提供了用于执行幼苗生长,组织收获的集成平台,以及DNA提取。 Ice-Cap的基础是在成对的96孔板中生长幼苗。上板的孔中含有琼脂生长培养基,每个幼苗在其上发芽。根部通过琼脂培养基向下生长,通过一个孔离开上板,然后进入含水的下板。为了收集组织用于DNA提取,将包含根组织的下平板中的水迅速冷冻,而上平板中的幼苗则保持在室温下。然后将上板从下板剥离,得到一个板,该板具有在冰中冷冻的96个根组织样品,以及一个板,具有96个有活力的幼苗。该技术被称为“冰帽”,因为它使用冰来捕获根组织。然后将装有幼苗的96孔板包裹在箔中并转移至低温。此过程中止了幼苗的进一步生长,但不影响其生存能力。一旦完成基因型分析,即可将具有所需基因型的幼苗从96孔板转移到土壤中,以进一步繁殖。我们已经证明了使用拟南芥,番茄和水稻幼苗的“冰帽”方法的实用性。我们希望该方法也应适用于种子足够小以适合96孔板孔的其他植物。

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