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Non-destructive high-throughput DNA extraction and genotyping methods for cotton seeds and seedlings

机译:棉花种子和幼苗的无损高通量DNA提取和基因分型方法

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Extensive use of targeted PCR-based genotyping is precluded for many plant research laboratories by the cost and time required for DNA extraction. Using cotton (Gossypium hirsutum) as a model for plants with medium-sized seeds, we report here manual procedures for inexpensive non-destructive high-throughput extraction of DNA suitable for PCR-based genotyping of large numbers of individual seeds and seedlings. By sampling only small amounts of cotyledon tissue of ungerminated seed or young seedlings, damage is minimized, and viability is not discernibly affected. The yield of DNA from each seed or seedling is typically sufficient for 1000 or 500 PCR reactions, respectively. For seeds, the tissue sampling procedure relies on a modified 96-well plate that is used subsequently for seed storage. For seeds and seedlings, the DNA is extracted in a strongly basic DNA buffer that is later neutralized and diluted. Extracts can be used directly for high-throughput PCR-based genotyping. Any laboratory can thus extract DNA from thousands of individual seeds/seedlings per person-day at a very modest cost for consumables (similar to$0.05 per sample). Being non-destructive, our approach enables a wide variety of time-and resource-saving applications, such as marker-assisted selection (MAS), before planting, transplanting, and flowering.
机译:DNA提取所需的成本和时间使许多植物研究实验室无法广泛使用基于靶点的基于PCR的基因型。我们使用棉花(陆地棉)作为中型种子植物的模型,我们在此报告了用于廉价,无损,高通量提取DNA的手动程序,该程序适用于基于PCR的大量单个种子和幼苗的基因分型。通过仅取样未发芽的种子或幼苗的子叶组织,可以最大程度地减少损害,并且不会明显影响其生存能力。每个种子或幼苗的DNA产量通常分别足以进行1000或500次PCR反应。对于种子,组织采样程序依赖于改良的96孔板,该板随后用于种子存储。对于种子和幼苗,将在强碱性DNA缓冲液中提取DNA,然后将其中和并稀释。提取物可直接用于基于PCR的高通量基因分型。因此,任何实验室都可以以非常适中的耗材成本(每样品约0.05美元)从每人每天数千个种子/幼苗中提取DNA。由于是非破坏性的,我们的方法可以在种植,移栽和开花之前实现多种节省时间和资源的应用,例如标记辅助选择(MAS)。

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