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An optimized protocol for isolation of high‐quality RNA through laser capture microdissection of leaf material

机译:通过叶片材料的激光捕获显微切割分离高质量RNA的优化方案

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摘要

Laser Capture Microdissection is a powerful tool that allows thin slices of specific cell types to be separated from one another. However, the most commonly used protocol, which involves embedding tissue in paraffin wax, results in severely degraded RNA. Yields from low abundance cell types of leaves are particularly compromised. We reasoned that the relatively high temperature used for sample embedding, and aqueous conditions associated with sample preparation prior to microdissection contribute to RNA degradation. Here, we describe an optimized procedure to limit RNA degradation that is based on the use of low‐melting‐point wax as well as modifications to sample preparation prior to dissection, and isolation of paradermal, rather than transverse sections. Using this approach, high‐quality RNA suitable for down‐stream applications such as quantitative reverse transcriptase–polymerase chain reactions or RNA‐sequencing is recovered from microdissected bundle sheath strands and mesophyll cells of leaf tissue.
机译:激光捕获显微解剖是一种功能强大的工具,可以将特定细胞类型的薄片彼此分离。但是,最常用的方案是将组织嵌入石蜡中,导致RNA严重降解。叶片低丰度细胞类型的产量特别受到损害。我们认为,用于样品包埋的相对较高的温度以及显微解剖前与样品制备相关的水性条件会导致RNA降解。在这里,我们描述了一种基于低熔点蜡的使用,以及在解剖前对样品制备进行的改进以及分离皮下而不是横断面的方法,以限制RNA降解。使用这种方法,可以从显微切割的叶鞘束鞘链和叶肉细胞中回收适合下游应用的高质量RNA,例如定量逆转录酶-聚合酶链反应或RNA测序。

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