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A microfluidic droplet platform for multiplexed single nucleotide polymorphism analysis of an array plant genomic DNA samples

机译:一种微流控液滴平台,用于阵列植物基因组DNA样品的多重单核苷酸多态性分析

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A programmable droplet-based platform which performs multiplexed single nucleotide polymorphism analysis on an array of plant genomic DNA samples is presented. This device has the potential to meet the demand for flexible and cost-effective tools that can perform high throughput genetic screening for applications such as allelic variation detection in agriculture. The microfluidic droplet-based device accepts an unlimited number of sample plugs containing genomic plant DNA from a multi-well plate. Each plug is separated by a fluorinated immiscible carrier fluid to prevent cross-contamination. Once plugs are loaded on to the device, mechanical chopping of these sample plugs is performed to digitize them into smaller daughter droplets. The device then performs subsequent synchronization-free, robust injection of multiple single nucleotide polymorphism interrogating probes in to the sample daughter droplets on-demand. This microfluidic platform combines the excellent control of valve-based microfluidics with the high-throughput capability of droplet microfluidics. Furthermore, generation of a one-dimensional array of combinatorial mixtures of DNA-probe droplets in which the sequence of drops is maintained throughout the device leads to automatic spatial indexing of these droplets, precluding the need for barcoding to identify droplet contents. We expect this flexible platform to expand the range of applications of droplet microfluidics to include applications requiring high degrees of multiplexing as well as high throughput screening of arrays of samples.
机译:提出了一种基于液滴的可编程平台,该平台可对一系列植物基因组DNA样品进行多路单核苷酸多态性分析。该设备有可能满足对灵活,具有成本效益的工具的需求,这些工具可以对农业等位基因变异检测等应用进行高通量遗传筛选。基于微流体滴的设备可从多孔板上接受无数个包含基因组植物DNA的样品塞。每个塞子都由氟化不混溶的载液隔开,以防止交叉污染。将塞子装载到设备上后,将对这些塞子进行机械切割,以将其数字化为更小的子滴。然后,该设备随后按需执行将多个单核苷酸多态性探查探针进行的无同步,鲁棒性注入样品子液滴中。该微流体平台将基于阀的微流体的出色控制与液滴微流体的高通量能力结合在一起。此外,DNA探针液滴的一维混合物的一维阵列的生成(其中液滴的顺序在整个设备中保持不变)会导致这些液滴的自动空间索引,从而排除了对条形码进行识别以识别液滴含量的需要。我们希望这个灵活的平台能够扩展液滴微流体的应用范围,使其包括需要高度多路复用以及对样品阵列进行高通量筛选的应用。

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