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Strategies for reducing per‐sample costs in target capture sequencing for phylogenomics and population genomics in plants

机译:降低植物植物核糖和群体基因组学的目标捕获测序中的每次样本成本的策略

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摘要

The reduced cost of high‐throughput sequencing and the development of gene sets with wide phylogenetic applicability has led to the rise of sequence capture methods as a plausible platform for both phylogenomics and population genomics in plants. An important consideration in large targeted sequencing projects is the per‐sample cost, which can be inflated when using off‐the‐shelf kits or reagents not purchased in bulk. Here, we discuss methods to reduce per‐sample costs in high‐throughput targeted sequencing projects. We review the minimal equipment and consumable requirements for targeted sequencing while comparing several alternatives to reduce bulk costs in DNA extraction, library preparation, target enrichment, and sequencing. We consider how each of the workflow alterations may be affected by DNA quality (e.g., fresh vs. herbarium tissue), genome size, and the phylogenetic scale of the project. We provide a cost calculator for researchers considering targeted sequencing to use when designing projects, and identify challenges for future development of low‐cost sequencing in non‐model plant systems.
机译:高通量测序的成本降低和具有宽的系统发育适用性的基因组的发展导致序列捕获方法的升高,作为植物中植物孕组和群体基因组学的合理平台。大型针对性测序项目的重要考虑因素是按样本成本,可以在使用散装中未购买的现成套件或试剂时膨胀。在这里,我们讨论在高通量目标测序项目中降低每个样本成本的方法。我们审查了目标测序的最小设备和消耗品要求,同时比较了几种替代方案,以减少DNA提取,图书馆制备,靶向富集和测序的批量成本。我们考虑每个工作流程改变如何受到项目的DNA质量(例如,新鲜与植物杆菌组织),基因组大小和该项目的系统发育规模的影响。我们为研究人员提供了考虑在设计项目时使用的研究人员的成本计算器,并确定非模型植物系统中未来开发低成本排序的挑战。

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