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MultiplexSSR: A pipeline for developing multiplex SSR‐PCR assays from resequencing data

机译:MultiplexSSR:从重测序数据开发多重SSR-PCR分析的管道

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摘要

Next‐generation sequencing has greatly promoted the investigation of single nucleotide polymorphisms, while studies of simple sequence repeats are sharply decreasing. However, simple sequence repeats still present some advantages in conservation genetics. In this study, an end‐to‐end pipeline referred to as MultiplexSSR was established to develop multiplex PCR assays in batches with highly polymorphic simple sequence repeats for capillary platforms from resequencing data. The distribution of single sequence repeats in the genome, the error profiles of genotypes and allelotypes, and the increase in the allele length range depending on the number of individuals were investigated. A total of 98% of single sequence repeats presented lengths of less than 100 bp. The error rate of the genotyping and allelotyping of dimeric patterns was ten times higher than those for other patterns. The error rate of allelotyping was less than that of genotyping. The allele length range reached approximate saturation with 10 individuals. This pipeline uses allele numbers to select highly polymorphic loci, masks loci with variation, and applies in silico PCR to improve primer specificity. The application of the developed multiplex SSR‐PCR assays validated the pipeline's robustness, showing higher polymorphism and stability for the developed simple sequence repeats and a lower cost for genotyping and providing low‐depth resequencing data from less than a dozen individuals for the development of markers. This pipeline fills the gap between next‐generation sequencing and multiplex SSR‐PCR.
机译:下一代测序极大地促进了单核苷酸多态性的研究,而对简单序列重复的研究急剧减少。但是,简单的序列重复在保守遗传学上仍具有一些优势。在这项研究中,建立了一个称为MultiplexSSR的端到端管道,以从重测序数据中为毛细管平台开发具有高度多态性简单重复序列的批处理开发多重PCR分析。研究了单个序列重复序列在基因组中的分布,基因型和等位基因的错误概况以及等位基因长度范围的增加(取决于个体数量)。共有98%的单序列重复序列的长度小于100 bp。二聚体模式的基因分型和等位基因型的错误率比其他模式高十倍。异型定型的错误率小于基因型的错误率。等位基因长度范围达到了大约10个人的饱和度。该流水线使用等位基因编号选择高度多态的基因座,掩盖变异的基因座,并通过计算机PCR应用以提高引物特异性。所开发的多重SSR-PCR分析方法的应用验证了管线的稳健性,表明所开发的简单序列重复序列具有更高的多态性和稳定性,并且基因分型的成本更低,并提供了来自不到12个人的低深度重测序数据用于标记的开发。该管道填补了下一代测序和多重SSR-PCR之间的空白。

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