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An accurate and efficient method for large-scale SSR genotyping and applications

机译:用于大规模SSR基因分型和应用的准确有效的方法

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Accurate and efficient genotyping of simple sequence repeats (SSRs) constitutes the basis of SSRs as an effective genetic marker with various applications. However, the existing methods for SSR genotyping suffer from low sensitivity, low accuracy, low efficiency and high cost. In order to fully exploit the potential of SSRs as genetic marker, we developed a novel method for SSR genotyping, named as AmpSeq-SSR, which combines multiplexing polymerase chain reaction (PCR), targeted deep sequencing and comprehensive analysis. AmpSeq-SSR is able to genotype potentially more than amillion SSRs at once using the current sequencing techniques. In the current study, we simultaneously genotyped 3105 SSRs in eight rice varieties, which were further validated experimentally. The results showed that the accuracies of AmpSeq-SSR were nearly 100 and 94% with a single base resolution for homozygous and heterozygous samples, respectively. To demonstrate the power of AmpSeq-SSR, we adopted it in two applications. The first was to construct discriminative fingerprints of the rice varieties using 3105 SSRs, which offer much greater discriminative power than the 48 SSRs commonly used for rice. The second was to map Xa21, a gene that confers persistent resistance to rice bacterial blight. We demonstrated that genome-scale fingerprints of an organism can be efficiently constructed and candidate genes, such as Xa21 in rice, can be accurately and efficiently mapped using an innovative strategy consisting of multiplexing PCR, targeted sequencing and computational analysis. While the work we present focused on rice, AmpSeq-SSR can be readily extended to animals and micro-organisms.
机译:简单序列重复的准确和有效的基因分型(SSRS)构成了SSR的基础,作为具有各种应用的有效遗传标记。然而,SSR基因分型现有方法患有低灵敏度,低精度,低效率和高成本。为了充分利用SSRS作为遗传标记的潜力,我们开发了一种新的SSR基因分型的方法,名为AMPSEQ-SSR,其结合了多路复用聚合酶链反应(PCR),靶向深序和综合分析。 AMPSEQ-SSR能够使用当前测序技术进行一次比Amillion SSR的基因型。在目前的研究中,我们同时在八种水稻品种中进行了3105个SSR,这是通过实验进行进一步验证的。结果表明,随着纯合和杂合子样品,AMPSEQ-SSR的精度接近100和94%,分辨率分辨率分辨率。为了展示AMPSEQ-SSR的力量,我们在两种应用中采用了它。首先是使用3105 SSRS构建水稻品种的辨别指纹,其提供比常用米的48个SSR更大的辨别能力。第二个是映射XA21,一种赋予持续抗水稻细菌枯萎的基因。我们证明,可以使用多路复用PCR,靶向测序和计算分析组成的创新策略,可以有效地构建生物体的基因组 - 尺度指纹,并且可以准确地映射水稻中的候选基因,例如XA21,例如XA21。虽然我们展示的工作重点是大米,但AMPSEQ-SSR可以容易地扩展到动物和微生物。

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