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SSR-patchwork: An optimized protocol to obtain a rapid and inexpensive SSR library using first-generation sequencing technology

机译:SSR修补程序:使用第一代测序技术获得快速廉价的SSR库的优化协议

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摘要

• Premise of the study: We have optimized a version of a microsatellite loci isolation protocol for first-generation sequencing (FGS) technologies. The protocol is optimized to reduce the cost and number of steps, and it combines some procedures from previous simple sequence repeat (SSR) protocols with several key improvements that significantly affect the final yield of the SSR library. This protocol may be accessible for laboratories with a moderate budget or for which next-generation sequencing (NGS) is not readily available.• Methods and Results: We drew from classic protocols for library enrichment by digestion, ligation, amplification, hybridization, cloning, and sequencing. Three different systems were chosen: two with very different genome sizes (Galdieria sulphuraria, 10 Mbp; Pancratium maritimum, 30 000 Mbp), and a third with an undetermined genome size (Kochia saxicola). Moreover, we also report the optimization of the sequencing reagents. A good frequency of the obtained microsatellite loci was achieved.• Conclusions: The method presented here is very detailed; comparative tests with other SSR protocols are also reported. This optimized protocol is a promising tool for low-cost genetic studies and the rapid, simple construction of homemade SSR libraries for small and large genomes.
机译:•研究的前提:我们已经针对第一代测序(FGS)技术优化了微卫星基因座分离协议的版本。该协议经过优化以减少成本和步骤数量,并且将以前的简单序列重复(SSR)协议中的某些过程与一些关键改进相结合,这些改进显着影响了SSR库的最终产量。对于中等预算的实验室或尚不易获得下一代测序(NGS)的实验室,可以使用此协议。•方法和结果:我们借鉴了经典的协议,通过消化,连接,扩增,杂交,克隆,和排序。选择了三种不同的系统:两种具有不同的基因组大小(Galdieria sulphuraria,10 Mbp; Mantcratum maritimum,30000 Mbp),第三种具有未确定的基因组大小(Kochia saxicola)。此外,我们还报告了测序试剂的优化。获得的微卫星基因座的频率很高。•结论:这里介绍的方法非常详细;还报告了与其他SSR协议的对比测试。这种优化的协议是用于低成本遗传研究以及快速,简单构建用于小型和大型基因组的自制SSR库的有前途的工具。

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