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基于 SPRI 磁珠的 DNA 纯化策略,兼具灵活性和成本效益。

An SPRI beads-based DNA purification strategy for flexibility and cost-effectiveness.

机构信息

Shenzhen Branch, Guangdong Laboratory of Lingnan Modern Agriculture, Key Laboratory of Livestock and Poultry Multi-omics of MARA, Agricultural Genomics Institute at Shenzhen, Chinese Academy of Agricultural Sciences, 7 Pengfei Road, Dapeng, Shenzhen, 518120, China.

Shenzhen Branch, Guangdong Laboratory for Lingnan Modern Agriculture, Genome Analysis Laboratory of the Ministry of Agriculture, Agricultural Genomics Institute at Shenzhen, Chinese Academy of Agricultural Sciences, Shenzhen 518120, China.

出版信息

BMC Genomics. 2023 Mar 16;24(1):125. doi: 10.1186/s12864-023-09211-w.

Abstract

BACKGROUND

Current solid-phase reversible immobilization (SPRI) beads technology is widely used in molecular biology due to its convenience for DNA manipulation. However, the high performance commercial SPRI beads have no price advantage over our method. Furthermore, the use of commercially available SPRI beads standards does not provide the flexibility required for a number of specific nucleic acid handling scenarios.

RESULTS

We report an efficient DNA purification strategy by combining home-made beads-suspension buffer with SPRI beads. The method tests the critical concentrations of polyethylene glycol (PEG) 8000 and beads to maximise recovery. And the composition of the SPRI beads DNA purification system (SDPS) was determined at 20% PEG 8000, 2 M NaCl and 16.3 mM MgCl, and 1.25 mg/ml beads (1/8th original concentration). Then, we tested the DNA recovery of the SDPS, and the result showed that it was comparable to the control (AMPure XP beads). In the study, we have also developed an adjustment SPRI beads DNA purification system (ASDPS), the volume of ASDPS per reaction is 0.6× reaction volume (beads/samples). The performance of ASDPS is similar to SDPS and the control. But the cost of our methods is only about 1/24th of the control. To further assess its performance, we prepare the DNA-seq libraries to evaluate the yield, library quality, capture efficiency and consistency. We have compared all these results with the performance of the control and confirmed its efficiency.

CONCLUSION

We have proposed an alternative DNA purification approach with great flexibility, allowing researchers to manipulate DNA in different conditions. And ultimately, its application will benefit molecular biology research in the future.

摘要

背景

目前,固相可逆固定(SPRI)珠技术由于其在 DNA 操作方面的便利性而在分子生物学中得到广泛应用。然而,高性能的商用 SPRI 珠在价格上并没有比我们的方法更具优势。此外,使用市售的 SPRI 珠标准并不能为许多特定的核酸处理场景提供所需的灵活性。

结果

我们报告了一种通过将自制珠悬浮缓冲液与 SPRI 珠相结合来实现高效 DNA 纯化的策略。该方法测试了聚乙二醇(PEG)8000 和珠的临界浓度,以最大限度地提高回收率。并且确定了 SPRI 珠 DNA 纯化系统(SDPS)的组成,其条件为 20% PEG 8000、2 M NaCl 和 16.3 mM MgCl,以及 1.25 mg/ml 珠(原始浓度的 1/8)。然后,我们测试了 SDPS 的 DNA 回收率,结果表明它与对照(AMPure XP 珠)相当。在该研究中,我们还开发了一种调整后的 SPRI 珠 DNA 纯化系统(ASDPS),每个反应的 ASDPS 体积为反应体积的 0.6×(珠/样品)。ASDPS 的性能与 SDPS 和对照相似。但是,我们方法的成本仅为对照的约 1/24。为了进一步评估其性能,我们制备了 DNA 测序文库,以评估产量、文库质量、捕获效率和一致性。我们将所有这些结果与对照的性能进行了比较,并证实了其效率。

结论

我们提出了一种具有很大灵活性的替代 DNA 纯化方法,允许研究人员在不同条件下操作 DNA。最终,其应用将有益于未来的分子生物学研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bd3a/10022144/d141eba282b2/12864_2023_9211_Fig1_HTML.jpg

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