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采用微型基质固相分散法,使用离子液体和磁性离子液体溶剂从植物组织中分离 DNA。

Isolation of DNA from plant tissues using a miniaturized matrix solid-phase dispersion approach featuring ionic liquid and magnetic ionic liquid solvents.

机构信息

Department of Chemistry, Iowa State University, Ames, IA, 50011, USA.

Dipartimento di Scienza e Tecnologia del Farmaco, Università di Torino, I-10125, Turin, Italy.

出版信息

Anal Chim Acta. 2023 Mar 8;1245:340858. doi: 10.1016/j.aca.2023.340858. Epub 2023 Jan 19.

DOI:10.1016/j.aca.2023.340858
PMID:36737141
Abstract

The isolation of high-quality plant genomic DNA is a major prerequisite in many plant biomolecular analyses involving nucleic acid amplification. Conventional plant cell lysis and DNA extraction methods involve lengthy sample preparation procedures that often require large amounts of sample and chemicals, high temperatures and multiple liquid transfer steps which can introduce challenges for high throughput applications. In this study, a simple, rapid, miniaturized ionic liquid (IL)-based extraction method was developed for the isolation of genomic DNA from milligram fragments of Arabidopsis thaliana plant tissue. This method is based on a modification of vortex-assisted matrix solid-phase dispersion (VA-MSPD) in which the trihexyl(tetradecyl)phosphonium bis(trifluoromethylsulfonyl)imide ([P][NTf]) IL or trihexyl(tetradecyl)phosphonium tris(hexafluoroacetylaceto)nickelate(II) ([P][Ni(hfacac)]) magnetic IL (MIL) was directly applied to treated plant tissue (∼1.5 mg) and dispersed in an agate mortar to facilitate plant cell lysis and DNA extraction, followed by recovery of the mixture with a qPCR compatible co-solvent. This study represents the first approach to use ILs and MILs in a MSPD procedure to facilitate plant cell lysis and DNA extraction. The DNA-enriched IL- and MIL-cosolvent mixtures were directly integrated into the qPCR buffer without inhibiting the reaction while also circumventing the need for additional purification steps prior to DNA amplification. Under optimum conditions, the IL and MIL yielded 2.87 ± 0.28 and 1.97 ± 0.59 ng of DNA/mg of plant tissue, respectively. Furthermore, the mild extraction conditions used in the method enabled plant DNA in IL- and MIL-cosolvent mixtures to be preserved from degradation at room temperature.

摘要

从毫克级拟南芥植物组织片段中分离高质量的植物基因组 DNA 是许多涉及核酸扩增的植物生物分子分析的主要前提条件。传统的植物细胞裂解和 DNA 提取方法涉及冗长的样品制备程序,通常需要大量的样品和化学物质、高温和多次液体转移步骤,这可能会给高通量应用带来挑战。在这项研究中,开发了一种简单、快速、微型化的基于离子液体 (IL) 的提取方法,用于从毫克级拟南芥植物组织片段中分离基因组 DNA。该方法基于改进的涡旋辅助基质固相分散 (VA-MSPD),其中三己基 (十四烷基) 膦双 (三氟甲基磺酰基) 亚胺 ([P][NTf]) IL 或三己基 (十四烷基) 膦三 (六氟乙酰丙酮) 镍 (II) ([P][Ni(hfacac)]) 磁性 IL (MIL) 直接应用于处理过的植物组织(约 1.5 mg),并在玛瑙研钵中分散以促进植物细胞裂解和 DNA 提取,然后用 qPCR 兼容的共溶剂回收混合物。本研究代表了首次在 MSPD 程序中使用 IL 和 MIL 来促进植物细胞裂解和 DNA 提取的方法。富含 DNA 的 IL 和 MIL-共溶剂混合物直接整合到 qPCR 缓冲液中,而不会抑制反应,同时也避免了在 DNA 扩增之前需要进行额外的纯化步骤。在最佳条件下,IL 和 MIL 分别从植物组织中提取了 2.87±0.28 和 1.97±0.59 ng 的 DNA/mg。此外,该方法中使用的温和提取条件使 IL 和 MIL 共溶剂混合物中的植物 DNA 能够在室温下保存而不降解。

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