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利用实时直接分析质谱代谢谱对完整拟南芥突变体种子进行遗传鉴别快速、简单的方法。

A rapid, simple method for the genetic discrimination of intact Arabidopsis thaliana mutant seeds using metabolic profiling by direct analysis in real-time mass spectrometry.

机构信息

Biological Resource Center, Korea Research Institute of Bioscience and Biotechnology (KRIBB), 125 Gwahak-ro, Yuseong-gu, Daejeon, 305-806, Korea.

Division of Pharmacognosy, Kyung Hee University, 1 Hoegi dong Dongdaemun-Gu, Seoul, 130-701, Korea.

出版信息

Plant Methods. 2011 Jun 10;7:14. doi: 10.1186/1746-4811-7-14.

Abstract

BACKGROUND

Efficient high throughput screening systems of useful mutants are prerequisite for study of plant functional genomics and lots of application fields. Advance in such screening tools, thanks to the development of analytic instruments. Direct analysis in real-time (DART)-mass spectrometry (MS) by ionization of complex materials at atmospheric pressure is a rapid, simple, high-resolution analytical technique. Here we describe a rapid, simple method for the genetic discrimination of intact Arabidopsis thaliana mutant seeds using metabolic profiling by DART-MS.

RESULTS

To determine whether this DART-MS combined by multivariate analysis can perform genetic discrimination based on global metabolic profiling, intact Arabidopsis thaliana mutant seeds were subjected to DART-MS without any sample preparation. Partial least squares-discriminant analysis (PLS-DA) of DART-MS spectral data from intact seeds classified 14 different lines of seeds into two distinct groups: Columbia (Col-0) and Landsberg erecta (Ler) ecotype backgrounds. A hierarchical dendrogram based on partial least squares-discriminant analysis (PLS-DA) subdivided the Col-0 ecotype into two groups: mutant lines harboring defects in the phenylpropanoid biosynthetic pathway and mutants without these defects. These results indicated that metabolic profiling with DART-MS could discriminate intact Arabidopsis seeds at least ecotype level and metabolic pathway level within same ecotype.

CONCLUSION

The described DART-MS combined by multivariate analysis allows for rapid screening and metabolic characterization of lots of Arabidopsis mutant seeds without complex metabolic preparation steps. Moreover, potential novel metabolic markers can be detected and used to clarify the genetic relationship between Arabidopsis cultivars. Furthermore this technique can be applied to predict the novel gene function of metabolic mutants regardless of morphological phenotypes.

摘要

背景

高效高通量筛选有用突变体的系统是植物功能基因组学研究和许多应用领域的前提。由于分析仪器的发展,此类筛选工具取得了进展。常压下复杂物质的直接实时分析(DART)-质谱(MS)电离是一种快速、简单、高分辨率的分析技术。在这里,我们描述了一种使用 DART-MS 进行代谢谱分析快速、简单的方法,用于对完整拟南芥突变体种子进行遗传鉴别。

结果

为了确定这种通过多元分析结合的 DART-MS 是否可以基于全局代谢谱进行遗传鉴别,我们对完整的拟南芥突变体种子进行了 DART-MS 分析,而无需任何样品制备。对来自完整种子的 DART-MS 光谱数据进行偏最小二乘判别分析(PLS-DA),将 14 条不同的种子线分为两个不同的组:哥伦比亚(Col-0)和 Landsberg erecta(Ler)生态型背景。基于偏最小二乘判别分析(PLS-DA)的层次聚类树状图将 Col-0 生态型分为两组:具有苯丙烷生物合成途径缺陷的突变体线和没有这些缺陷的突变体。这些结果表明,DART-MS 代谢谱分析至少可以在生态型水平和同一生态型内的代谢途径水平上区分完整的拟南芥种子。

结论

所描述的通过多元分析结合的 DART-MS 允许快速筛选和代谢表征大量的拟南芥突变体种子,而无需复杂的代谢准备步骤。此外,可以检测到潜在的新代谢标记物,并用于阐明拟南芥品种之间的遗传关系。此外,无论表型是否形态,该技术都可用于预测代谢突变体的新基因功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b5aa/3138417/04e22e124f74/1746-4811-7-14-1.jpg

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