构建叶绿体代谢组:建立适合代谢组学分析的叶片凋亡体收集方法

IF 6.1 2区 生物学 Q1 PLANT SCIENCES
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引用次数: 0

摘要

叶凋亡体含有多种化合物,这些化合物在植物不同生理过程的调控中发挥着重要作用。然而,在一些实验和建模研究中,这一区室一直被忽视,这主要与难以收集足量的凋亡体清洗液(AWF)进行代谢组学分析,以及尽可能避免凋亡体污染有关。在这里,我们建立了一种基于浸润-离心技术的方法,这种方法使用的叶片材料很少,但却能收集足够的叶绿体洗涤液,用于基于气相色谱-质谱(GC-MS)的烟草和拟南芥代谢组学分析。使用 20% (v/v) 甲醇(20% MeOH)或蒸馏去离子水(ddH2O)作为浸润液,对这两种植物的叶片和细胞质样本中的多达 54 种代谢物进行了注释。使用 20% 的 MeOH 增加了所采集 AWF 的产量,但也增加了交感污染的程度,尤其是在拟南芥中。我们提出了一个校正系数,并建议使用多种标记,如 MDH 活性、蛋白质含量和电导率测量,以验证基于 MeOH 的方案中的交感污染水平。用 ddH2O 或 20% MeOH 提取的细胞质样品中,糖的浓度和初级代谢物的水平均无差异。这表明可以优先使用 ddH2O,因为它是一种无毒且高度易得的浸润液。本文建立的基于浸润-离心的方法使用少量叶片材料和 ddH2O 作为浸润液,适用于烟草和拟南芥中基于 GC-MS 的代谢组学分析,并有极大的可能性扩展到其他植物物种和组织。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Toward the apoplast metabolome: Establishing a leaf apoplast collection approach suitable for metabolomics analysis

The leaf apoplast contains several compounds that play important roles in the regulation of different physiological processes in plants. However, this compartment has been neglected in several experimental and modelling studies, which is mostly associated to the difficulty to collect apoplast washing fluid (AWF) in sufficient amount for metabolomics analysis and as free as possible from symplastic contamination. Here, we established an approach based in an infiltration-centrifugation technique that use little leaf material but allows sufficient AWF collection for gas chromatography mass spectrometry (GC-MS)-based metabolomics analysis in both tobacco and Arabidopsis. Up to 54 metabolites were annotated in leaf and apoplast samples from both species using either 20% (v/v) methanol (20% MeOH) or distilled deionized water (ddH2O) as infiltration fluids. The use of 20% MeOH increased the yield of the AWF collected but also the level of symplastic contamination, especially in Arabidopsis. We propose a correction factor and recommend the use of multiple markers such as MDH activity, protein content and conductivity measurements to verify the level of symplastic contamination in MeOH-based protocols. Neither the concentration of sugars nor the level of primary metabolites differed between apoplast samples extracted with ddH2O or 20% MeOH. This indicates that ddH2O can be preferentially used, given that it is a non-toxic and highly accessible infiltration fluid. The infiltration-centrifugation-based approach established here uses little leaf material and ddH2O as infiltration fluid, being suitable for GC-MS-based metabolomics analysis in tobacco and Arabidopsis, with great possibility to be extended for other plant species and tissues.

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来源期刊
Plant Physiology and Biochemistry
Plant Physiology and Biochemistry 生物-植物科学
CiteScore
11.10
自引率
3.10%
发文量
410
审稿时长
33 days
期刊介绍: Plant Physiology and Biochemistry publishes original theoretical, experimental and technical contributions in the various fields of plant physiology (biochemistry, physiology, structure, genetics, plant-microbe interactions, etc.) at diverse levels of integration (molecular, subcellular, cellular, organ, whole plant, environmental). Opinions expressed in the journal are the sole responsibility of the authors and publication does not imply the editors'' agreement. Manuscripts describing molecular-genetic and/or gene expression data that are not integrated with biochemical analysis and/or actual measurements of plant physiological processes are not suitable for PPB. Also "Omics" studies (transcriptomics, proteomics, metabolomics, etc.) reporting descriptive analysis without an element of functional validation assays, will not be considered. Similarly, applied agronomic or phytochemical studies that generate no new, fundamental insights in plant physiological and/or biochemical processes are not suitable for publication in PPB. Plant Physiology and Biochemistry publishes several types of articles: Reviews, Papers and Short Papers. Articles for Reviews are either invited by the editor or proposed by the authors for the editor''s prior agreement. Reviews should not exceed 40 typewritten pages and Short Papers no more than approximately 8 typewritten pages. The fundamental character of Plant Physiology and Biochemistry remains that of a journal for original results.
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