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基于质谱的代谢物分析揭示了刺果甘草代谢组在功能上具有季节性变化,且这种变化与环境条件有关。

Mass spectrometry-based metabolite profiling reveals functional seasonal shifts in the metabolome of Zygophyllum dumosum Boiss and its relation to environmental conditions.

机构信息

French Associates Institute for Agriculture and Biotechnology of Drylands, Jacob Blaustein Institutes for Desert Research, Ben-Gurion University of the Negev, Sde Boker Campus, 84990, Midreshet Ben-Gurion, Israel.

Ilse Katz Institute for Nanoscale Science and Technology, Ben-Gurion University of the Negev, 84105, Beer Sheva, Israel.

出版信息

Planta. 2023 Jun 3;258(1):10. doi: 10.1007/s00425-023-04168-2.

Abstract

A multi-year study of perennial Z. dumosum shows a consistent seasonal pattern in the changes of petiole metabolism, involving mainly organic acids, polyols, phenylpropanoids, sulfate conjugates, and piperazines. GC-MS and UPLC-QTOF-MS-based metabolite profiling was performed on the petioles of the perennial desert shrub Zygophyllum dumosum Boiss (Zygophyllaceae). The petioles, which are physiologically functional throughout the year and, thus, exposed to seasonal rhythms, were collected every month for 3 years from their natural ecosystem on a southeast-facing slope. Results showed a clear multi-year pattern following seasonal successions, despite different climate conditions, i.e., rainy and drought years, throughout the research period. The metabolic pattern of change encompassed an increase in the central metabolites, including most polyols, e.g., stress-related D-pinitol, organic and sugar acids, and in the dominant specialized metabolites, which were tentatively identified as sulfate, flavonoid, and piperazine conjugates during the summer-autumn period, while significantly high levels of free amino acids were detected during the winter-spring period. In parallel, the levels of most sugars (including glucose and fructose) increased in the petioles at the flowering stage at the beginning of the spring, while most of the di- and tri-saccharides accumulated at the beginning of seed development (May-June). Analysis of the conserved seasonal metabolite pattern of change shows that metabolic events are mostly related to the stage of plant development and its interaction with the environment and less to environmental conditions per se.

摘要

对多年生獐牙菜进行了多年的研究,结果表明其叶柄代谢物的变化存在一致的季节性模式,主要涉及有机酸、多元醇、苯丙素、硫酸盐缀合物和哌嗪。对多年生荒漠灌木獐牙菜(蒺藜科)叶柄进行了基于 GC-MS 和 UPLC-QTOF-MS 的代谢物分析。这些叶柄全年都具有生理功能,因此会受到季节性节律的影响,从其位于东南坡的自然生态系统中,每年收集 3 次,每月 1 次,共收集 3 年。结果表明,尽管在整个研究期间气候条件不同,即有雨年和干旱年,但仍存在明确的多年模式。代谢变化模式包括中心代谢物的增加,包括大多数多元醇,如应激相关的 D-松醇、有机酸和糖酸,以及优势特化代谢物的增加,这些代谢物在夏秋季被暂定为硫酸盐、类黄酮和哌嗪缀合物,而在冬春季则检测到游离氨基酸水平显著升高。同时,在春季开始时的花期,叶柄中大多数糖(包括葡萄糖和果糖)的水平增加,而大多数二糖和三糖在种子发育初期(5 月至 6 月)积累。对保守季节性代谢物变化模式的分析表明,代谢事件主要与植物发育阶段及其与环境的相互作用有关,而与环境条件本身的关系较小。

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