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在不同提取条件下获得的树木提取物的代谢谱分析及抗菌活性

Metabolic profiling and antibacterial activity of tree wood extracts obtained under variable extraction conditions.

作者信息

Vinchira-Villarraga Diana, Dhaouadi Sabrine, Milenkovic Vanja, Wei Jiaqi, Grace Emily R, Hinton Katherine G, Webster Amy J, Vadillo-Dieguez Andrea, Powell Sophie E, Korotania Naina, Castellanos Leonardo, Ramos Freddy A, Harrison Richard J, Rabiey Mojgan, Jackson Robert W

机构信息

School of Biosciences and the Birmingham Institute of Forest Research, University of Birmingham, Birmingham, B15 2TT, UK.

Facultad de Ciencias, Departamento de Química, Universidad Nacional de Colombia - Sede Bogotá, Carrera 30# 45-03, Bogotá, D.C, 111321, Colombia.

出版信息

Metabolomics. 2024 Dec 27;21(1):13. doi: 10.1007/s11306-024-02215-x.

Abstract

INTRODUCTION

Tree bacterial diseases are a threat in forestry due to their increasing incidence and severity. Understanding tree defence mechanisms requires evaluating metabolic changes arising during infection. Metabolite extraction affects the chemical diversity of the samples and, therefore, the biological relevance of the data. Metabolite extraction has been standardized for several biological models. However, little information is available regarding how it influences wood extract's chemical diversity.

OBJECTIVES

This study aimed to develop a methodological approach to obtain extracts from different tree species with the highest reproducibility and chemical diversity possible, to ensure proper coverage of the trees' metabolome.

METHODS

A full factorial design was used to evaluate the effect of solvent type, extraction temperature and number of extraction cycles on the metabolic profile, chemical diversity and antibacterial activity of four tree species.

RESULTS

Solvent, temperature and their interaction significantly affected the extracts' chemical diversity, while the number of extraction cycles positively correlated with yield and antibacterial activity. Although 60% of the features were recovered in all the tested conditions, differences in the presence and abundance of specific chemical classes per tree were observed, including organooxygen compounds, prenol lipids, carboxylic acids, and flavonoids.

CONCLUSIONS

Each tree species has a unique metabolic profile, which means that no single protocol is universally effective. Extraction at 50 °C for three cycles using 80% methanol or chloroform/methanol/water showed the best results and is suggested for studying wood metabolome. These observations highlight the need to tailor extraction protocols to each tree species to ensure comprehensive metabolome coverage for metabolic profiling.

摘要

引言

树木细菌性疾病因其发病率和严重程度不断增加,对林业构成威胁。了解树木的防御机制需要评估感染过程中产生的代谢变化。代谢物提取会影响样品的化学多样性,进而影响数据的生物学相关性。代谢物提取已针对多种生物学模型进行了标准化。然而,关于其如何影响木材提取物的化学多样性的信息却很少。

目的

本研究旨在开发一种方法,以尽可能高的重现性和化学多样性从不同树种中获取提取物,以确保对树木代谢组的适当覆盖。

方法

采用全因子设计来评估溶剂类型、提取温度和提取循环次数对四种树种的代谢谱、化学多样性和抗菌活性的影响。

结果

溶剂、温度及其相互作用显著影响提取物的化学多样性,而提取循环次数与产量和抗菌活性呈正相关。尽管在所有测试条件下60%的特征峰都能被检测到,但观察到每种树的特定化学类别在存在和丰度上存在差异,包括有机氧化合物、异戊二烯脂质、羧酸和黄酮类化合物。

结论

每个树种都有独特的代谢谱,这意味着没有单一的方案是普遍有效的。使用80%甲醇或氯仿/甲醇/水在50℃下提取三个循环显示出最佳结果,建议用于研究木材代谢组。这些观察结果强调需要针对每个树种定制提取方案,以确保代谢谱分析能够全面覆盖代谢组。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/04e5/11680671/981936e5924b/11306_2024_2215_Fig1_HTML.jpg

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