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褐藻中细胞内和细胞壁结合的褐藻多酚组分的组成表明这些代谢产物的特定功能取决于化学结构。

Composition of Intracellular and Cell Wall-Bound Phlorotannin Fractions in Fucoid Algae Indicates Specific Functions of These Metabolites Dependent on the Chemical Structure.

作者信息

Birkemeyer Claudia, Lemesheva Valeriya, Billig Susan, Tarakhovskaya Elena

机构信息

Faculty of Chemistry and Mineralogy, University of Leipzig, 04103 Leipzig, Germany.

Department of Plant Physiology and Biochemistry, Faculty of Biology, St. Petersburg State University, 199034 St. Petersburg, Russia.

出版信息

Metabolites. 2020 Sep 11;10(9):369. doi: 10.3390/metabo10090369.

Abstract

Accumulation of biologically active metabolites is a specific feature of plant biochemistry, directing the use of plants in numerous applications in the pharmaceutical and food industries. Among these substances, the plethora of phenolic compounds has attracted particular interest among researchers. Here, we report on new findings in phlorotannin research, a large group of multifunctional phenolic substances, produced in brown algae. Comprehensive LC-MS profiling of three algal species allowed us to depict the complex pattern of this structurally diverse compound group across different tissues and subcellular compartments. We compiled more than 30 different phlorotannin series in one sample and used accurate mass spectrometry to assign tentative structures to the observed ions based on the confirmed sum formulas. From that, we found that acetylation, hydroxylation, and oxidation are likely to be the most common in vivo modifications to phlorotannins. Using an alternative data mining strategy to cope with extensive coelution and structural isomers, we quantitatively compared the intensity of different phlorotannin series in species, tissues, and subcellular compartments to learn more about their physiological functions. The structure and intra-thallus profiles of cell wall-bound phlorotannins were studied here for the first time. We suggest that one of the major dibenzodioxin-type phlorotannin series may exclusively target integration into the cell wall of fucoid algae.

摘要

生物活性代谢物的积累是植物生物化学的一个特定特征,这使得植物在制药和食品工业的众多应用中得到利用。在这些物质中,大量的酚类化合物引起了研究人员的特别关注。在此,我们报告了对褐藻中产生的一大类多功能酚类物质——间苯三酚单宁研究的新发现。对三种藻类进行全面的液相色谱 - 质谱分析,使我们能够描绘出这个结构多样的化合物组在不同组织和亚细胞区室中的复杂模式。我们在一个样本中汇编了30多种不同的间苯三酚单宁系列,并使用精确质谱法根据已确认的分子式为观察到的离子确定初步结构。由此,我们发现乙酰化、羟基化和氧化可能是间苯三酚单宁在体内最常见的修饰方式。我们采用一种替代数据挖掘策略来处理广泛的共洗脱和结构异构体问题,定量比较了不同间苯三酚单宁系列在物种、组织和亚细胞区室中的强度,以更多地了解它们的生理功能。本文首次研究了细胞壁结合的间苯三酚单宁的结构和藻体内分布情况。我们认为,一种主要的二苯并二恶英型间苯三酚单宁系列可能专门用于整合到岩藻状藻类的细胞壁中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a788/7570113/927b92378882/metabolites-10-00369-g001.jpg

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