4.7 Article

New Phenolic Compounds in Posidonia oceanica Seagrass: A Comprehensive Array Using High Resolution Mass Spectrometry

Journal

PLANTS-BASEL
Volume 10, Issue 5, Pages -

Publisher

MDPI
DOI: 10.3390/plants10050864

Keywords

Posidonia oceanica; leaf; rhizome; root; UHPLC-Orbitrap MS; phenolic compounds

Categories

Funding

  1. University of Almeria

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This study focused on the phenolic composition of Posidonia oceanica Delile, examining different tissues including leaves, rhizomes, and roots. Using high resolution mass spectrometry, 42 phenolic compounds were detected in P. oceanica, with 24 compounds not previously reported. The findings can be used for evaluating stressor-specific biomarkers in Mediterranean waters and provide a reference protocol for future studies on marine seagrasses.
The studies on the Posidonia oceanica Delile (P. oceanica) phenolic composition have been focused on the foliar tissues and have often neglected the phenolic compounds in rhizomes or roots alike. With the current improvements in high resolution mass spectrometry (HRMS) analyzers, such as the Orbitrap MS, there is a new opportunity to more deeply study P. oceanica. One of the benefits is the possibility of conducting an exhaustive phenolic monitoring, which is crucial in the search for new stressor-specific biomarkers of coastal deterioration. For this purpose, the different tissues (leaf, rhizome, and root) of P. oceanica seagrass from several marine sampling areas were analyzed through target, suspected, and non-target screenings. This paper brings a fast and tissues-specific extraction, as well as a detection method of phenolic compounds applying for the first time the potential of HRMS (Exactive Orbitrap) in P. oceanica samples. As a result, 42 phenolic compounds were satisfactorily detected, of which, to our knowledge, 24 were not previously reported in P. oceanica, such as naringenin, naringenin chalcone and pinocembrin, among others. Information here reported could be used for the evaluation of new stressor-specific biomarkers of coastal deterioration in the Mediterranean waters. Furthermore, the followed extraction and analytical method could be considered as a reference protocol in other studies on marine seagrasses due to the exhaustive search and satisfactory results.

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