Molecular Networking Leveraging the Secondary Metabolomes Space of Halophila stipulaceae (Forsk.) Aschers. and Thalassia hemprichii (Ehrenb. ex Solms) Asch. in Tandem with Their Chemosystematics and Antidiabetic Potentials
Date
2021-05
Journal Title
Journal ISSN
Volume Title
Type
Article
Publisher
MDPI
Series Info
Marine Drugs;19(5):279
Scientific Journal Rankings
Abstract
The Red Sea is one of the most biodiverse aquatic ecosystems. Notably, seagrasses possess
a crucial ecological significance. Among them are the two taxa Halophila stipulacea (Forsk.) Aschers.,
and Thalassia hemprichii (Ehrenb. ex Solms) Asch., which were formally ranked together with the
genus Enhalus in three separate families. Nevertheless, they have been recently classified as three
subfamilies within Hydrocharitaceae. The interest of this study is to explore their metabolic profiles
through ultra-high-performance liquid chromatography-high-resolution mass spectrometry (UPLC-
HRMS/MS) analysis in synergism with molecular networking and to assess their chemosystematics
relationship. A total of 144 metabolites were annotated, encompassing phenolic acids, flavonoids,
terpenoids, and lipids. Furthermore, three new phenolic acids; methoxy benzoic acid-O-sulphate
(16), O-caffeoyl-O-hydroxyl dimethoxy benzoyl tartaric acid (26), dimethoxy benzoic acid-O-sulphate
(30), a new flavanone glycoside; hexahydroxy-monomethoxy flavanone-O-glucoside (28), and a
new steviol glycoside; rebaudioside-O-acetate (96) were tentatively described. Additionally, the
evaluation of the antidiabetic potential of both taxa displayed an inherited higher activity of H.
stipulaceae in alleviating the oxidative stress and dyslipidemia associated with diabetes. Hence, the
current research significantly suggested Halophila, Thalassia, and Enhalus categorization in three
different taxonomic ranks based on their intergeneric and interspecific relationship among them and
supported the consideration of seagrasses in natural antidiabetic studies.
Description
Keywords
seagrasses, Halophila stipulacea, Thalassia hemprichii, Hydrocharitaceae, molecular net- working, antidiabetic, chemosystematics