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Comparative metabolomic analyses of Holothuria cinerascens and Pseudocnella sykion

2026/01/26 by Cassandra Upton, Gerhard Prinsloo, Paul A. Steenkamp +1 · 1 voice
Agricultural and Biological Sciences · Biochemistry, Genetics and Molecular Biology · #Echinoderm biology and ecology #Seaweed-derived Bioactive Compounds #Marine Sponges and Natural Products

paper · doi:10.17159/sajs.2026/21964

openalex publication_date 2026/01/26 · openalex created_date 2026/01/27 · openalex updated_date 2026/06/11

Abstract

Sea cucumbers are soft-bodied marine invertebrates revered for their potent health benefits derived from biologically active molecules. However, research has primarily focused on commercially valuable species, such as Apostichopus japonicus, leading to their overexploitation as well as neglect of other species that may also contain valuable metabolites and nutritional value. This study presents the first untargeted metabolomic comparison of two southern African sea cucumber species, Holothuria cinerascens and Pseudocnella sykion, using proton nuclear magnetic resonance and ultra-performance liquid chromatography quadrupole time-of-flight high-resolution mass spectrometry. These species were selected due to their limited prior study and their overlapping habitats along the KwaZulu-Natal coastline. Despite their shared geographical locality, they exhibit distinct metabolic profiles. H. cinerascens displayed elevated levels of metabolites involved in osmoregulation (betaine), energy and amino acid metabolism (xylose, glucose, alanine, glutamate, glutamine, lysine and taurine) and defence metabolites, including the presence of several triterpene glycosides, whereas P.sykion notably contained rosmarinic acid and higher proline levels. These differences probably reflectgenetic, ecological and reproductive variations between the species. Even though it provides insightsinto sea cucumber metabolism, this study also underscores the challenges in holothurian metabolomics,including the scarcity of holothurian-specific annotations in metabolite databases and the absence of thesespecies in the Dictionary of Marine Natural Products. By establishing the baseline metabolic compositionsof these understudied species, this work provides a foundation for targeted metabolomics to elucidate theirmetabolic pathways, discover novel bioactive compounds, expand aquaculture practices, foster economicopportunities and advance sustainable resource management and conservation efforts.

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