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February 19, 2026Environmental Science & Technology6 citationsOpen Access

Dissolved Organic Matter in the Coastal Ocean Is Structurally More Diverse Than in Terrestrial Systems, as Shown in an Amazonian Mangrove Estuary

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NMNico MitschkeTDThorsten DittmarMSMichael Seidel

Key Points

  • To investigate the structural diversity and molecular transformations of dissolved organic matter (DOM) in coastal versus terrestrial systems.
  • Applied one- and two-dimensional <sup>1</sup>H nuclear magnetic resonance (NMR) spectroscopy
  • Used ultrahigh-resolution mass spectrometry (FT-ICR-MS)
  • Analyzed DOM samples along a river-to-ocean transect in an Amazonian mangrove estuary
  • Decreased relative abundances of aromatic compounds from river to coastal ocean
  • Increased levels of aliphatic compounds in coastal marine DOM
  • Identified polycyclic aromatic sulfur-containing compounds mainly from urban areas
  • Greater structural diversity of coastal marine DOM compared to terrestrial DOM despite fewer molecular formulas

Abstract

Dissolved organic matter (DOM) cycling across the land-ocean continuum is highly complex, and our limited understanding of DOM molecular transformations hinders a full assessment of land-ocean connectivity in the global carbon cycle. Here, we applied one- and two-dimensional high-field 1H nuclear magnetic resonance (NMR) spectroscopy and ultrahigh-resolution mass spectrometry (FT-ICR-MS) to investigate sources and transformations of solid-phase extractable DOM along an Amazonian mangrove-fringed river-to-ocean transect. Relative abundances of aromatic compounds decreased from the river to the coastal ocean, whereas aliphatic compounds increased. NMR spectroscopic features, commonly associated with carbohydrates, are probably related to flavonoid- and lignin-derived structural motifs. These structural features were more readily detected by 1H NMR spectroscopy, whereas aromatics were more effectively detected by FT-ICR-MS. We tentatively identified polycyclic aromatic sulfur-containing compounds as being predominantly derived from urban areas, whereas sulfurized aliphatic compounds originated from sulfidic mangrove sediments. Surprisingly, while the number of DOM molecular formulas decreased along the river-to-coastal continuum, coastal marine DOM exhibited greater structural diversity than terrigenous DOM. Here, we showed that the interplay of distinct molecular pathways, particularly (photo)oxidation processes and sulfur incorporation, structurally diversifies DOM in coastal marine environments.

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Cite This Study

Mitschke et al. (2026) studied this question.

synapsesocial.com/papers/6996a77aecb39a600b3ed2abhttps://doi.org/10.1021/acs.est.5c10721
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