Deciphering Microbially Driven Labile and Refractory Molecular Markers in Dissolved Organic Matter
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Microbial activities drive the cycling of dissolved organic matter (DOM) from labile to refractory states, thus contributing to the long-term carbon sequestration in the ocean. However, due to the intricate molecular composition of DOM, identifying indicators of microbially related DOM remain challenge. In this study, we propose molecular candidates for bio-labile (n = 537) and bio-refractory (n = 1025) formulas, which were discerned through incubation experiments using ultrahigh-resolution mass spectrometry. Bio-labile formulas exhibited greater hydrogenation, whereas bio-refractory formulas comprised oxidized, unsaturated and aromatic molecules with higher molecular weight. The application of these biological markers facilitated the tracing of molecular distribution and transformation pattens across large-scale aquatic environmental gradients. This molecular identification framework offers insights into resolving microbially mediated molecules and advancing our understanding of biologically related DOM at the molecular level.
创建时间:
2024-03-18



