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- W130264265 abstract "The purpose of this chapter is to explore cross-system patterns in Dissolved Organic Matter (DOM), bioavailability with data obtained from in vitro bioassays. The key components in the cycling of organic matter in the biosphere: its production, transformation, and degradation. In aquatic ecosystems, heterotrophic bacteria participate in all three components and are primarily responsible for the bulk of degradation of organic matter. The biological availability of DOM to microbes is a key property that determines the turnover and eventual fate of this organic matter pool. DOM is composed of various pools, each characterized by its distinct chemical composition and by differences in its availability to microbes. The turnover of these pools varies widely, ranging from minutes to hundreds of years or even longer. There appears to be systematic differences in DOM lability among ecosystem types, once the results from bioassays are standardized for time and temperature. The patterns in consumption during bioassays appear to be very different in marine and lake samples compared to estuaries and freshwaters. The composition of marine DOM in terms of the proportion of highly reactive versus, less reactive, and recalcitrant pools appears to be distinct from other aquatic systems, a pattern that is most likely related to the origin of the DOM. Results suggest that the intrinsic DOM characteristics play an important role in regulating bacterial metabolism in aquatic ecosystems. The greatest challenge still is to accurately determine small changes within the relatively large background pool of dissolved organic carbon (DOC)." @default.
- W130264265 created "2016-06-24" @default.
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- W130264265 date "2003-01-01" @default.
- W130264265 modified "2023-10-11" @default.
- W130264265 title "Patterns in Dissolved Organic Matter Lability and Consumption across Aquatic Ecosystems" @default.
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- W130264265 doi "https://doi.org/10.1016/b978-012256371-3/50018-4" @default.
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