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Understanding Dissolved Organic Matter Biogeochemistry Through In Situ Nutrient Manipulations in Stream Ecosystems
Published on: October 29, 2016
Habitat Affinity of Riverine Dissolved Organic Matter Linked to Molecular Traits
Yifan Cui1, Ang Hu1, James C Stegen2,3
1State Key Laboratory of Lake and Watershed Science for Water Security, Nanjing Institute of Geography and Limnology, Chinese Academy of Sciences, Nanjing, China.
Abstract:
Fluxes of organic matter across Earth habitats shape ecosystem function and carbon storage. Yet, it is challenging to predict how the molecules are preferentially accumulated in specific habitats, that is, the habitat affinities, due to their diverse characteristics. Here, we develop an indicator of compositional-level habitat affinity for dissolved organic matter (DOM) by quantifying the aggregated affinities of individual molecules that are over- or under-represented relative to a reference habitat. Applying this indicator to 93 paired riverine water-sediment sites, we find that 65.1% of molecules show non-significant habitat affinities for water or sediment and are thermodynamically favorable and susceptible to microbial degradation. Consistently, the habitat affinities of DOM assemblages decrease with lower molecular weights and recalcitrance for waters, and with higher thermodynamic favorability for sediments. These affinities are both reduced by elevated temperatures and anthropogenic pressures, such as nitrogen loading and land-use change. Our projection of habitat affinities of global riverine DOM shows that regions with intense anthropogenic disturbances or warm climates, such as East Asia, Western Europe, and the Amazon, tend to exhibit lower affinities. These findings suggest enhanced molecular homogenization between water and sediment habitats is associated with environmental changes and underscore the importance of habitat affinities for predicting the potential trajectories of organic carbon across ecosystems.
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Classifying Matter by Composition
According to its composition, the matter can be classified into two broad categories — pure substances and mixtures.
A pure substance is a form of matter that has a constant composition throughout with uniform properties. For example, any sample of sucrose has the same composition and same physical properties, such as melting point, color, and sweetness, regardless of the source from which it is isolated.
A mixture is composed of two or...

