Nutrient limitation masks the dissolved organic matter composition effects on bacterial metabolism in unproductive freshwaters

Author:

Berggren Martin1ORCID,Ye Linlin12,Sponseller Ryan A.3,Bergström Ann‐Kristin3ORCID,Karlsson Jan3ORCID,Verheijen Hendricus3ORCID,Hensgens Geert4ORCID

Affiliation:

1. Department of Physical Geography and Ecosystem Science Lund University Lund Sweden

2. School of Geographic Sciences Nantong University Nantong China

3. Climate Impacts Research Centre (CIRC), Department of Ecology and Environmental Science Umeå University Umeå Sweden

4. Department of Earth Sciences Vrije Universiteit Amsterdam The Netherlands

Abstract

AbstractAquatic microbial responses to changes in the amount and composition of dissolved organic carbon (DOC) are of fundamental ecological and biogeochemical importance. Parallel factor (PARAFAC) analysis of excitation–emission fluorescence spectra is a common tool to characterize DOC, yet its ability to predict bacterial production (BP), bacterial respiration (BR), and bacterial growth efficiency (BGE) vary widely, potentially because inorganic nutrient limitation decouples microbial processes from their dependence on DOC composition. We used 28‐d bioassays with water from 19 lakes, streams, and rivers in northern Sweden to test how much the links between bacterial metabolism and fluorescence PARAFAC components depend on experimental additions of inorganic nutrients. We found a significant interaction effect between nutrient addition and fluorescence on carbon‐specific BP, and weak evidence for influence on BGE by the same interaction (p = 0.1), but no corresponding interaction effect on BR. A practical implication of this interaction was that fluorescence components could explain more than twice as much of the variability in carbon‐specific BP (R2 = 0.90) and BGE (R2 = 0.70) after nitrogen and phosphorus addition, compared with control incubations. Our results suggest that an increased supply of labile DOC relative to ambient phosphorus and nitrogen induces gradually larger degrees of nutrient limitation of BP, which in turn decouple BP and BGE from fluorescence signals. Thus, while fluorescence does contain precise information about the degree to which DOC can support microbial processes, this information may be hidden in field studies due to nutrient limitation of bacterial metabolism.

Funder

Knut och Alice Wallenbergs Stiftelse

Svenska Forskningsrådet Formas

Vetenskapsrådet

Publisher

Wiley

Subject

Aquatic Science,Oceanography

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