Nutrient Enrichment Alters Salt Marsh Fungal Communities and Promotes Putative Fungal Denitrifiers
Autor: | Patrick J. Kearns, John H. Angell, Helen Hoyt, Ashley N. Bulseco-McKim, Jennifer L. Bowen |
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Rok vydání: | 2018 |
Předmět: |
0301 basic medicine
Geologic Sediments Marsh 030106 microbiology Soil Science Biology 03 medical and health sciences Nutrient Microbial ecology Low marsh Organic matter Ecosystem Ecology Evolution Behavior and Systematics chemistry.chemical_classification geography Nitrates geography.geographical_feature_category Ecology Fungi Nutrients Carbon Macrophyte 030104 developmental biology chemistry Salt marsh Denitrification |
Zdroj: | Microbial Ecology. 77:358-369 |
ISSN: | 1432-184X 0095-3628 |
DOI: | 10.1007/s00248-018-1223-z |
Popis: | Enrichment of ecosystems with excess nutrients is occurring at an alarming rate and has fundamentally altered ecosystems worldwide. Salt marshes, which lie at the land-sea interface, are highly effective at removing anthropogenic nutrients through the action of macrophytes and through microbial processes in coastal sediments. The response of salt marsh bacteria to excess nitrogen has been documented; however, the role of fungi and their response to excess nitrogen in salt marsh sediments is not fully understood. Here, we document the response of salt marsh fungal communities to long-term excess nitrate in four distinct marsh habitats within a northern temperate marsh complex. We show that salt marsh fungal communities varied as a function of salt marsh habitat, with both fungal abundance and diversity increasing with carbon quantity. Nutrient enrichment altered fungal communities in all habitats through an increase in fungal abundance and the proliferation of putative fungal denitrifiers. Nutrient enrichment also altered marsh carbon quality in low marsh surface sediments where fungal response to nutrient enrichment was most dramatic, suggesting nutrient enrichment can alter organic matter quality in coastal sediments. Our results indicate that fungi, in addition to bacteria, likely play an important role in anaerobic decomposition of salt marsh sediment organic matter. |
Databáze: | OpenAIRE |
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