Literature DB >> 18027759

Nutrient enrichment reduces constraints on material flows in a detritus-based food web.

Wyatt F Cross1, J Bruce Wallace, Amy D Rosemond.   

Abstract

Most aquatic and terrestrial ecosystems are experiencing increased nutrient availability, which is affecting their structure and function. By altering community composition and productivity of consumers, enrichment can indirectly cause changes in the pathways and magnitude of material flows in food webs. These changes, in turn, have major consequences for material storage and cycling in the ecosystem. Understanding mechanisms and predicting consequences of nutrient-induced changes in material flows requires a quantitative food web approach that combines information on consumer energetics and consumer-resource stoichiometry. We examined effects of a whole-system experimental nutrient enrichment on the trophic basis of production and the magnitude and pathways of pan class="Chemical">carbon (C), n>an class="Chemical">nitrogen (N), and phosphorus (P) flows in a detritus-based stream food web. We compared the response of the treated stream to an adjacent reference stream throughout the study. Dietary composition and elemental flows varied considerably among invertebrate functional feeding groups. During nutrient enrichment, increased flows of leaf litter and amorphous detritus to shredders and gatherers accounted for most of the altered flows of C from basal resources to consumers. Nutrient enrichment had little effect on patterns of material flows but had large positive effects on the magnitude of C, N, and P flows to consumers (mean increase of 97% for all elements). Nutrient-specific food webs revealed similar flows of N and P to multiple functional groups despite an order of magnitude difference among groups in consumption of C. Secondary production was more strongly related to consumption of nutrients than C, and increased material flows were positively related to the degree of consumer-resource C:P and C:N imbalances. Nutrient enrichment resulted in an increased proportion of detrital C inputs consumed by primary consumers (from -15% to 35%) and a decreased proportion of invertebrate prey consumed by predators (from -80% to 55%). Our results demonstrate that nutrient enrichment of detritus-based systems may reduce stoichiometric constraints on material flows, increase the contribution of consumers to C, N, and P cycling, alter the proportion of C inputs metabolized by consumers, and potentially lead to reduced ecosystem-level storage of C.

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Year:  2007        PMID: 18027759     DOI: 10.1890/06-1348.1

Source DB:  PubMed          Journal:  Ecology        ISSN: 0012-9658            Impact factor:   5.499


  13 in total

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2.  Long-term nutrient enrichment decouples predator and prey production.

Authors:  John M Davis; Amy D Rosemond; Susan L Eggert; Wyatt F Cross; J Bruce Wallace
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4.  Changes in nutrient stoichiometry, elemental homeostasis and growth rate of aquatic litter-associated fungi in response to inorganic nutrient supply.

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5.  Quantitative food web analysis supports the energy-limitation hypothesis in cave stream ecosystems.

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6.  Additive effect of calcium depletion and low resource quality on Gammarus fossarum (Crustacea, Amphipoda) life history traits.

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7.  Growth and stoichiometry of a common aquatic detritivore respond to changes in resource stoichiometry.

Authors:  Chris L Fuller; Michelle A Evans-White; Sally A Entrekin
Journal:  Oecologia       Date:  2014-11-27       Impact factor: 3.225

8.  Dietary and taxonomic controls on incorporation of microbial carbon and phosphorus by detritivorous caddisflies.

Authors:  Halvor M Halvorson; Grant White; J Thad Scott; Michelle A Evans-White
Journal:  Oecologia       Date:  2016-02       Impact factor: 3.225

9.  Sexual cannibalism: high incidence in a natural population with benefits to females.

Authors:  Rubén Rabaneda-Bueno; Miguel A Rodríguez-Gironés; Sara Aguado-de-la-Paz; Carmen Fernández-Montraveta; Eva De Mas; David H Wise; Jordi Moya-Laraño
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Review 10.  Life-history evolution in the anthropocene: effects of increasing nutrients on traits and trade-offs.

Authors:  Emilie Snell-Rood; Rickey Cothran; Anne Espeset; Punidan Jeyasingh; Sarah Hobbie; Nathan I Morehouse
Journal:  Evol Appl       Date:  2015-06-13       Impact factor: 5.183

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