Fatty acid composition at the base of aquatic food webs is influenced by habitat type and watershed land use.

Spatial variation in food resources strongly influences many aspects of aquatic consumer ecology. Although large-scale controls over spatial variation in many aspects of food resources are well known, others have received little study. Here we investigated variation in the fatty acid (FA) compositio...

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Main Authors: James H Larson, William B Richardson, Brent C Knights, Lynn A Bartsch, Michelle R Bartsch, John C Nelson, Jason A Veldboom, Jon M Vallazza
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2013-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3734252?pdf=render
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author James H Larson
William B Richardson
Brent C Knights
Lynn A Bartsch
Michelle R Bartsch
John C Nelson
Jason A Veldboom
Jon M Vallazza
author_facet James H Larson
William B Richardson
Brent C Knights
Lynn A Bartsch
Michelle R Bartsch
John C Nelson
Jason A Veldboom
Jon M Vallazza
author_sort James H Larson
collection DOAJ
description Spatial variation in food resources strongly influences many aspects of aquatic consumer ecology. Although large-scale controls over spatial variation in many aspects of food resources are well known, others have received little study. Here we investigated variation in the fatty acid (FA) composition of seston and primary consumers within (i.e., among habitats) and among tributary systems of Lake Michigan, USA. FA composition of food is important because all metazoans require certain FAs for proper growth and development that cannot be produced de novo, including many polyunsaturated fatty acids (PUFAs). Here we sampled three habitat types (river, rivermouth and nearshore zone) in 11 tributaries of Lake Michigan to assess the amount of FA in seston and primary consumers of seston. We hypothesize that among-system and among-habitat variation in FAs at the base of food webs would be related to algal production, which in turn is influenced by three land cover characteristics: 1) combined agriculture and urban lands (an indication of anthropogenic nutrient inputs that fuel algal production), 2) the proportion of surface waters (an indication of water residence times that allow algal producers to accumulate) and 3) the extent of riparian forested buffers (an indication of stream shading that reduces algal production). Of these three land cover characteristics, only intense land use appeared to strongly related to seston and consumer FA and this effect was only strong in rivermouth and nearshore lake sites. River seston and consumer FA composition was highly variable, but that variation does not appear to be driven by the watershed land cover characteristics investigated here. Whether the spatial variation in FA content at the base of these food webs significantly influences the production of economically important species higher in the food web should be a focus of future research.
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spelling doaj.art-f95b05ff86bb4e74b4065299a36a7c7d2022-12-22T00:20:49ZengPublic Library of Science (PLoS)PLoS ONE1932-62032013-01-0188e7066610.1371/journal.pone.0070666Fatty acid composition at the base of aquatic food webs is influenced by habitat type and watershed land use.James H LarsonWilliam B RichardsonBrent C KnightsLynn A BartschMichelle R BartschJohn C NelsonJason A VeldboomJon M VallazzaSpatial variation in food resources strongly influences many aspects of aquatic consumer ecology. Although large-scale controls over spatial variation in many aspects of food resources are well known, others have received little study. Here we investigated variation in the fatty acid (FA) composition of seston and primary consumers within (i.e., among habitats) and among tributary systems of Lake Michigan, USA. FA composition of food is important because all metazoans require certain FAs for proper growth and development that cannot be produced de novo, including many polyunsaturated fatty acids (PUFAs). Here we sampled three habitat types (river, rivermouth and nearshore zone) in 11 tributaries of Lake Michigan to assess the amount of FA in seston and primary consumers of seston. We hypothesize that among-system and among-habitat variation in FAs at the base of food webs would be related to algal production, which in turn is influenced by three land cover characteristics: 1) combined agriculture and urban lands (an indication of anthropogenic nutrient inputs that fuel algal production), 2) the proportion of surface waters (an indication of water residence times that allow algal producers to accumulate) and 3) the extent of riparian forested buffers (an indication of stream shading that reduces algal production). Of these three land cover characteristics, only intense land use appeared to strongly related to seston and consumer FA and this effect was only strong in rivermouth and nearshore lake sites. River seston and consumer FA composition was highly variable, but that variation does not appear to be driven by the watershed land cover characteristics investigated here. Whether the spatial variation in FA content at the base of these food webs significantly influences the production of economically important species higher in the food web should be a focus of future research.http://europepmc.org/articles/PMC3734252?pdf=render
spellingShingle James H Larson
William B Richardson
Brent C Knights
Lynn A Bartsch
Michelle R Bartsch
John C Nelson
Jason A Veldboom
Jon M Vallazza
Fatty acid composition at the base of aquatic food webs is influenced by habitat type and watershed land use.
PLoS ONE
title Fatty acid composition at the base of aquatic food webs is influenced by habitat type and watershed land use.
title_full Fatty acid composition at the base of aquatic food webs is influenced by habitat type and watershed land use.
title_fullStr Fatty acid composition at the base of aquatic food webs is influenced by habitat type and watershed land use.
title_full_unstemmed Fatty acid composition at the base of aquatic food webs is influenced by habitat type and watershed land use.
title_short Fatty acid composition at the base of aquatic food webs is influenced by habitat type and watershed land use.
title_sort fatty acid composition at the base of aquatic food webs is influenced by habitat type and watershed land use
url http://europepmc.org/articles/PMC3734252?pdf=render
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