We modified the stable isotope mixing model MixSIR to infer primary producer contributions to consumer diets based on their fatty acid composition. To parameterize the algorithm, we generated a ‘consumer-resource library’ of FA signatures of Daphnia fed different algal diets, using 34 feeding trials representing diverse phytoplankton lineages. This library corresponds to the resource or producer file in classic Bayesian mixing models such as MixSIR or SIAR. Because this library is based on the FA profiles of zooplankton consuming known diets, and not the FA profiles of algae directly, trophic modification of consumer lipids is directly accounted for. To test the model, we simulated hypothetical Daphnia comprised of 80% diatoms, 10% green al...
Stable isotope mixing models in aquatic ecology require delta C-13 values for food web end members s...
1.Fatty acid–specific stable isotope analysis (FA-SIA) is expected to encompass most of the limits ...
1. Organisms at the base of aquatic food webs synthesize essential nutrients, such as omega-3 polyun...
We modified the stable isotope mixing model MixSIR to infer primary producer contributions to consum...
We modified the stable isotope mixing model MixSIR to infer primary producer contributions to consum...
The study of the trophic relationships of aquatic animals requires correct estimates of their diets....
Trophic interactions have been a popular research subject among ecologists for decades because unde...
Estimations of the trophic position (TP) and the food web nitrogen baseline from compound-specific i...
Compound-specific isotope analyses (CSIA) of fatty acids (FA) constitute a promising tool for tracin...
Estimations of the trophic position (TP) and the food web nitrogen baseline from compound-specific i...
Abstract. The taxon specificity of fatty acid composition in algal classes suggests that fatty acids...
Stable isotope mixing models in aquatic ecology require δ13C values for food web end members such a...
Thesis (Ph.D.)--University of Washington, 2013Benthic heterotrophs living in aphotic aquatic habitat...
Stable isotope mixing models in aquatic ecology require δ13C values for food web end members such as...
Stable isotope mixing models in aquatic ecology require delta C-13 values for food web end members s...
1.Fatty acid–specific stable isotope analysis (FA-SIA) is expected to encompass most of the limits ...
1. Organisms at the base of aquatic food webs synthesize essential nutrients, such as omega-3 polyun...
We modified the stable isotope mixing model MixSIR to infer primary producer contributions to consum...
We modified the stable isotope mixing model MixSIR to infer primary producer contributions to consum...
The study of the trophic relationships of aquatic animals requires correct estimates of their diets....
Trophic interactions have been a popular research subject among ecologists for decades because unde...
Estimations of the trophic position (TP) and the food web nitrogen baseline from compound-specific i...
Compound-specific isotope analyses (CSIA) of fatty acids (FA) constitute a promising tool for tracin...
Estimations of the trophic position (TP) and the food web nitrogen baseline from compound-specific i...
Abstract. The taxon specificity of fatty acid composition in algal classes suggests that fatty acids...
Stable isotope mixing models in aquatic ecology require δ13C values for food web end members such a...
Thesis (Ph.D.)--University of Washington, 2013Benthic heterotrophs living in aphotic aquatic habitat...
Stable isotope mixing models in aquatic ecology require δ13C values for food web end members such as...
Stable isotope mixing models in aquatic ecology require delta C-13 values for food web end members s...
1.Fatty acid–specific stable isotope analysis (FA-SIA) is expected to encompass most of the limits ...
1. Organisms at the base of aquatic food webs synthesize essential nutrients, such as omega-3 polyun...