Surface sediments from 68 small lakes in the Alps and 9 well-dated sediment core samples that cover a gradient of total phosphorus (TP) concentrations of 6 to 520 mu g TP l(-1) were studied for diatom, chrysophyte cyst, cladocera, and chironomid assemblages. Inference models for mean circulation log(10) TP were developed for diatoms, chironomids, and benthic cladocera using weighted-averaging partial least squares. After screening for outliers, the final transfer functions have coefficients of determination (r(2)), as assessed by cross-validation, of 0.79 (diatoms), 0.68 (chironomids), and 0.49 (benthic cladocera). Planktonic cladocera and chrysophytes show very weak relationships to TP and no TP inference models were developed for these biota. Diatoms showed the best relationship with TP, whereas the other biota all have large secondary gradients, suggesting that variables other than TP have a strong influence on their composition and abundance. Comparison with other diatom - TP inference models shows that our model has high predictive power and a low root mean squared error of prediction, as assessed by cross-validation.

Modern diatom, cladocera, chironomid, and chrysophyte cyst assemblages as quantitative indicators for the reconstruction of past environmental conditions in the Alps. II. Nutrients

Marchetto A
1998

Abstract

Surface sediments from 68 small lakes in the Alps and 9 well-dated sediment core samples that cover a gradient of total phosphorus (TP) concentrations of 6 to 520 mu g TP l(-1) were studied for diatom, chrysophyte cyst, cladocera, and chironomid assemblages. Inference models for mean circulation log(10) TP were developed for diatoms, chironomids, and benthic cladocera using weighted-averaging partial least squares. After screening for outliers, the final transfer functions have coefficients of determination (r(2)), as assessed by cross-validation, of 0.79 (diatoms), 0.68 (chironomids), and 0.49 (benthic cladocera). Planktonic cladocera and chrysophytes show very weak relationships to TP and no TP inference models were developed for these biota. Diatoms showed the best relationship with TP, whereas the other biota all have large secondary gradients, suggesting that variables other than TP have a strong influence on their composition and abundance. Comparison with other diatom - TP inference models shows that our model has high predictive power and a low root mean squared error of prediction, as assessed by cross-validation.
1998
Istituto di Ricerca Sulle Acque - IRSA
transfer functions
WA-PLS
total phosphorus
trophic state
eutrophication
surface sediments
Switzerland
diatoms
cladocera
chironomids
chrysophytes
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/436280
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