Influence of 4-nonylphenol on the structure of nematode communities in freshwater microcosms

Hoss S, Traunspurger W, Severin GE, Juttner I, Pfister G, Schramm KW (2004)
ENVIRONMENTAL TOXICOLOGY AND CHEMISTRY 23(5): 1268-1275.

Zeitschriftenaufsatz | Veröffentlicht | Englisch
 
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Autor*in
Hoss, S; Traunspurger, WalterUniBi; Severin, GE; Juttner, I; Pfister, G; Schramm, KW
Abstract / Bemerkung
We investigated the effect of 4-nonylphenol (NP) on nematode communities in the sediment of freshwater microcosms. Seven treatments were dosed with various concentrations of NP over a period of six weeks by using a controlled-release method (NP1-NP7; maximum sediment concentrations: 0.29-3.37 mg/kg dry wt). Four microcosms were not exposed to NP and served as controls. Nematode communities were analyzed over a period of 15 weeks, including sampling dates before, within, and after the NP application. Communities were characterized in terms of total nematode abundance and species diversity (Shannon index and evenness), as well as composition of species, feeding types, and different life-history strategists (maturity index [MI]). Species composition was analyzed by using a multivariate method (principal response curves). Total nematode abundance and species diversity were not affected in any of the NP-treated microcosms. However, in the highest dosed treatment, NP-induced changes in the nematode communities occurred. Species and feeding types composition, as well as the MI, were affected in the postapplication period, with species composition being altered most clearly. In the highest dosed treatment, deposit-feeding species, classified as colonizers (Eumonhystera), increased in dominance, whereas epistrate feeders and chewers (Prodesmodora and Tobrilus) decreased in relative abundance compared to the control.
Stichworte
nematode communities; microcosms; nonylphenol; species composition; feeding types
Erscheinungsjahr
2004
Zeitschriftentitel
ENVIRONMENTAL TOXICOLOGY AND CHEMISTRY
Band
23
Ausgabe
5
Seite(n)
1268-1275
ISSN
0730-7268
eISSN
1552-8618
Page URI
https://pub.uni-bielefeld.de/record/1607887

Zitieren

Hoss S, Traunspurger W, Severin GE, Juttner I, Pfister G, Schramm KW. Influence of 4-nonylphenol on the structure of nematode communities in freshwater microcosms. ENVIRONMENTAL TOXICOLOGY AND CHEMISTRY. 2004;23(5):1268-1275.
Hoss, S., Traunspurger, W., Severin, G. E., Juttner, I., Pfister, G., & Schramm, K. W. (2004). Influence of 4-nonylphenol on the structure of nematode communities in freshwater microcosms. ENVIRONMENTAL TOXICOLOGY AND CHEMISTRY, 23(5), 1268-1275. https://doi.org/10.1897/03-226
Hoss, S, Traunspurger, Walter, Severin, GE, Juttner, I, Pfister, G, and Schramm, KW. 2004. “Influence of 4-nonylphenol on the structure of nematode communities in freshwater microcosms”. ENVIRONMENTAL TOXICOLOGY AND CHEMISTRY 23 (5): 1268-1275.
Hoss, S., Traunspurger, W., Severin, G. E., Juttner, I., Pfister, G., and Schramm, K. W. (2004). Influence of 4-nonylphenol on the structure of nematode communities in freshwater microcosms. ENVIRONMENTAL TOXICOLOGY AND CHEMISTRY 23, 1268-1275.
Hoss, S., et al., 2004. Influence of 4-nonylphenol on the structure of nematode communities in freshwater microcosms. ENVIRONMENTAL TOXICOLOGY AND CHEMISTRY, 23(5), p 1268-1275.
S. Hoss, et al., “Influence of 4-nonylphenol on the structure of nematode communities in freshwater microcosms”, ENVIRONMENTAL TOXICOLOGY AND CHEMISTRY, vol. 23, 2004, pp. 1268-1275.
Hoss, S., Traunspurger, W., Severin, G.E., Juttner, I., Pfister, G., Schramm, K.W.: Influence of 4-nonylphenol on the structure of nematode communities in freshwater microcosms. ENVIRONMENTAL TOXICOLOGY AND CHEMISTRY. 23, 1268-1275 (2004).
Hoss, S, Traunspurger, Walter, Severin, GE, Juttner, I, Pfister, G, and Schramm, KW. “Influence of 4-nonylphenol on the structure of nematode communities in freshwater microcosms”. ENVIRONMENTAL TOXICOLOGY AND CHEMISTRY 23.5 (2004): 1268-1275.

15 Zitationen in Europe PMC

Daten bereitgestellt von Europe PubMed Central.

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Nonylphenol induces pancreatic damage in rats through mitochondrial dysfunction and oxidative stress.
Li X, Zhou L, Ni Y, Wang A, Hu M, Lin Y, Hong C, Wan J, Chen B, Fang L, Tong J, Tong X, Tao S, Tian H., Toxicol Res (Camb) 6(3), 2017
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The functional response of a freshwater benthic community to cadmium pollution.
Faupel M, Ristau K, Traunspurger W., Environ Pollut 162(), 2012
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Using meiofauna to assess pollutants in freshwater sediments: a microcosm study with cadmium.
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García-Alonso J, Ayoola JA, Crompton J, Rebscher N, Hardege JD., Comp Biochem Physiol C Toxicol Pharmacol 154(3), 2011
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Höss S, Weltje L., Ecotoxicology 16(1), 2007
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Huang GL, Hou SG, Wang L, Sun HW., Water Res 41(20), 2007
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