Literature DB >> 12374047

The role of DDE, PCB, coplanar PCB and eggshell parameters for reproduction in the white-tailed sea eagle (Haliaeetus albicilla) in Sweden.

Björn Helander1, Anders Olsson, Anders Bignert, Lillemor Asplund, Kerstin Litzén.   

Abstract

The reproduction of white-tailed sea eagles was monitored in 1964-1999 in 3 differently contaminated sub-populations: Baltic Sea coast (Bp), inland central Sweden (Ip) and Lapland (Lp). 249 dead eggs from 205 clutches were obtained for analyses of DDE and PCBs and for eggshell measurements. A desiccation index (Di) value was calculated for each egg as a measure of water loss through the shell. In the highly contaminated Bp, p,p'-DDE concentrations in the eggs decreased continuously and 5-fold during the study period and PCB concentrations decreased 3-fold from the mid 1980s. The PCB pattern changed slightly over time towards more high-chlorinated congeners but the relative toxicity of the PCB mixture, expressed as 2,3,7,8-tetrachlorodibenzo-p-dioxin equivalents (TEQ), remained constant and TEQ can be assumed to have decreased in a similar way as PCB over time. Productivity (P), shell thickness (St), shell index (Si) and Di increased over time in the Bp but no change in Di or productivity occurred in the Lp, where residue concentrations were 5-8 times lower. P of the Bp was not correlated to St or Si but was negatively correlated to Di, DDE and PCB. An S-shaped dose-response relationship was indicated between P and DDE. After 1988, when the PCB/DDE ratio was considerably higher than previously, PCB but not DDE concentrations were significantly higher in eggs with dead embryos as compared to undeveloped eggs, implying lethal concentrations of PCB, and a LOEL of 320 pg g-1 TEQ is suggested for embryo mortality. In a subset of 21 eggs, representing productive and unproductive females, analyzed for a selection of coplanar PCB congeners, tris(4-chlorophenyl) methanol and bis(4-chlorophenyl) sulphone, there was no evidence for a correlation between P and any of these compounds. A reduction in residue concentrations in old females did not lead to increased P or improved Di-values, indicating a remaining effect from a previous, higher exposure to contaminants. The inability to reproduce included a high rate of undeveloped eggs, indicating effects at a prezygotic stage. P showed the strongest correlation with Di, and Di was most strongly correlated to DDE. Thus, the remaining effect of previous exposure resulted in a stronger correlation to the symptom (Di) rather than to the suggested causative agent (DDE). LOEL values for depressed P were estimated at 120 micrograms g-1 DDE and 500 micrograms g-1 PCB (lipid basis). It is concluded that the major reason for depressed P during the study period was DDE, but that effects also from PCB were largely concealed by the effects from DDE.

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Year:  2002        PMID: 12374047     DOI: 10.1579/0044-7447-31.5.386

Source DB:  PubMed          Journal:  Ambio        ISSN: 0044-7447            Impact factor:   5.129


  13 in total

1.  Modelling the impact of toxic and disturbance stress on white-tailed eagle (Haliaeetus albicilla) populations.

Authors:  John C Korsman; Aafke M Schipper; H J Rob Lenders; Ruud P B Foppen; A Jan Hendriks
Journal:  Ecotoxicology       Date:  2011-08-23       Impact factor: 2.823

2.  Bottlenecked but long-lived: high genetic diversity retained in white-tailed eagles upon recovery from population decline.

Authors:  Frank Hailer; Björn Helander; Alv O Folkestad; Sergei A Ganusevich; Steinar Garstad; Peter Hauff; Christian Koren; Torgeir Nygård; Veljo Volke; Carles Vilà; Hans Ellegren
Journal:  Biol Lett       Date:  2006-06-22       Impact factor: 3.703

3.  Pesticide abuse in Europe: effects on the Cinereous vulture (Aegypius monachus) population in Spain.

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Journal:  Ecotoxicology       Date:  2008-02-15       Impact factor: 2.823

4.  Lead poisoning and other human-related factors cause significant mortality in white-tailed eagles.

Authors:  Marja Isomursu; Juhani Koivusaari; Torsten Stjernberg; Varpu Hirvelä-Koski; Eija-Riitta Venäläinen
Journal:  Ambio       Date:  2018-03-29       Impact factor: 5.129

5.  Population recovery of peregrine falcons in central Norway in the 4 decades since the DDT-ban.

Authors:  Torgeir Nygård; Brett K Sandercock; Tore Reinsborg; Kjell Einvik
Journal:  Ecotoxicology       Date:  2019-10-17       Impact factor: 2.823

6.  Temporal and spatial trends of PCBs, DDTs, HCHs, and HCB in Swedish marine biota 1969-2012.

Authors:  Elisabeth Nyberg; Suzanne Faxneld; Sara Danielsson; Ulla Eriksson; Aroha Miller; Anders Bignert
Journal:  Ambio       Date:  2015-06       Impact factor: 5.129

7.  Spatio-temporal trends of PCBs in the Swedish freshwater environment 1981-2012.

Authors:  Elisabeth Nyberg; Sara Danielsson; Ulla Eriksson; Suzanne Faxneld; Aroha Miller; Anders Bignert
Journal:  Ambio       Date:  2014       Impact factor: 5.129

8.  Tracking pan-continental trends in environmental contamination using sentinel raptors-what types of samples should we use?

Authors:  S Espín; A J García-Fernández; D Herzke; R F Shore; B van Hattum; E Martínez-López; M Coeurdassier; I Eulaers; C Fritsch; P Gómez-Ramírez; V L B Jaspers; O Krone; G Duke; B Helander; R Mateo; P Movalli; C Sonne; N W van den Brink
Journal:  Ecotoxicology       Date:  2016-03-05       Impact factor: 2.823

9.  Genomic signatures of near-extinction and rebirth of the crested ibis and other endangered bird species.

Authors:  Shengbin Li; Bo Li; Cheng Cheng; Zijun Xiong; Qingbo Liu; Jianghua Lai; Hannah V Carey; Qiong Zhang; Haibo Zheng; Shuguang Wei; Hongbo Zhang; Liao Chang; Shiping Liu; Shanxin Zhang; Bing Yu; Xiaofan Zeng; Yong Hou; Wenhui Nie; Youmin Guo; Teng Chen; Jiuqiang Han; Jian Wang; Jun Wang; Chen Chen; Jiankang Liu; Peter J Stambrook; Ming Xu; Guojie Zhang; M Thomas P Gilbert; Huanming Yang; Erich D Jarvis; Jun Yu; Jianqun Yan
Journal:  Genome Biol       Date:  2014       Impact factor: 13.583

10.  Deriving Field-Based Ecological Risks for Bird Species.

Authors:  Renske P J Hoondert; Jelle P Hilbers; A Jan Hendriks; Mark A J Huijbregts
Journal:  Environ Sci Technol       Date:  2018-03-09       Impact factor: 9.028

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