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  3. Speciation leads to divergent methylmercury accumulation in sympatric whitefish
 

Speciation leads to divergent methylmercury accumulation in sympatric whitefish

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BORIS DOI
10.7892/boris.16332
Date of Publication
2013
Publication Type
Article
Division/Institute

Institut für Ökologie...

Author
Blank, Nanina
Hudson, Alan G.
Vonlanthen, Pascal
Seehausen, Ole
Institut für Ökologie und Evolution, Aquatische Ökologie
Hammerschmidt, Chad R.
Senn, David B.
Subject(s)

500 - Science::570 - ...

Series
Aquatic Sciences
ISSN or ISBN (if monograph)
1015-1621
Publisher
Springer
Language
English
Publisher DOI
10.1007/s00027-012-0271-6
Description
Central European lake whitefish (Coregonus spp.) colonized Swiss lakes following the last glacial retreat and have undergone rapid speciation and adaptive radiation. Up to six species have been shown to coexist in some lakes, and individual species occupy specific ecological niches and have distinct feeding and reproductive ecologies. We studied methylmercury (MeHg) accumulation in sympatric whitefish species from seven Swiss lakes to determine if ecological divergence has led to different rates of MeHg bioaccumulation. In four of seven lakes, sympatric species had distinctly different MeHg levels, which varied by up to a factor of two between species. Generally, species with greater MeHg levels were smaller in body size and planktivorous, and species with lower MeHg were larger and benthivorous. While modest disparities in trophic position between species might be expected a priori to explain the divergence in MeHg, δ15N of bulk tissue did not correlate with fish MeHg in five of seven lakes. Results of a nested ANCOVA analysis across all lakes indicated that only two factors (species, lake) explained substantial portions of the variance, with species accounting for more variance (52 %) than inter-lake differences (32 %). We suggest that differences in MeHg accumulation were likely caused by diverging metabolic traits between species, such as differences in energy partitioning between anabolism and catabolism, potentially interacting with species-specific prey resource utilization. These results indicate substantial variability in MeHg accumulation between closely related fish species, illustrating that ecological speciation in fish can lead to divergent MeHg accumulation patterns.
Handle
https://boris-portal.unibe.ch/handle/20.500.12422/90349
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