Microcystin Bioaccumulation in Freshwater Fish at Different Trophic Levels from the Eutrophic Lake Chaohu, China

The spatial and temporal variations of microcystins (MCs) in fishes with different trophic levels were studied monthly in Lake Chaohu in 2014. MCs content in muscle was highest in phytoplanktivorous Hypophthalmichthys molitrix ( H. molitrix ), followed by omnivorous Carassius auratus ( C. auratus ),...

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Published inBulletin of environmental contamination and toxicology Vol. 99; no. 1; pp. 69 - 74
Main Authors Jiang, Yan, Yang, Yunmeng, Wu, Yuling, Tao, Jianbin, Cheng, Bo
Format Journal Article
LanguageEnglish
Published New York Springer US 01.07.2017
Springer Nature B.V
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Abstract The spatial and temporal variations of microcystins (MCs) in fishes with different trophic levels were studied monthly in Lake Chaohu in 2014. MCs content in muscle was highest in phytoplanktivorous Hypophthalmichthys molitrix ( H. molitrix ), followed by omnivorous Carassius auratus ( C. auratus ), and was lowest in herbivorous Parabramis pekinensis ( P. pekinensis ) and carnivorous Coilia ectenes ( C. ectenes ). MCs concentration in liver was highest in C. auratus , followed by H. molitrix , and was lowest in P. pekinensis and C. ectene . The main uptake routes of MCs for C. auratus and H. molitrix were via the diet. The mechanism to counteract MCs had not been well developed in C. ectenes. H. molitrix and C. auratu s from the western region as they had higher mean concentrations of MCs than fishes from the eastern region. The estimated daily intakes of MCs in 45.4% of muscle samples were higher than the provisional tolerable daily intake set by WHO.
AbstractList The spatial and temporal variations of microcystins (MCs) in fishes with different trophic levels were studied monthly in Lake Chaohu in 2014. MCs content in muscle was highest in phytoplanktivorous Hypophthalmichthys molitrix ( H. molitrix ), followed by omnivorous Carassius auratus ( C. auratus ), and was lowest in herbivorous Parabramis pekinensis ( P. pekinensis ) and carnivorous Coilia ectenes ( C. ectenes ). MCs concentration in liver was highest in C. auratus , followed by H. molitrix , and was lowest in P. pekinensis and C. ectene . The main uptake routes of MCs for C. auratus and H. molitrix were via the diet. The mechanism to counteract MCs had not been well developed in C. ectenes. H. molitrix and C. auratu s from the western region as they had higher mean concentrations of MCs than fishes from the eastern region. The estimated daily intakes of MCs in 45.4% of muscle samples were higher than the provisional tolerable daily intake set by WHO.
The spatial and temporal variations of microcystins (MCs) in fishes with different trophic levels were studied monthly in Lake Chaohu in 2014. MCs content in muscle was highest in phytoplanktivorous Hypophthalmichthys molitrix (H. molitrix), followed by omnivorous Carassius auratus (C. auratus), and was lowest in herbivorous Parabramis pekinensis (P. pekinensis) and carnivorous Coilia ectenes (C. ectenes). MCs concentration in liver was highest in C. auratus, followed by H. molitrix, and was lowest in P. pekinensis and C. ectene. The main uptake routes of MCs for C. auratus and H. molitrix were via the diet. The mechanism to counteract MCs had not been well developed in C. ectenes. H. molitrix and C. auratus from the western region as they had higher mean concentrations of MCs than fishes from the eastern region. The estimated daily intakes of MCs in 45.4% of muscle samples were higher than the provisional tolerable daily intake set by WHO.
Author Tao, Jianbin
Jiang, Yan
Wu, Yuling
Yang, Yunmeng
Cheng, Bo
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Keywords Microcystin
Fish
Lake Chaohu
Eutrophication
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Snippet The spatial and temporal variations of microcystins (MCs) in fishes with different trophic levels were studied monthly in Lake Chaohu in 2014. MCs content in...
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SubjectTerms Animals
Aquatic Pollution
Bioaccumulation
Carps - metabolism
China
Coiling
Diet
Earth and Environmental Science
Ecotoxicology
Environment
Environmental Chemistry
Environmental Health
Environmental Monitoring
Eutrophic lakes
Eutrophication
Feeding Behavior
Fish
Fishes - metabolism
Food Chain
Freshwater fish
Intakes
Lakes
Lakes - chemistry
Liver
Microcystins
Microcystins - analysis
Microcystins - metabolism
Pollution
Soil Science & Conservation
Temporal variations
Toxicity
Toxins
Trophic levels
Waste Water Technology
Water Management
Water Pollutants, Chemical - analysis
Water Pollutants, Chemical - metabolism
Water Pollution Control
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Title Microcystin Bioaccumulation in Freshwater Fish at Different Trophic Levels from the Eutrophic Lake Chaohu, China
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