Do whitefish (Coregonus lavaretus) larvae show adaptive variation in the avoidance of microplastic ingestion?
Проявляют ли личинки сига (Coregonus lavaretus) адаптивную изменчивость в избегании заглатывания микропластика?
2020-03-12
SCID: 54.1/zcnm3a2r
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Artemia naupliiEuropean whitefish larvaeadaptive variationadditive genetic variationmicroplastic ingestion
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Abstract (AI)
The presence of microplastics in aquatic ecosystems has recently received increased attention. Small plastic particles may resemble natural food items of larval fish and other aquatic organisms, and create strong selective pressures on the feeding traits in exposed populations. Here, we examined if larval ingestion of 90 μm polystyrene microspheres, in the presence of zooplankton (Artemia nauplii, mean length = 433 μm), shows adaptive variation in the European whitefish (Coregonus lavaretus). A full-factorial experimental breeding design allowed us to estimate the relative contributions of male (sire) and female (dam) parents and full-sib family variance in early feeding traits, and also genetic (co)variation between these traits. We also monitored the magnitude of intake and elimination of microplastics from the alimentary tracts of the larvae. In general, larval whitefish ingested small numbers of microplastics (mean = 1.8, range = 0-26 particles per larva), but ingestion was marginally affected by the dam, and more strongly by the full-sib family variation. Microsphere ingestion showed no statistically significant additive genetic variation, and thus, no heritability. Moreover, microsphere ingestion rate covaried positively with the ingestion of Artemia, further suggesting that larvae cannot adaptively avoid microsphere ingestion. Together with the detected strong genetic correlation between food intake and microplastic intake, the results suggest that larval fish do not readily possess additive genetic variation that would help them to adapt to the increasing pollution by microplastics. The conflict between feeding on natural food and avoiding microplastics deserves further attention.
Key Findings
1
Larval whitefish ingested relatively few 90 μm polystyrene microspheres, averaging 1.8 particles per larva with a range of 0–26.
2
Microplastic ingestion rate covaried positively with Artemia ingestion, suggesting larvae cannot adaptively avoid microspheres while feeding.
3
Microsphere ingestion showed no statistically significant additive genetic variation, indicating no detectable heritability for this trait.
4
Microsphere ingestion was marginally influenced by the dam but more strongly affected by full-sib family variation.
5
Strong genetic correlation between food intake and microplastic intake suggests limited additive genetic capacity for adaptation to increasing microplastic pollution.
Research Object
European whitefish (Coregonus lavaretus) larvae exposed to 90 μm polystyrene microspheres in the presence of Artemia nauplii
Research Subject
Adaptive and genetic variation in microplastic ingestion avoidance, including ingestion and elimination rates and their covariation with natural-food intake
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2020-03-12
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