Oyster reproduction is affected by exposure to polystyrene microplastics

Размножение устриц нарушается под воздействием полистирольных микропластиков
Rossana Sussarellu, Marc Suquet, Yoann Thomas, Christophe Lambert, Caroline Fabioux, Eve-Julie Arsenault-Pernet, Nelly Le Goïc, Virgile Quillien, Christian Mingant, Yanouk Epelboin, Charlotte Corporeau, Julien Guyomarch, Johan Robbens, Ika Paul-Pont, Philippe Soudant, Arnaud Huvet
2016-02-01

Pacific oysterdynamic energy budget modelingoffspring developmentpolystyrene microplasticsreproductive disruption
Plastics are persistent synthetic polymers that accumulate as waste in the marine environment. Microplastic (MP) particles are derived from the breakdown of larger debris or can enter the environment as microscopic fragments. Because filter-feeder organisms ingest MP while feeding, they are likely to be impacted by MP pollution. To assess the impact of polystyrene microspheres (micro-PS) on the physiology of the Pacific oyster, adult oysters were experimentally exposed to virgin micro-PS (2 and 6 µm in diameter; 0.023 mg·L(-1)) for 2 mo during a reproductive cycle. Effects were investigated on ecophysiological parameters; cellular, transcriptomic, and proteomic responses; fecundity; and offspring development. Oysters preferentially ingested the 6-µm micro-PS over the 2-µm-diameter particles. Consumption of microalgae and absorption efficiency were significantly higher in exposed oysters, suggesting compensatory and physical effects on both digestive parameters. After 2 mo, exposed oysters had significant decreases in oocyte number (-38%), diameter (-5%), and sperm velocity (-23%). The D-larval yield and larval development of offspring derived from exposed parents decreased by 41% and 18%, respectively, compared with control offspring. Dynamic energy budget modeling, supported by transcriptomic profiles, suggested a significant shift of energy allocation from reproduction to structural growth, and elevated maintenance costs in exposed oysters, which is thought to be caused by interference with energy uptake. Molecular signatures of endocrine disruption were also revealed, but no endocrine disruptors were found in the biological samples. This study provides evidence that micro-PS cause feeding modifications and reproductive disruption in oysters, with significant impacts on offspring.
1
Energy-budget modeling and transcriptomics indicated energy reallocation from reproduction toward structural growth, elevated maintenance costs, and molecular signatures of endocrine disruption.
2
Exposed oysters showed decreases in oocyte number (-38%), oocyte diameter (-5%), and sperm velocity (-23%).
3
Microplastic exposure increased microalgal consumption and absorption efficiency, indicating compensatory feeding and physical effects on digestion.
4
Offspring from exposed parents had reduced D-larval yield (-41%) and larval development (-18%) compared with controls.
5
Pacific oysters preferentially ingested 6-µm polystyrene microspheres over 2-µm particles during two months of exposure.

Adult Pacific oysters and their offspring exposed to virgin polystyrene microspheres (2 and 6 µm) during a reproductive cycle

Effects of polystyrene microplastic exposure on feeding and energy allocation, reproductive physiology, endocrine-related molecular responses, fecundity, and offspring development

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2016-02-01
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Authors
Rossana Sussarellu
Marc Suquet
Yoann Thomas
Christophe Lambert
Caroline Fabioux
Eve-Julie Arsenault-Pernet
Nelly Le Goïc
Virgile Quillien
Christian Mingant
Yanouk Epelboin
Charlotte Corporeau
Julien Guyomarch
Johan Robbens
Ika Paul-Pont
Philippe Soudant
Arnaud Huvet
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