Influence of turbidity, food density and parasites on the ingestion and growth of larval rainbow smelt Osmerus mordax in an estuarine turbidity maximum

Влияние мутности, плотности корма и паразитов на потребление пищи и рост личинок радужной корюшки Osmerus mordax в эстуарном максимуме мутности
Pascal Sirois, JJ Dodson
2000-01-01

Protocephalus cestode parasitesestuarine turbidity maximumlarval ingestion and growthrainbow smelt larvaeturbidity and food density
We investigated the impact of turbidity, food density and parasites on ingestion and growth rates of rainbow smelt larvae Osmerus mordax. These 3 variables were selected because of their potential to substantially ~nfluence the feeding success, growth, and the subsequent survival of smelt larvae. A laboratory experiment was first performed to evaluate, in turbulent conditions, the combined effects of turbidity and food density on the ingestion and growth rates of smelt larvae. A f~eld survey of the gut contents of larval smelt was conducted to directly estlmate ingestion rates in 2 different regions of the St. Lawrence estuarine turbidity maximum (ETM) exhibiting different levels of turbidity but otherwise sharing similar environmental conditions. This study demonstrated that lower energetic costs are incurred by larvae that exploit similar feeding conditions at higher turbidities. Larval rainbow smelt in the ETM fed during the coincidence of dayllght hours and flooding tide. Cestode parasites (genus Protocephalus) were found in the digestive tract of 38% of the larvae collected in the ETM. Parasitised larvae ingested half as much food as non-parasitised larvae. The decrease in feeding due to parasitism was associated with a reduced growth rate as suggested by the sign~ficantly lower standard lengths observed in parasitised larvae. Moreover, the size advantage of non-parasitlsed larvae is expected to be ampMied because larger larvae ingest proportionally more food than smaller larvae. We suggest that the impact of parasitism on larval survival and subsequent recruitment m flshes merits far more attention than afforded to date.
1
Because larger larvae ingest proportionally more food, parasitism may amplify size differences and negatively affect larval survival and recruitment.
2
Larval rainbow smelt in the estuarine turbidity maximum fed during daylight hours coinciding with the flooding tide.
3
Lower energetic costs were incurred by rainbow smelt larvae exploiting similar feeding conditions at higher turbidity.
4
Parasitized larvae had significantly lower standard lengths, indicating reduced growth associated with parasite-related feeding suppression.
5
Protocephalus cestode parasites occurred in 38% of collected larvae and reduced food ingestion by approximately half.

Larval rainbow smelt Osmerus mordax in the St. Lawrence estuarine turbidity maximum

Effects of turbidity, food density, and cestode parasitism on larval ingestion, growth, feeding conditions, and associated energetic costs

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2000-01-01
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Pascal Sirois
JJ Dodson
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