Skeletal Anomalies in Senegalese Sole ( Solea senegalensis, Kaup) Fed with Different Commercial Enriched Artemia: A Study in Postlarvae and Juveniles

The high incidence of skeletal anomalies in Senegalese sole ( ) still constitutes a bottleneck constraining its production. There are diverse commercially available products for the enrichment of live preys, but few reports of their influence on skeletogenesis in Senegalese sole. This study evaluate...

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Veröffentlicht in:Animals (Basel) 2020-12, Vol.11 (1), p.22
Hauptverfasser: de Azevedo, Ana Manuela, Losada, Ana Paula, Ferreiro, Isabel, Riaza, Ana, Losada, Vanesa, Russo, Tommaso, Boglione, Clara, Vázquez, Sonia, Quiroga, María Isabel
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Sprache:eng
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Zusammenfassung:The high incidence of skeletal anomalies in Senegalese sole ( ) still constitutes a bottleneck constraining its production. There are diverse commercially available products for the enrichment of live preys, but few reports of their influence on skeletogenesis in Senegalese sole. This study evaluated the presence of vertebral anomalies in postlarvae and juvenile Senegalese sole fed with spp. metanauplii enriched with four commercial products (EA, EB, EC, and ED) in a fish farm. The most frequent alterations consisted of deformations of the neural/haemal arches and spines and fusions and deformations of hypurals, epural, or parhypural. The correspondence analysis ordered fish from each age in separated semiaxis, indicating the presence of different anomaly patterns for the two sampled stages. The results showed only very light changes in the frequency of vertebral abnormalities among tested enrichment products, i.e., individuals from EC and EA lots displayed less vertebral body anomalies and/or vertebral column deviations at 31 and 105 days after hatching, respectively. The existence of a large shared malformation pattern in all the experimental groups leads to impute to the rearing conditions as the main driving factor of the onset of such group of anomalies, probably masking some dietary effect.
ISSN:2076-2615
2076-2615
DOI:10.3390/ani11010022