4.5 Article

Dietary Tenebrio molitor Larvae Meal Inclusion Exerts Tissue-Specific Effects on Cellular, Metabolic, and Antioxidant Status in European Sea Bass (Dicentrarchus labrax) and Gilthead Seabream (Sparus aurata)

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AQUACULTURE NUTRITION
卷 2022, 期 -, 页码 -

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WILEY-HINDAWI
DOI: 10.1155/2022/9858983

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资金

  1. AQUAEXCEL Project PROINSECTLIFE [0013/03/05/15B]
  2. AQUAEXCEL Project INDIFISH [0125/08/05/15/TNA]
  3. University of Turin
  4. General Secretariat for Research and Technology (GSRT) of Greece [1752]
  5. Hellenic Foundation for Research and Innovation (HFRI)

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This study investigated the effects of dietary inclusion of Tenebrio molitor larvae on the cytoprotection, cell death pathways, antioxidant defense, and intermediate metabolism in the heart, muscle, and digestive tract of gilthead seabream and European sea bass. The results showed that the inclusion of Tenebrio molitor larvae had different effects on the cellular responses of the two fish species.
The present study addresses the effects of dietary Tenebrio molitor (TM) larvae meal inclusion on cytoprotective, cell death pathways, antioxidant defence, and intermediate metabolism in the heart, muscle, and digestive tract of gilthead seabream (Sparus aurata) and European sea bass (Dicentrarchus labrax). Three experimental diets were formulated to contain 0%, 25%, or 50% inclusion TM levels. Heat Shock Proteins (HSPs) induction was apparent in both species' muscle at 50% inclusion. Conversely, p44/42 Mitogen-Activated Protein Kinase (MAPK) activation was increased (p < 0.05) in both species' muscle and digestive tract at 25% inclusion. Regarding the apoptotic machinery, TM inclusion exerted no influence on gilthead seabream, while suppression through autophagy may have occurred in the muscle. However, significant apoptosis (p < 0.05) was evident in European sea bass muscle and digestive tract. Both fish species' heart seemed to additionally rely on lipids compared to muscle and digestive tract. In contrast to gilthead seabream, European sea bass exhibited increased (p < 0.05) antioxidant activity at 50% TM inclusion. The present findings highlight the dietary derived induction of cellular responses in a species- and tissue-specific manner, whereas European sea bass appears to be more susceptible to TM inclusion.

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