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HSP70 (a) and HSP90 (b) in the heart (A), muscle (B), and digestive tract (C) of gilthead sea bream ( S. aurata ) and European sea bass ( D. labrax ) under the 0% (TM0), 25% (TM25), and 50% (TM50) T. molitor inclusion diet treatment. Representative immunoblots are shown and were quantified by laser scanning <t>densitometry</t> and plotted. Values represent means ± SD; n = 5 preparations from different animals. ∗ indicates p < 0.05 compared with 0%, # indicates p < 0.05 compared with 25%, and + indicates p < 0.05 between species at the same TM diet.
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Image Search Results


HSP70 (a) and HSP90 (b) in the heart (A), muscle (B), and digestive tract (C) of gilthead sea bream ( S. aurata ) and European sea bass ( D. labrax ) under the 0% (TM0), 25% (TM25), and 50% (TM50) T. molitor inclusion diet treatment. Representative immunoblots are shown and were quantified by laser scanning densitometry and plotted. Values represent means ± SD; n = 5 preparations from different animals. ∗ indicates p < 0.05 compared with 0%, # indicates p < 0.05 compared with 25%, and + indicates p < 0.05 between species at the same TM diet.

Journal: Aquaculture Nutrition

Article Title: 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 )

doi: 10.1155/2022/9858983

Figure Lengend Snippet: HSP70 (a) and HSP90 (b) in the heart (A), muscle (B), and digestive tract (C) of gilthead sea bream ( S. aurata ) and European sea bass ( D. labrax ) under the 0% (TM0), 25% (TM25), and 50% (TM50) T. molitor inclusion diet treatment. Representative immunoblots are shown and were quantified by laser scanning densitometry and plotted. Values represent means ± SD; n = 5 preparations from different animals. ∗ indicates p < 0.05 compared with 0%, # indicates p < 0.05 compared with 25%, and + indicates p < 0.05 between species at the same TM diet.

Article Snippet: Bands and blots were detected by enhanced chemiluminescence, while quantification was applied through laser scanning densitometry (GelPro Analyzer Software, GraphPad).

Techniques: Western Blot

Phosphorylation of p38 MAPK (a), p44/42 MAPK (b), and JNKs (c) in the heart (A), muscle (B), and digestive tract (C) of gilthead sea bream ( S. aurata ) and European sea bass ( D. labrax ) under the 0% (TM0), 25% (TM25), and 50% (TM50) T. molitor inclusion diet treatment. Representative immunoblots are shown and were quantified by laser scanning densitometry and plotted. Values represent means ± SD; n = 5 preparations from different animals. ∗ indicates p < 0.05 compared with 0%, # indicates p < 0.05 compared with 25%, and + indicates p < 0.05 between species at the same TM diet.

Journal: Aquaculture Nutrition

Article Title: 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 )

doi: 10.1155/2022/9858983

Figure Lengend Snippet: Phosphorylation of p38 MAPK (a), p44/42 MAPK (b), and JNKs (c) in the heart (A), muscle (B), and digestive tract (C) of gilthead sea bream ( S. aurata ) and European sea bass ( D. labrax ) under the 0% (TM0), 25% (TM25), and 50% (TM50) T. molitor inclusion diet treatment. Representative immunoblots are shown and were quantified by laser scanning densitometry and plotted. Values represent means ± SD; n = 5 preparations from different animals. ∗ indicates p < 0.05 compared with 0%, # indicates p < 0.05 compared with 25%, and + indicates p < 0.05 between species at the same TM diet.

Article Snippet: Bands and blots were detected by enhanced chemiluminescence, while quantification was applied through laser scanning densitometry (GelPro Analyzer Software, GraphPad).

Techniques: Phospho-proteomics, Western Blot

Bax/Bcl-2 ratio (a) and caspase conjugates (b) in the heart (A), muscle (B), and digestive tract (C) of gilthead sea bream ( S. aurata ) and European sea bass ( D. labrax ) under the 0% (TM0), 25% (TM25), and 50% (TM50) T. molitor inclusion diet treatment. Representative immunoblots are shown and were quantified by laser scanning densitometry and plotted. Values represent means ± SD; n = 5 preparations from different animals. ∗ indicates p < 0.05 compared with 0%, # indicates p < 0.05 compared with 25%, and + indicates p < 0.05 between species at the same TM diet.

Journal: Aquaculture Nutrition

Article Title: 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 )

doi: 10.1155/2022/9858983

Figure Lengend Snippet: Bax/Bcl-2 ratio (a) and caspase conjugates (b) in the heart (A), muscle (B), and digestive tract (C) of gilthead sea bream ( S. aurata ) and European sea bass ( D. labrax ) under the 0% (TM0), 25% (TM25), and 50% (TM50) T. molitor inclusion diet treatment. Representative immunoblots are shown and were quantified by laser scanning densitometry and plotted. Values represent means ± SD; n = 5 preparations from different animals. ∗ indicates p < 0.05 compared with 0%, # indicates p < 0.05 compared with 25%, and + indicates p < 0.05 between species at the same TM diet.

Article Snippet: Bands and blots were detected by enhanced chemiluminescence, while quantification was applied through laser scanning densitometry (GelPro Analyzer Software, GraphPad).

Techniques: Western Blot

Ubiquitin conjugates in the heart (a), muscle (b), and digestive tract (c) of gilthead sea bream ( S. aurata ) and European sea bass ( D. labrax ) under the 0% (TM0), 25% (TM25), and 50% (TM50) T. molitor inclusion diet treatment. Representative immunoblots are shown and were quantified by laser scanning densitometry and plotted. Values represent means ± SD; n = 5 preparations from different animals. ∗ indicates p < 0.05 compared with 0%, # indicates p < 0.05 compared with 25%, and + indicates p < 0.05 between species at the same TM diet.

Journal: Aquaculture Nutrition

Article Title: 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 )

doi: 10.1155/2022/9858983

Figure Lengend Snippet: Ubiquitin conjugates in the heart (a), muscle (b), and digestive tract (c) of gilthead sea bream ( S. aurata ) and European sea bass ( D. labrax ) under the 0% (TM0), 25% (TM25), and 50% (TM50) T. molitor inclusion diet treatment. Representative immunoblots are shown and were quantified by laser scanning densitometry and plotted. Values represent means ± SD; n = 5 preparations from different animals. ∗ indicates p < 0.05 compared with 0%, # indicates p < 0.05 compared with 25%, and + indicates p < 0.05 between species at the same TM diet.

Article Snippet: Bands and blots were detected by enhanced chemiluminescence, while quantification was applied through laser scanning densitometry (GelPro Analyzer Software, GraphPad).

Techniques: Ubiquitin Proteomics, Western Blot

LC3BII/LC3BI ratio (a) and SQSTM1/p62 (b) in the heart (A), muscle (B), and digestive tract (C) of gilthead sea bream ( S. aurata ) and European sea bass ( D. labrax ) under the 0% (TM0), 25% (TM25), and 50% (TM50) T. molitor inclusion diet treatment. Representative immunoblots are shown and were quantified by laser scanning densitometry and plotted. Values represent means ± SD; n = 5 preparations from different animals. ∗ indicates p < 0.05 compared with 0%, # indicates p < 0.05 compared with 25%, and + indicates p < 0.05 between species at the same TM diet.

Journal: Aquaculture Nutrition

Article Title: 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 )

doi: 10.1155/2022/9858983

Figure Lengend Snippet: LC3BII/LC3BI ratio (a) and SQSTM1/p62 (b) in the heart (A), muscle (B), and digestive tract (C) of gilthead sea bream ( S. aurata ) and European sea bass ( D. labrax ) under the 0% (TM0), 25% (TM25), and 50% (TM50) T. molitor inclusion diet treatment. Representative immunoblots are shown and were quantified by laser scanning densitometry and plotted. Values represent means ± SD; n = 5 preparations from different animals. ∗ indicates p < 0.05 compared with 0%, # indicates p < 0.05 compared with 25%, and + indicates p < 0.05 between species at the same TM diet.

Article Snippet: Bands and blots were detected by enhanced chemiluminescence, while quantification was applied through laser scanning densitometry (GelPro Analyzer Software, GraphPad).

Techniques: Western Blot