| Literature DB >> 26495116 |
Katerina Kousoulaki1, Tone-Kari Knutsdatter Østbye1, Aleksei Krasnov1, Jacob Seilø Torgersen1, Turid Mørkøre1, John Sweetman2.
Abstract
Microalgae, as primary producers of EPA and DHA, are among the most prominent alternative sources to fish oil for n-3 long-chain PUFA in animal and human nutrition. The present study aimed to assess technical, nutritional and fish health aspects of producing n-3-rich Atlantic salmon (Salmo salar) fish fillets by dietary supplementation of increasing levels of a DHA-producing Schizochytrium sp. and reduced or without use of supplemental fish oil. Atlantic salmon smolt were fed diets with graded levels of microalgae for 12 weeks, during which all fish showed high feed intake rates with postprandial plasma leptin levels inversely correlating with final mean fish body weights. Fish performance was optimal in all experimental treatments (thermal growth coefficient about 4·0 and feed conversion ratio 0·8-0·9), protein digestibility was equal in all diets, whereas dietary lipid digestibility inversely correlated with the dietary levels of the SFA 16 : 0. Fillet quality was good and similar to the control in all treatments in terms of n-3 long-chain PUFA content, gaping, texture and liquid losses during thawing. Histological fluorescence staining and immunofluorescence analysis of salmon intestines (midgut: base of intestine and villi) revealed significant effects on slime, goblet cell production and inducible nitric oxide synthase (iNOS) activity with increasing levels of dietary Schizochytrium sp. supplementation. Microarray analysis did not reveal any signs of toxicity, stress, inflammation or any other negative effects from Schizochytrium sp. supplementation in diets for Atlantic salmon.Entities:
Keywords: 0_ScYE, 0 g/kg Scizochytrium sp. + yeast extract (control); 15_ScYE, 150 g/kg Scizochytrium sp. + yeast extract; 1_ScYE, 10 g/kg Scizochytrium sp. + yeast extract; 6_ScYE, 60 g/kg Scizochytrium sp. + yeast extract; ADC, apparent digestibility coefficient; CK, creatine kinase; FAME, fatty acid methyl esters; FCR, feed conversion ratio; Farmed salmon fish fillet nutritional quality; ISO, International Organization for Standardization; Microalgae; ScYE, Scizochytrium sp. + yeast extract; TGC, thermal growth coefficient; iNOS, inducible nitric oxide synthase; n-3 LC-PUFA, n-3 long-chain PUFA; n-3 Long-chain PUFA
Year: 2015 PMID: 26495116 PMCID: PMC4611082 DOI: 10.1017/jns.2015.14
Source DB: PubMed Journal: J Nutr Sci ISSN: 2048-6790
Dietary formulations in Atlantic salmon (Salmo salar) feeding experiment (raw material content is given in g/kg raw material mix)
| Diet… | Diet 1, 0_ScYE | Diet 2, 1_ScYE | Diet 3, 6_ScYE | Diet 4, 15_ScYE |
|---|---|---|---|---|
| Fishmeal | 248 | 248 | 248 | |
| Soya protein concentrate | 180 | 180 | 180 | 180 |
| Maize gluten | 119 | 119 | 117 | 43 |
| Wheat gluten | 60 | 59·5 | 58 | 100 |
| Horse beans | 91·8 | 86·8 | 66·7 | 54·6 |
| Soya lecithin | 5 | 5 | 5 | 5 |
| Rapeseed oil | 75 | 75 | 75 | 152 |
| Fish oil | 153 | 148·5 | 122·4 | |
| ScYE* | – | 10 | 60 | 150 |
| Inositol | 0·3 | 0·3 | 0·3 | 0·3 |
| Betafin | 5 | 5 | 5 | 5 |
| Mineral premix – P† | 5·2 | 5·2 | 5·2 | 5·2 |
| NaH2PO4 | 26·3 | 26·3 | 26·0 | 25·6 |
| Vitamin mix† | 20 | 20 | 20 | 20 |
| Lysine | 2·5 | 2·5 | 2·5 | 2·5 |
| Methionine | 7·9 | 7·9 | 7·9 | 7·9 |
| Astaxanthine (10 %) | 0·5 | 0·5 | 0·5 | 0·5 |
| Yttrium oxide | 0·5 | 0·5 | 0·5 | 0·5 |
| Sum | 1000 | 1000 | 1000 | 1000 |
0_ScYE, 0 g/kg Scizochytrium sp. + yeast extract (control); 1_ScYE, 10 g/kg Scizochytrium sp. + yeast extract; 6_ScYE, 60 g/kg Scizochytrium sp. + yeast extract; 15_ScYE, 150 g/kg Scizochytrium sp. + yeast extract.
* Heterotrophically produced Scizochytrium sp., spray dried and balanced to 500 g/kg total fat by yeast extract (Alltech Inc.).
† Providing in the final diet: 3000 IU vitamin D3, 160 mg/kg vitamin E, 20 mg/kg vitamin K3, 200 mg/kg vitamin C, 20 mg/kg vitamin B1, 30 mg/kg vitamin B2, 25 mg/kg vitamin B6, 0·05 mg/kg vitamin B12, 60 mg/kg vitamin B5, 10 mg/kg folic acid, 200 mg/kg vitamin B3, 1 mg/kg vitamin B7, 92·31 mg/kg MnSO4 + H2O, 3125 mg/kg MgHPO4 + 3H2O, 182·4 mg/kg FeSO4 + H2O, 352·9 mg/kg ZnSO4 + H2O, 23·62 mg/kg CuSO4 + H2O, 1413 mg/kg K2CO3 and 6·67 mg/kg Se.
Experimental raw material and diet chemical composition, given in g/kg diet as-is or as-fed, respectively, for proximate composition and dietary ScYE* content, in kJ/g diet as-fed for dietary crude energy content, and in g/kg Bligh and Dyer extract for fatty acid (FA) and lipid class composition
| ScYE | Diet 1, 0_ScYE | Diet 2, 1_ScYE | Diet 3, 6_ScYE | Diet 4, 15_ScYE | |
|---|---|---|---|---|---|
| Supplemental dietary fish oil | 153 | 148·5 | 122·4 | 0 | |
| Dietary ScYE | 0 | 10 | 60 | 150 | |
| Proximate composition | |||||
| Crude protein | 178 | 443 | 437 | 425 | 445 |
| Moisture | 27 | 81 | 78 | 73 | 77 |
| Crude ash | 37 | 74 | 75 | 73 | 76 |
| Total lipid | 544 | 272 | 281 | 305 | 278 |
| Gross energy | 227·1 | 229·4 | 236·6 | 230·3 | |
| Lipid fatty acids | |||||
| Sum SFA | 577 | 163 | 167 | 212 | 244 |
| Sum MUFA | 4 | 468 | 452 | 448 | 378 |
| Sum PUFA ( | 7 | 91 | 88 | 90 | 120 |
| Sum PUFA ( | 264 | 167 | 165 | 181 | 147 |
| Sum PUFA FA | 271 | 263 | 258 | 275 | 267 |
| Sum FA | 852 | 894 | 877 | 935 | 889 |
| 14 : 0 | 44 | 39 | 38 | 39 | 20 |
| 16 : 0 | 515 | 104 | 109 | 151 | 202 |
| 18 : 0 | 15 | 17 | 17 | 18 | 16 |
| 20 : 0 | 2 | 2 | 02 | 3 | 04 |
| 22 : 0 | 1 | 1 | 01 | 1 | 2 |
| 16 : 1 | 1 | 32 | 30 | 28 | 7 |
| 18 : 1( | 3 | 263 | 253 | 265 | 335 |
| 20 : 1( | <1 | 74 | 72 | 67 | 18 |
| 22 : 1( | <1 | 95 | 93 | 85 | 17 |
| 24 : 1 | <1 | 4 | 4 | 3 | 1 |
| 16 : 2 | <1 | 3 | 3 | 2 | <1 |
| 16 : 3 | <1 | 2 | 2 | 2 | <1 |
| 18 : 2 | 6 | 88 | 85 | 88 | 120 |
| 18 : 3 | <1 | <1 | <1 | <1 | <1 |
| 20 : 2 | <1 | 1 | 1 | 1 | <1 |
| 20 : 3 | 1 | <1 | <1 | <1 | <1 |
| 20 : 4 | <1 | 2 | 2 | 1 | <1 |
| 22 : 4 | <1 | <1 | <1 | <1 | <1 |
| 18 : 3 | <1 | 29 | 28 | 30 | 40 |
| 18 : 4 | <1 | 18 | 17 | 16 | 3 |
| 20 : 3 | <1 | 1 | <1 | 1 | <1 |
| 20 : 4 | 4 | 4 | 4 | 4 | 1 |
| 20 : 5 | 2 | 45 | 43 | 40 | 11 |
| 21 : 5 | <1 | 2 | 2 | 2 | <1 |
| 22 : 5 | <1 | 5 | 5 | 4 | 1 |
| 22 : 6 | 258 | 63 | 66 | 84 | 91 |
| Lipid classes | |||||
| TAG | 870 | ||||
| Diacylglycerol | <5 | ||||
| Monoacylglycerol | <10 | ||||
| NEFA | 28 | ||||
| Sterols | 14 | ||||
| Total polar lipids | <10 |
0_ScYE, 0 g/kg Scizochytrium sp. + yeast extract (control); 1_ScYE, 10 g/kg Scizochytrium sp. + yeast extract; 6_ScYE, 60 g/kg Scizochytrium sp. + yeast extract; 15_ScYE, 150 g/kg Scizochytrium sp. + yeast extract.
* Heterotrophically produced Scizochytrium sp., spray dried and balanced to 500 g/kg total fat by yeast extract (Alltech Inc.).
Performance, biometrics and postprandial plasma leptin of Atlantic salmon (Salmo salar) fed diets with increasing levels of ScYE* and decreasing levels of fish oil
(Mean values with their standard errors; n 3, except for plasma leptin: n 15)
| Treatment… | 0_ScYE | 1_ScYE | 6_ScYE | 15_ScYE | |
|---|---|---|---|---|---|
| Supplemental dietary fish oil (g/kg diet) | 153 | 148·5 | 122·4 | 0 | |
| Dietary ScYE (g/kg diet) | 0 | 10 | 60 | 150 | |
| Start fish number | 40 | 40 | 40 | 40 | 0 |
| Total mortality (%) | 2·5 | 0·0 | 0·8 | 0·8 | 0·6 |
| Initial fish body weight (g) | 213 | 213 | 213 | 213 | 0 |
| Final fish body weight (g) | 824a,b | 851b | 819a,b | 797a | 7 |
| Total feed intake (kg) | 18·4 | 21·2 | 21·0 | 19·2 | 0·6 |
| FI† (% metabolic body weight/d) | 1·39 | 1·53 | 1·54 | 1·45 | 0·03 |
| FCR‡ | 0·78 | 0·83 | 0·88 | 0·83 | 0·02 |
| TGC§ (× 1000) | 4·03a,b | 4·15b | 4·01a,b | 3·91a | 0·03 |
| PER|| | 2·89 | 2·76 | 2·71 | 2·73 | 0·07 |
| CF¶ | 1·46 | 1·45 | 1·48 | 1·41 | 0·01 |
| D%** | 87·9a | 87·8a | 87·3a | 88·7b | 0·2 |
| HSI†† | 1·54 | 1·54 | 1·42 | 1·48 | 0·02 |
| Salmon postprandial plasma leptin (ng leptin/ml plasma) | 63·7b | 55·7a | 64·4b | 69·1b | 1·4 |
0_ScYE, 0 g/kg Scizochytrium sp. + yeast extract (control); 1_ScYE, 10 g/kg Scizochytrium sp. + yeast extract; 6_ScYE, 60 g/kg Scizochytrium sp. + yeast extract; 15_ScYE, 150 g/kg Scizochytrium sp. + yeast extract; FI, feed intake; FCR, feed conversion ratio; TGC, thermal growth coefficient; PER, protein efficiency ratio; CF, condition factor; D%, dress-out percentage; HSI, hepatosomatic index.
a,b Mean values within a row with unlike superscript letters were significantly different (P < 0·05; one-way ANOVA as separated by Tukey's post hoc test).
* Heterotrophically produced Scizochytrium sp., spray dried and balanced to 500 g/kg total fat by yeast extract (Alltech Inc.).
† FI rate is the mean feed consumption per fish per d expressed as percentage of the daily fish body weight. The daily fish body weight was calculated using daily specific growth rate values equal to the overall specific growth rate of each tank.
‡ FCR is total feed consumed/total fish biomass increase.
§ TGC = (w21/3 – w11/3) × 1000/ ∑(t × feeding days), where ∑(t × feeding days) is the sum of water temperatures (°C) for every feeding day in the experiment().
|| PER is fish weight gain/protein consumption.
¶ CF = (fish weight (g)/fish fork length3) × 1000.
** D% = (gutted fish weight/whole fish weight) × 100.
†† HSI = % of liver weight/whole fish weight.
Fillet (Norwegian quality cut) technical quality of Atlantic salmon (Salmo salar) fed diets with increasing levels of ScYE* and decreasing levels of fish oil
(Mean values with their standard errors; n 3)
| Treatment… | 0_ScYE | 1_ScYE | 6_ScYE | 15_ScYE | |
|---|---|---|---|---|---|
| Supplemental dietary fish oil (g/kg diet) | 153 | 148·5 | 122·4 | 0 | |
| Dietary ScYE (g/kg diet) | 0 | 10 | 60 | 150 | |
| Gaping score | 0·7 | 0·9 | 1·1 | 1·1 | 0·2 |
| Firmness (Newtons) | 3·5 | 3·5 | 3·5 | 3·6 | 0·1 |
| Liquid loss (%) | 9·3 | 10·2 | 9·4 | 10·6 | 1·0 |
0_ScYE, 0 g/kg Scizochytrium sp. + yeast extract (control); 1_ScYE, 10 g/kg Scizochytrium sp. + yeast extract; 6_ScYE, 60 g/kg Scizochytrium sp. + yeast extract; 15_ScYE, 150 g/kg Scizochytrium sp. + yeast extract.
* Heterotrophically produced Scizochytrium sp., spray dried and balanced to 500 g/kg total fat by yeast extract (Alltech Inc.).
Changes in the Norwegian quality cut fillet fatty acid content (g/kg fillet) of Atlantic salmon (Salmo salar) fed diets with increasing level of ScYE* and decreasing levels of fish oil after 6 and 12 weeks†
(Mean values with their standard errors)
| Time… | 0 | 6 weeks | 12 weeks | Two-way ANOVA ( | |||||||||||
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
| Treatment… | Start | 0_ScYE | 1_ScYE | 6_ScYE | 15_ScYE | 0_ScYE | 1_ScYE | 6_ScYE | 15_ScYE | Diet | Time | Diet x time | |||
| Total lipids (Bligh and Dyer) | 88·7b,c | 90·7b,c | 85·7b | 83·0b | 117·0c,d | 123·0d | 122·3d | 109·0b,c,d | NS | 0·001 | NS | ||||
| 39·0a | 2·0 | 2·8 | 2·9 | ||||||||||||
| 14 : 0 | 1·32a | 0·03 | 3·02c,d | 3·02c,d | 2·83b,c | 1·74a | 0·19 | 3·90c,d | 4·09d | 3·93d | 1·92a,b | 0·28 | 0·001 | 0·001 | NS |
| 16 : 0 | 5·16a | 0·09 | 10·82b | 10·93b,c | 11·28b,c | 11·82bc | 0·37 | 13·96b,c,d | 14·81c,d | 16·35d | 16·35d | 0·44 | NS | 0·001 | NS |
| 16 : 1 | 1·25a | 0·02 | 2·76c,d | 2·72c,d | 2·49b,c | 1·44a | 0·18 | 3·67d,e | 3·77e | 3·52d | 1·56a,b | 0·29 | 0·001 | 0·001 | 0·05 |
| 16 : 2 | 0·08a | 0·00 | 0·18b,c | 0·18b,c | 0·17b,c | 0·08a | 0·01 | 0·23c | 0·25c | 0·24c | 0·12a,b | 0·01 | 0·001 | 0·001 | – |
| 16 : 3 | 0·04a | 0·00 | 0·09b,c | 0·09b,c,d | 0·09b | 0·08b | 0·00 | 0·12b,c,d | 0·12d | 0·12c,d | 0·11b,c,d | 0·00 | NS | 0·001 | – |
| 18 : 0 | 0·97a | 0·01 | 2·04b | 2·09b,c | 1·92b | 1·93b | 0·06 | 2·97d | 3·03d | 3·02d | 2·83c,d | 0·07 | NS | 0·001 | NS |
| 18 : 1( | 9·09a | 0·21 | 23·76b | 23·82b | 22·69b | 26·24b,c | 0·87 | 33·27c,d | 34·51c,d | 35·02d | 38·76d | 0·93 | NS | 0·001 | 0·1 |
| 18 : 2 | 2·18a | 0·07 | 6·61b,c | 6·68b,c | 6·44b | 7·98b,c | 0·29 | 8·99c,d | 9·46d,e | 9·76d,e | 11·60e | 0·35 | 0·001 | 0·01 | 0·05 |
| 18 : 3 | 0·84a | 0·02 | 2·07b | 2·15b | 2·12b | 2·52b,c | 0·09 | 2·73b,c | 2·91c,d | 3·02c,d | 3·55d | 0·11 | 0·01 | 0·001 | 0·01 |
| 18 : 3 | 0·04a | 0·00 | 0·09b,c | 0·09b,c,d | 0·09b | 0·08b | 0·00 | 0·12b,c,d | 0·12d | 0·12c,d | 0·11b,c,d | 0·00 | NS | 0·001 | – |
| 18 : 4 | 0·45a | 0·00 | 0·98b | 0·91b | 0·86b | 0·44a | 0·07 | 1·09b | 1·15b | 1·06b | 0·44a | 0·09 | 0·001 | 0·05 | NS |
| 20 : 0 | 0·06a | 0·02 | 0·18b,c | 0·18b,c | 0·17b | 0·17b | 0·01 | 0·23b,c | 0·25c | 0·24c | 0·33d | 0·01 | NS | 0·001 | 0·01 |
| 20 : 1( | 1·85a | 0·07 | 6·07c | 6·11c | 5·35b,c | 2·99a | 0·43 | 8·42d | 9·04d | 8·25d | 3·74a,b | 0·66 | 0·001 | 0·001 | 0·1 |
| 20 : 2 | 0·20a | 0·01 | 0·57b | 0·54b | 0·51b | 0·69b,c | 0·03 | 0·82c | 0·90c,d | 0·86c | 1·12d | 0·04 | 0·01 | 0·001 | 0·05 |
| 20 : 3 | 0·08a | 0·00 | 0·18a,b | 0·18a,b | 0·17a,b | 0·22b,c | 0·01 | 0·23b,c | 0·25b,c | 0·29b,c | 0·33c | 0·02 | NS | 0·01 | NS |
| 20 : 3 | 0·04a | 0·00 | 0·09a,b | 0·09a,b | 0·09a,b | 0·14b,c | 0·01 | 0·15b,c | 0·12b | 0·12b | 0·22c | 0·01 | 0·01 | 0·01 | NS |
| 20 : 4 | 0·35a | 0·02 | 0·83b | 0·82b | 0·77b | 0·42a | 0·06 | 1·17c | 1·23c | 1·19c | 0·55a,b | 0·09 | 0·001 | 0·001 | 0·1 |
| 20 : 4 | 0·12a | 0·01 | 0·18a,b | 0·18b | 0·17a,b | 0·17a,b | 0·01 | 0·23b | 0·20b | 0·24b | 0·22b | 0·01 | NS | 0·01 | NS |
| 20 : 5 | 1·31a | 0·05 | 2·75b | 2·69b | 2·54b | 1·33a | 0·19 | 3·24b | 3·36b | 3·10b | 1·17a | 0·28 | 0·001 | 0·05 | 0·1 |
| 21 : 5 | 0·08a | 0·00 | 0·18b,c | 0·18b,c | 0·15a,b | 0·09a | 0·01 | 0·23c | 0·25c | 0·24c | − | 0·00 | 0·05 | 0·001 | NS |
| 22 : 0 | – | – | 0·09a | 0·09a | 0·09a | 0·08a | 0·00 | 0·12b | 0·12b | 0·12b | 0·11b | 0·00 | NS | 0·001 | – |
| 22 : 1( | 1·99a | 0·10 | 6·34b | 6·38b,c | 5·57b,c | 2·30a | 0·54 | 8·30c,d | 9·01d | 8·14c,d | 2·22a | 0·84 | 0·001 | 0·001 | 0·05 |
| 22 : 5 | 0·55a | 0·03 | 1·06b | 1·09b,c | 1·00b | 0·55a | 0·07 | 1·37b,c | 1·48c | 1·39b,c | 0·51a | 0·12 | 0·001 | 0·01 | – |
| 22 : 6 | 5·97a | 0·02 | 8·98b | 9·26b,c | 9·68b,c | 9·93b,c | 0·29 | 9·25b,c | 10·27b,c | 12·20d | 11·78c,d | 0·40 | 0·05 | 0·01 | 0·01 |
| 24 : 1 | 0·21a | 0·01 | 0·44b,c,d | 0·45c,d | 0·40b,c | 0·25a | 0·03 | 0·47c,d | 0·53d | 0·49c,d | 0·33a,b | 0·02 | 0·001 | 0·01 | NS |
| Sum SFA | 7·51a | 0·11 | 16·14b,c | 16·29b,c | 16·29b,c | 15·74b | 0·52 | 21·14b,c,d | 22·30d | 23·67d | 21·54c,d | 0·56 | NS | 0·001 | NS |
| Sum MUFA | 14·39a | 0·41 | 39·37b | 39·49b | 36·50b | 33·21b | 1·48 | 54·20c | 56·85c | 55·42c | 46·62b,c | 1·62 | NS | 0·001 | NS |
| Total PUFA | 12·30a | 0·20 | 24·84b | 25·13b,c | 24·84b,c | 24·65b | 0·78 | 30·01b,c | 32·05b,c | 33·98c | 31·71b,c | 0·73 | NS | 0·001 | NS |
| Sum | 9·61a | 0·10 | 17·03b,c | 17·27b,c | 17·29b,c | 15·45b | 0·56 | 19·35b,c,d | 20·87c,d | 22·50d | 18·32b,c,d | 0·61 | NS | 0·01 | NS |
| Sum | 2·57a | 0·09 | 7·53b | 7·59b,c | 7·30b | 9·06b,c,d | 0·33 | 10·28c,d | 10·80d,e | 11·11d,e | 13·27e | 0·40 | 0·01 | 0·001 | NS |
| Sum fatty acids | 34·21a | 0·72 | 80·35b,c | 80·90b,c | 77·63b | 73·61b | 2·69 | 105·35c | 111·20d | 113·07d | 99·87b,c,d | 2·67 | NS | 0·001 | 0·05 |
| EPA + DHA | 7·28a | 0·23 | 11·73b | 11·95b,c | 12·22b,c | 11·25b | 0·36 | 12·49b,c | 13·63b,c | 15·30c | 12·95b,c | 0·40 | NS | 0·01 | 0·001 |
0_ScYE, 0 g/kg Scizochytrium sp. + yeast extract (control); 1_ScYE, 10 g/kg Scizochytrium sp. + yeast extract; 6_ScYE, 60 g/kg Scizochytrium sp. + yeast extract; 15_ScYE, 150 g/kg Scizochytrium sp. + yeast extract.
a–e Mean values within a row with unlike superscript letters were significantly different (P < 0·05; one-way ANOVA as separated by Tukey's post hoc test). Post hoc tests were not performed when groups had fewer than two cases.
* Heterotrophically produced Scizochytrium sp., spray dried and balanced to 500 g/kg total fat by yeast extract (Alltech Inc.).
† 0_ScYE: 153/0; 1_ScYE: 148·5/10; 6_ScYE: 122·4/60; 15_ScYE: 0/150 g/kg supplemental dietary fish oil/ScYE, respectively.
Experimental diets' crude protein, crude lipid, energy and fatty acid percentage apparent digestibility coefficient (% ADC) in Atlantic salmon (Salmo salar)
(Mean values with their standard errors)
| Diet… | 0_ScYE | 1_ScYE | 6_ScYE | 15_ScYE | |
|---|---|---|---|---|---|
| Supplemental dietary fish oil (g/kg diet) | 153·0 | 148·5 | 122·4 | 0 | |
| Dietary ScYE* (g/kg diet) | 0 | 10 | 60 | 150 | |
| ADCprotein | 87·7 | 87·6 | 87·1 | 87·1 | 0·1 |
| ADClipid | 95·8c | 96·0c | 93·9b | 87·8a | 1·0 |
| ADCenergy | 83·2b | 84·2c | 83·4b | 79·7a | 0·5 |
| ADC14 : 0 | 97·2c | 97·2c | 92·9b | 69·0a | 3·5 |
| ADC16 : 0 | 95·8c | 94·4c | 83·1b | 64·8a | 3·7 |
| ADC 18 : 0 | 95·8c | 95·7c | 93·2b | 84·7a | 1·4 |
| ADC 20 : 0 | 95·8c | 96·0c | 93·9b | 90·8a | 0·6 |
| ADC 22 : 0 | 91·7b | 92·0b | 87·7a | 87·8a | 0·6 |
| ADC 16 : 1 | 99·3b | 99·4b | 99·3b | 98·3a | 0·1 |
| ADC 18 : 1( | 99·1 | 99·3 | 99·3 | 99·3 | 0·0 |
| ADC 20 : 1( | 98·3 | 98·7 | 98·8 | 98·4 | 0·1 |
| ADC 22 : 1( | 97·9 | 98·4 | 98·5 | 98·3 | 0·1 |
| ADC 24 : 1 | 93·8 | 95·0 | 93·9 | – | 0·2 |
| ADC 16 : 2 | 100 | 100 | 100 | – | 0·0 |
| ADC 16 : 3 | 100 | 100 | 100 | – | 0·0 |
| ADC 18 : 2 | 98·8 | 99·0 | 99·0 | 98·9 | 0·0 |
| ADC 20 : 2 | 98·6 | 100 | 100 | – | 0·4 |
| ADC 20 : 4 | 99·3 | 100 | 100 | – | 0·2 |
| ADC 18 : 3 | 99·4 | 99·6 | 99·6 | 99·6 | 0·0 |
| ADC 18 : 4 | 99·8 | 99·9 | 100 | 100 | 0·0 |
| ADC 20 : 3 | 100 | – | 100 | – | 0·0 |
| ADC 20 : 4 | 99·7 | 99·7 | 100 | 100 | 0·1 |
| ADC 20 : 5 | 99·5 | 99·6 | 99·6 | 99·3 | 0·1 |
| ADC 21 : 5 | 100 | 100 | 98·9 | – | 0·3 |
| ADC 22 : 5 | 98·9 | 99·5 | 98·9 | 100 | 0·2 |
| ADC 22 : 6 | 99·0b | 99·1b | 99·1b | 98·1a | 0·1 |
| ADC of total SFA | 96·1c | 95·1c | 86·0b | 67·0a | 3·5 |
| ADC of total MUFA | 98·7a | 99·0b | 99·1b | 99·2b | 0·1 |
| ADC of total PUFA ( | 98·8 | 99·0 | 99·1 | 98·9 | 0·1 |
| ADC of total PUFA ( | 99·3b | 99·4b | 99·4b | 98·6a | 0·1 |
| ADC of total PUFA | 99·2b | 99·3b | 99·3b | 98·7a | 0·1 |
| ADC of total fatty acids | 98·4c | 98·3c | 96·2b | 90·2a | 1·0 |
0_ScYE, 0 g/kg Scizochytrium sp. + yeast extract (control); 1_ScYE, 10 g/kg Scizochytrium sp. + yeast extract; 6_ScYE, 60 g/kg Scizochytrium sp. + yeast extract; 15_ScYE, 150 g/kg Scizochytrium sp. + yeast extract.
a,b,c Mean values within a row with unlike superscript letters were significantly different (P < 0·05; one-way ANOVA as separated by Tukey's post hoc test).
* Heterotrophically produced Scizochytrium sp., spray dried and balanced to 500 g/kg total fat by yeast extract (Alltech Inc.).
Fig. 1.Microarray analyses in the liver of Atlantic salmon (Salmo salar) fed diets with graded ScYE (heterotrophically produced Scizochytrium sp., spray dried and balanced to 500 g/kg total fat by yeast extract) level (0, 1, 6 and 15 %). (A) The numbers of differentially expressed genes detected with microarrays. Genes were selected at signifcance thresholds P < 0·05 and P < 0·01 (values in parentheses). (B) Gene markers of erythrocytes. Data are mean log2-expression ratios with their standard errors for twelve genes: carbonic anhydrase, ammonium transporter RhB, erythroid-specific 5-aminolevulinate synthase (three features), haemoglobins (seven features).
Examples of differentially expressed genes (microarray analyses) in the liver of Atlantic salmon (Salmo salar) fed diets with graded ScYE† inclusion levels (1, 6 and 15 %)‡
| Gene | Function | 1_ScYE | 6_ScYE | 15_ScYE |
|---|---|---|---|---|
| p53 | Cell cycle, apoptosis | 2·0 | 3·5* | 2·5* |
| Myristoylated alanine-rich C kinase-like protein | Cell cytoskeleton | −1·5* | −1·4 | −2·1* |
| Keratin, type I cytoskeletal 50 kDa | Cell cytoskeleton | 3·5* | 3·3 | 2·7 |
| Centrosome-associated protein CEP250 | Cell cytoskeleton | −2·7* | −1·9* | −1·1 |
| SH3 domain-binding glutamic acid-rich-like protein 3 | Cell redox | −1·1 | −1·9 | −2·6* |
| RNA binding motif protein 12 | Cell RNA | 1·8 | 1·6 | 3·6* |
| Synaptic vesicle 2-related protein | Cell secretion | 2·4* | 1·0 | 2·2 |
| Rap guanine exchange factor | Cell signalling | 2·7* | 1·9 | 2·1 |
| cGMP 3,5-cyclic phosphodiesterase subunit δ | Cell signalling | 1·7 | 1·0 | 2·0* |
| Small ubiquitin-related modifier 2 precursor | Cell signalling | −1·7* | −2·1 | −1·8* |
| Sestrin | Cell stress | −5·3 | −3·0* | −1·9 |
| Diencephalon/mesencephalon homeobox protein 1-A | Cell transcription | 1·8* | 2·2 | 1·5 |
| Helicase-like transcription factor | Cell transcription | −1·9* | −1·7* | −2·3 |
| Pancreatic progenitor cell differentiation and proliferation factor | Differentiation | 1·1 | 1·7 | 2·1* |
| Urokinase-type plasminogen activator | Extracellular | 1·0 | −1·8 | −2·3* |
| Collagen 6A3 | Extracellular | −1·9 | −1·7 | −2·5* |
| Complement factor H1 | Immune complement | −1·8* | −1·4 | −1·6* |
| IL-16 | Immune cytokine | −2·2 | 1·0 | −1·8* |
| Lectin precursor | Immune lectin | −3·6* | −2·4* | −1·4 |
| Glutamyl-tRNA(Gln) amidotransferase A, mitochondrial | Metabolism amino acids | −2·9* | −1·6 | −2·2 |
| Metabolism amino acids | 1·7* | 2·8* | 2·8* | |
| Multiple inositol polyphosphate histidine phosphatase 1 | Metabolism inositol | −1·8* | −1·1 | −2·2* |
| Sodium/potassium/calcium exchanger | Metabolism ion | −1·3* | −2·3* | −2·0* |
| Chloride intracellular channel protein 2 | Metabolism ion | −2·1* | −1·5* | −1·8 |
| Malonyl-CoA decarboxylase, mitochondrial | Metabolism lipid | −1·9* | −1·8 | −1·8* |
| Thymus-specific serine protease | Metabolism protease | −2·3* | −1·8 | −1·3 |
| ATP-binding cassette G2 | Metabolism xenobiotic | −2·0* | −1·5* | −1·8 |
| NACHT domain containing | Unknown | 2·3* | 1·9* | 2·1* |
1_ScYE, 10 g/kg Scizochytrium sp. + yeast extract; 6_ScYE, 60 g/kg Scizochytrium sp. + yeast extract; 15_ScYE, 150 g/kg Scizochytrium sp. + yeast extract; 0_ScYE, 0 g/kg Scizochytrium sp. + yeast extract (control); NACHT, NAIP (neuronal apoptosis inhibitory protein), CIITA (MHC class II transcription activator), HET-E (incompatibility locus protein from Podospora anserina) and TP1 (telomerase-associated protein).
* Significantly different values (P < 0·05).
† Heterotrophically produced Scizochytrium sp., spray dried and balanced to 500 g/kg total fat by yeast extract (Alltech Inc.).
‡ Data are fold changes compared with the control treatment (0_ScYE).
Fig. 2.Immunofluorescence analysis of inducible nitric oxide synthase (iNOS) activity (pseudocoloured red) and fluorescence stainiong of F-actin (pseudocoloured green) and goblet cells (pseudocoloured yellow) in Atlantic salmon (Salmo salar) intestines fed variable levels of ScYE (heterotrophically produced Scizochytrium sp., spray dried and balanced to 500 g/kg total fat by yeast extract). Nuclei were stained with DAPI (4′,6-diamidino-2-phenylindole; pseudocoloured blue). (A) The control fish showed normal intestinal morphology and a low iNOS activity. Distribution and number of goblet cells (arrow) and apical F-actin (arrow head) in the enterocytes appeared normal. (B) Intestines from fish fed a diet with 1 % ScYE showed a normal morphology with respect to the number of goblet cells (arrow) and apical F-actin (arrow head), but slightly more intense apical iNOS activity in the enterocytes. (C) In fish fed 6 % ScYE we observed an increased iNOS activity in the submucosa (arrow head). (D) In the villus of fish fed 6 % ScYE apical iNOS was more intense (arrow head) and some enterocytes and goblet cells also showed increased iNOS staining. (E) Inclusion levels of 15 % ScYE revealed similar iNOS activity in the submucosa (arrow head), but the villus (F) appeared quite different from the control fish with increased number of swollen goblet cells (arrow), more intense F-actin staining (arrow head) and higher iNOS activity. White bar in Fig. 2(A) = 20 μm. WGA, wheat germ agglutinin.