984 resultados para Fish meal


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[EN]The effect of dietary inclusion of sea urchin meal (Diadema antillarum) on growth and feed utilization was investigated in a growth trial with red porgy (Pagus pagrus) of 208g initial body weight, during 6 month feeding period. High quality fish meal and fish oil diet was used as a control (Diet C); urchin meal was included at 8% and 16% dietary levels (EM8 and EM16). Compared to the control diet higher values for absolute and relative final weight and SGR were obtained either for fish fed EM8 and EM16 diets; for the latter diets values for FCR and final HSI were significantly smaller respect to those for the control diets. No differences were found among diets for the total feed intake, VSI and K factor. Obtained results indicate the suitability of the sea urchin meal as alternative ingredient in diets for the red porgy, improving fish growth and feed utilization. More studies are being done at the moment in red porgy and other fish species in order to better determine the optimum dietary levels taking into account other important culture and quality parameters.

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[EN]The inclusion of two different crab meals in diets on fillet quality parameters was investigated in a six month growth trial with red porgy (Pagus pagrus). A high quality fish meal and fish oil diet was used as a control (Diet C). Fish meal protein in the control diet was replaced by increasing levels of protein from a river crab meal (Procamburus clarkii) (CR) and a marine crab meal (Chaceon affinis) (CM) at 10% and 20% each of them. The inclusion of both crab meals in diets, either at 10% and 20% substitution levels, did not affect the texture quality parameters of flesh except for the adhesiveness, where animal fed on CR20 showed the smallest value respect to those fed the Diet C. Compared to the control fish, a reduction of the fillet lipid oxidation indicated by the Tbars index was observed for fish fed both crab meal based diets, at the higher inclusion level (20%). Increasing dietary levels of the marine crab meal showed an increment of the monoenoicos, n-9 and oleic fatty acid content in the fillets. Results indicate that both crab meals used in present study are suitable as alternative ingredients for red porgy diets in terms of fish flesh quality.

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[EN] The effect of dietary inclusion of two type of crab meal on growth, feed utilization and skin coloration performance was investigated in a growth trial with red porgy (Pagrus pagrus) of 233g initial body weight, during 6 month feeding period. High quality fish meal and fish oil diet was used as a control (Diet C). Protein of fish meal in the control was replaced by increasing dietary levels of protein derived from a river crab meal (Procamburus clarkii) (CR) and a marine crab meal (Chaceon affinis) (CM) at 10% and 20% each of them. Regarding growth results, fish fed the CM20 diet showed the highest values in absolute final weight and percent of the initial weight. For animals fed the crab meal based diets, the colour result was better than that of fish fed the control one, showing skin redness similar to that of the wild specimens. For both ingredients, increasing dietary inclusions were accompanied for an increment of the colour saturation, being in this case the obtained value for the CR meal higher than those for the CM meal. Present results indicate that crab meals used in this study are suitable as partial replacers for fish meal in diets for the red porgy.

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[EN] The expression and regulation of intestinal oligopeptide transporter (PepT)-1 when vegetable sources are used as a substitute for fish meal in the diet of marine fish has not yet been explored. In the present study, as part of our ongoing work on elucidating PepT1 gene expression in relation to different dietary treatments, we have now isolated and deposited in Genbank database (accession no. GU733710) a cDNA sequence representing the PepT1 in the sea bream (Sparus aurata). The ?de novo? prediction of the three-dimensional structure of PepT1 protein is presented. We also analyzed diet-induced changes in the expression of PepT1 mRNA via real-time RT-PCR using the standard curve method. Sea bream were fed for 140 days with one of the following four diet formulations (43% protein/21% lipid): a control fast growth-promoting diet (C), and three diets with the same formulation but in which 15% of the fish meal was substituted by protein concentrates either from lupine (LPC), chick pea (CPC), or green pea (PPC). Fish fed PPC had significantly (p < 0.05) lower levels of PepT1 transcripts in the proximal intestine than the controls, whereas PepT1 transcript levels in fish fed LPC or CPC were not significantly different from the controls. Although growth was similar between fish fed with different diets during the first 72 days of feeding, growth of the fish fed with PPC was reduced during the second part of the trial and was significantly (p < 0.05) lower than fish fed LPC and CPC diets by the end of the experiment. Correlation between these results and fish growth performances highlights that the intestinal PepT1 mRNA level may serve as a useful marker of the dietary protein quality and absorption efficiency.

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The aquafeed use of raw plant materials, as protein and lipid sources, has been considered and approved as a sustainable alternative to fish products (fish meal and oils) because the current trend to use high-lipid diets has been shown to induce undesirable increase in fat depots or further physiological alterations, such as induction of oxidative stress. In the aquaculture perspective, the addition of natural substances with antioxidant properties is an emerging strategy for protecting biological systems and foodstuffs from oxidative damage. Among natural substances, hydroxytyrosol (HT) and caffeic acid (CA) have attracted considerable attention as food antioxidant additives and modulators of physiological and molecular pathways involved in energy metabolism and adiposity. The aim of this study was to evaluate the effects of CA and HT on lipid metabolism and oxidative stress of rainbow trout (Oncorhynchus mykiss). In vitro results showed the potential anti-obesogenic effects of the compounds CA and HT on the adipose tissue of the rainbow trout. To support these data, in vitro assays performed (MTT, ORO, immunofluorescence) resulted in accordance among them; only results from proliferating cell nuclear antigen (PCNA) assay were not significant. In vivo results showed a possible anti-obesogenic effect of CA in liver and HT in adipose tissue. Regarding oxidative stress, we could hypothesize a possible anti-oxidant role of CA in liver.

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Los objetivos principales de esta Tesis Doctoral fueron estudiar en 4 ensayos los efectos a) del procesado del maíz y la inclusión en los piensos de ingredientes de alta calidad como harina de pescado o fuentes de lactosa en lechones blancos b) inclusión en el pienso de diferentes productos derivados del haba de soja, con diferente contenido de proteína bruta (PB), tamaño de partícula y origen en lechones blancos e ibéricos y c) inclusión en el pienso de lechones ibéricos de ingredientes de alta calidad; forma de presentación del pienso y la duración del suministro del pienso prestárter sobre los parámetros productivos, la digestibilidad de los nutrientes, y las características morfológicas de la mucosa digestiva en lechones blancos e ibéricos recién destetados. En el experimento 1, los efectos de la complejidad del pienso prestárter sobre los parámetros productivos y la digestibilidad total aparente (TTAD) de los nutrientes fueron estudiados en lechones blancos recién destetados. Se utilizaron 10 tratamientos experimentales como resultado de 5 piensos prestárter (21 a 41 d de edad) y 2 piensos estárter (42 a 62 d de edad). Los piensos prestárter consistieron en un control negativo que incluía 40% de maíz crudo, 4% de harina de pescado y 7% de lactosa, un control positivo que incluía 40% de maíz cocido, 10% de harina de pescado, y 14% de lactosa, y 3 piensos adicionales con similares ingredientes que el pienso control positivo pero en los que a) 40% de maíz cocido fue sustituido por el mismo porcentaje de maíz crudo, b) se redujo el nivel de harina de pescado del 10 al 4%, y c) se redujo el nivel de lactosa del 14 al 7%. Cada tratamiento se replicó 6 veces (6 lechones/departamento). De 42 a 62 d de edad, la mitad de cada uno de los 5 piensos prestárter recibió un pienso estándar compuesto por harina de soja- maíz crudo y manteca y la otra mitad un pienso con similar perfil nutricional pero incluyendo un 20% de maíz cocido, 5% de harina de pescado, 1.3% de lactosa, 2% de concentrado de proteína de soja obtenido por fermentación y 1% de aceite de soja en lugar de harina de soja, maíz sin procesar y manteca. La complejidad del pienso no afectó a los parámetros productivos en ninguno de los periodos estudiados, pero el índice de diarreas durante la fase prestárter fue mayor en los lechones que recibieron el pienso control negativo que en los alimentados con cualquiera de los otros piensos (P<0.05). A los 30 días de edad (piensos prestárter), la digestibilidad de la materia orgánica (MO) y de la energía bruta (EB) fue menor (P<0.001) en los lechones que consumieron el pienso control negativo que en los lechones que consumieron cualquiera de los otros piensos. Sin embrago, la digestibilidad fecal de la PB no fue afectada. A los 50 días de edad (piensos estárter), la digestibilidad de los nutrientes fue similar en ambos piesnsos. Se concluye que la utilización de niveles elevados de ingredientes de alta calidad en los piensos no mejora los parámetros productivos de los lechones blancos en ninguno de los períodos estudiados. De 21 a 41 días de edad, el índice de diarreas se redujo y la digestibilidad de los nutrientes aumentó con la utilización de piensos de mayor calidad. Por lo tanto, la utilización de piensos con niveles elevados de ingredientes de calidad para reducir problemas digestivos y por lo tanto, mejorar los parámetros productivos podría estar justificada en algunos casos. En el experimento 2, se estudiaron los efectos de la inclusión en el pienso de harina de soja con diferente contenido de PB (44 vs. 49 % PB), la micronización de la harina de soja de alta proteína (AP-HS; 49% PB) y la utilización de concentrado de proteína de soja (CPS; 65% PB) sobre los parámetros productivos y la TTAD de los nutrientes en lechones blancos recién destetados de 28 a 63 días de edad. De 28 a 49 días de edad (fase I), hubo un pienso control positivo con un 10% de CPS, un pienso control negativo con 14.8% de harina de soja estándar (R-HS; 44% de PB) y otros 4 piensos que incluían 13.3% de AP-HS de origen Americano (USA) o Argentino (ARG) y molidas groseramente (980 μm) o micronizadas (80 μm). Cada tratamiento se replicó 8 veces (6 lechones/departamento). De 49 a 63 días de edad (fase II), todos los lechones recibieron un pienso comercial común en forma de harina. En el global de la fase I, el tratamiento experimental no afectó a ninguno de los parámetros productivos estudiados. Sin embargo, de 28 a 35 días de edad, los lechones alimentados con AP-HS micronizadas tuvieron un mejor índice de conversión (IC; 1.11 vs. 0.98; P<0.05) que los alimentados con AP-HS molidas groseramente. También, de 35 a 42 días de edad, los lechones que recibieron el pienso con AP-HS micronizada tendieron (P=0.08) a consumir más pienso que los lechones que consumieron el pienso con AP-HS molida. Durante la fase II (49 a 63 días de edad), cuando todos los lechones recibieron un pienso común, no se observaron diferencias en productividad de los lechones debido al tratamiento previo. En general, la digestibilidad de los nutrientes a los 35 días de edad fue mayor para los lechones que consumieron CPS que para los lechones que consumieron R-HS con los lechones que consumieron AP-HS en una posición intermedia. La digestibilidad de la PB fue mayor (P≤0.01) para el pienso que contenía CPS que para el promedio de los 5 tratamientos en base a HS. También, la digestibilidad de la MO y de la materia seca (MS) fue mayor para el pienso que contenía AP-HS micronizada o molida groseramente que para el pienso que contenía R-HS. La micronización de la AP-HS no tuvo efecto alguno sobre la digestibilidad de los nutrientes. Se concluye que cuando el CPS sustituye en el pienso a R-HS, la digestibilidad de la PB aumenta pero no tiene efecto alguno sobre los parámetros productivos. La utilización de AP-HS en sustitución de R-HS en el pienso mejora la digestibilidad de los nutrientes pero no afecta a los parámetros productivos. La utilización de harina de soja micronizada en los piensos mejora la eficiencia alimenticia durante la primera semana post-destete pero no tiene efecto alguno sobre la digestibilidad de los nutrientes. En general, la inclusión de productos derivados del haba de soja con un alto valor añadido (CPS o AP-HS) en el pienso presenta pocas ventajas en términos productivos al uso de AP-HS en lechones blancos recién destetados. En el experimento 3, se estudiaron los mismos productos de soja y piensos similares al experimento 2 en lechones ibéricos recién destetados. Además de los parámetros productivos y la TTAD de los nutrientes, en este ensayo se estudió también la digestibilidad ileal aparente (AID) de los nutrientes, así como las características histológicas y morfometría de la mucosa ileal. Cada uno de los 6 tratamientos fue replicado 6 veces (6 lechones/departamento). De 30 a 51 días de edad la fuente de harina de soja no afectó a los parámetros productivos, pero el índice de diarreas fue mayor (P<0.001) y la TTAD y AID de los nutrientes menor en los lechones alimentados con R-HS que en los alimentados con CPS o AP-HS. Sin embargo, no se encontró ninguna diferencia para éstos parámetros entre los piensos que contenían AP-HS y CPS. La TTAD de la MO (P=0.07) y de la EB (P=0.05) tendieron a ser mayores en los piensos basados en AP-HS micronizada que en los basados en AP-HS molida. La TTAD de la EB tendió (P<0.05) a ser mayor para la AP-HS de origen USA que para la AP-HS de origen ARG. Los lechones que consumieron R-HS presentaron villi de menor longitud (P<0.01) que los lechones que consumieron AP-HS o CPS, pero no se observaron diferencias en el caso de los lechones que recibieron los piensos que contenían AP-HS o CPS. Se concluye que la inclusión de AP-HS o CPS en el pienso en sustitución de R-HS reduce el índice de diarreas y mejora la digestibilidad de los nutrientes y las características morfológicas del íleon sin afectar a los parámetros productivos. La utilización de piensos basados en productos derivados del haba de soja con mayor valor añadido (CPS o AP-HS) en sustitución de la R-HS, mejora la TTAD de todos los nutrientes y reduce el índice de diarreas si llegar afectar a los parámetros productivos. En el experimento 4 se estudiaron los efectos del contenido de PB y la complejidad del pienso, la presentación física y la duración del suministro del pienso prestárter sobre los parámetros productivos y la TTAD de los nutrientes en lechones ibéricos recién destetados de 28 a 63 días de edad. Hubo 12 tratamientos experimentales con 2 tipos de pienso (AC; calidad alta y BC: calidad media), 2 presentaciones del pienso (gránulo y harina) y 3 duraciones de suministro del pienso prestárter (7, 14 y 21 días). Desde los 7, 14 y 21 días de experimento (dependiendo del tratamiento), hasta los 35 días, todos los lechones recibieron un pienso comercial en forma de harina. Cada uno de los tratamientos fue replicado 3 veces (6 lechones/departamento). En el global del experimento, la ganancia media diaria (GMD; P<0.05) y el consumo medio diario (CMD; P<0.01) fue menor en los lechones que recibieron el pienso AC que para los que recibieron el pienso de BC, si bien el IC no se vio afectado. La granulación del pienso prestárter no afectó a los crecimientos pero mejoró la eficiencia alimenticia. La utilización del pienso prestárter de 0 a 21 días de prueba mejoró el IC (P<0.05), pero redujo la GMD (P<0.01) en comparación con la utilización de éste pienso solo durante 7 o 14 días. El índice de diarreas tendió a ser mayor (P=0.06) en los lechones alimentados con los piensos AC que en los alimentados con los piensos BC. Asimismo, el índice de diarreas fue superior en los lechones que recibieron el pienso en gránulo que los que los recibieron en harina (P<0.001). Además, el índice de diarreas fue superior en los lechones que recibieron el pienso prestárter durante 14 o 21 días que en los que lo recibieron solo durante 7 días (P<0.01). De 28 a 49 días de edad, la GMD y el IC no se vieron afectados por la complejidad del pienso, pero la presentación en gránulo o el aumento en la duración de suministro del pienso prestárter mejoró el IC (P<0.01). También, en este periodo el índice de diarreas fue mayor en lechones alimentados con piensos granulados que aquellos alimentados con piensos en harina. Asimismo, fue superior para los lechones alimentados con el pienso prestárter durante 14 o 21 días que para los que recibieron éste pienso solo durante 7 días (P<0.01). De 49 a 63 días de edad, los lechones que previamente habían recibido piensos BC crecieron más que los que recibieron piensos AC (P<0.001). Asimismo, los lechones que recibieron el pienso prestárter durante 21 días comieron (P< 0.001) y crecieron menos (P<0.05) presentando una peor eficacia alimenticia (P<0.05) que los lechones que lo recibieron solo durante 7 14 días. La digestibilidad de la MO fue mayor en los lechones alimentados con los piensos AC que en los alimentados con piensos BC (P<0.05). La granulación del pienso mejoró la digestibilidad de los principales nutrientes. Los piensos prestárter AC mejoraron la digestibilidad de los nutrientes pero no la eficiencia alimenticia en lechones ibéricos de 28 a 63 días de edad. La granulación del pienso mejoró la eficiencia alimenticia. El aumento del suministro del pienso prestárter de 7 a 21 días mejoró la eficiencia alimenticia pero redujo la GMD. Por lo tanto, la utilización de piensos granulados de alta calidad durante el periodo prestárter es recomendable en lechones ibéricos, pero solo durante la primera semana post-destete. ABSTRACT The main objectives of this PhD Thesis were to study the effects of a) heat processing (HP) of corn and inclusion of high quality ingredients of animal origin such as fish meal (FM) and dried milk products in the diet, b) inclusion of different soy products varying in crude protein (CP) content, particle size, and origin of the beans in diets for conventional white and Iberian weanling pigs, and c) effects of ingredient quality, feed form, and duration of supply of the phase I diets on growth performance, nutrient digestibility, and intestinal morphology of weanling pigs. In experiment 1, the effect of diet complexity on total tract apparent digestibility (TTAD) and growth performance was studied in piglets from 21 to 62 d of age. There were 10 experimental treatments which resulted from the combination of 5 phase I (21 to 41 d of age) and 2 phase II (42 to 62 d of age) diets. The 5 phase I diets consisted of a negative control diet that contained 40 % raw corn, 4% FM, and 7% lactose (LAC); a positive control diet that contained 40 % HP corn, 10% FM, and 14% LAC, and 3 extra diets that used similar ingredients to those of the positive control diet but in which a) 40% of HP corn was substituted by raw corn, b) 4% FM rather than 10% FM, and c) 7% LAC instead of 14% LAC were included in the diet. Each treatment was replicated 6 times (6 pigs per pen). From 42 to 62 d of age, half of the pens of each of the 5 phase I treatments received a standard soybean meal (SBM)–native corn–lard diet wheras the other half received a diet with similar nutrient profile but that included 20% HP corn, 5% FM, 1.3% lactosa, 2% fermented soy protein concentrate, and 1% soybean oil in substitution of variables amounts of non-processed corn, SBM, and lard. Dietary treatment did not affect piglet performance at any age, but the incidence of post-weaning diarrhea (PWD) was higher during phase I in piglets fed the negative control diet than in piglets fed any of the other diets (P<0.05). At 30 d of age (phase I diets), the TTAD of organic matter (OM) and gross energy (GE) was lower (P<0.001) in pigs fed the negative control diet than in pigs fed the other diets but CP digestibility was not affected. At 50 d of age (phase II diets), dietary treatment did not affect TTAD of any dietary component. It is concluded that the use of high quality ingredients at high levels in the diet did not improve growth performance of piglets at any age. From 21 to 41 d of age, PWD was reduced and nutrient digestibility was increased in pigs fed the more complex diets. Consequently, the inclusion of high levels of high quality ingredients in piglet diets to maximize growth performance might not be justified under all circumstances In experiment 2, the effect of CP content (44 vs. 49 % CP) of SBM, micronization (fine grinding) of the high CP SBM (HP-SBM; 49% CP), and soy protein concentrate (SPC; 65% CP) on TTAD and growth performance was studied in conventional white piglets from 28 to 63 d of age. From 28 to 49 d of age (phase I), there was a positive control diet that included 6.5% CP from SPC and a negative control diet that supplied the same amount of CP as regular SBM (R-SBM; 44% CP) of Argentina (ARG) origin. The other 4 diets included the same amount of dietary CP from 2 sources of HP-SBM (USA or ARG origin), either ground (990 μm) or micronized (60 μm). Each treatment was replicated 8 times (6 pigs per pen). From 49 to 63 d of age (phase II), all pigs were fed a common commercial starter diet. For the entire phase I, type of soy product included in the diet did not affect growth performance of the pigs. However, from 28 to 35 d of age pigs fed the micronized HP-SBM had better feed conversion ratio (FCR; 0.90 vs. 1.01; P<0.05) than pigs fed the ground HP-SBM. Also, from 35 to 42 d of age, average daily feed intake (ADFI) tended to be higher (P=0.08) for pigs fed the micronized HP-SBM than for pigs fed the ground HP-SBM. During phase II, when all the pigs received the same diet, no differences among treatments were observed. In general, the TTAD of nutrients at 35 d of age was higher for the SPC than for the R-SBM diet with the HP-SBM diets being intermediate. The TTAD of CP was higher (83.8% vs. 81.9%; P≤0.01) for the SPC diet than for the average of 5 SBM containing diets. Also, the digestibility of OM and dry matter (DM) was higher (P<0.01) for the HP-SBM, either ground or micronized, than for the R-SBM diet. Micronization of the HP-SBM did not affect nutrient digestibility. It is concluded that when R-SBM was substituted by SPC, CP digestibility was improved but no effects on growth performance were observed. The use of HP-SBM in substitution of R-SBM in the diet improved nutrient digestibility but did not affect piglet performance. The inclusion of micronized HP-SBM in the diet improved FCR during the first week post-weaning but did not affect TTAD of nutrients. Therefore, the inclusion of added value soy products (SPC or micronized SBM) in the diet presents little advantage in terms of growth performance over the use of HP-SBM in pigs weaned at 28 d of age. In experiment 3, the effects of the same sources of soy protein used in experiment 2 on TTAD and growth performance of crossbreed Iberian pigs from 30 to 61 d of age were studied. In addition, the apparent ileal digestibility (AID) of nutrients and mucosa ileum morphology were also determined. Dietary treatment did not affect growth performance of the pigs at any age but from 30 to 51 d of age (phase I diets), PWD was higher (P<0.001) and the TTAD and AID of all nutrients were lower for pigs fed the R-SBM diet than for pigs fed the HP-SBM or the SPC diets. However, no differences between the HP-SBM and the SPC containing diets were detected for digestibility of any dietary component. The TTAD of OM (P=0.07) and GE (P=0.05) tended to be higher for the micronized HP-SBM than for the ground HP-SBM and that of GE was higher (P<0.05) for the USA meal than for the ARG meal. Pigs fed R-SBM had lower villus height (P<0.01) than pigs fed HP-SBM or SPC but no differences in ileal mucosal morphology were detected between SPC and HP-SBM containing diets. It is concluded that feeding the HP-SBM or SPC in substitution of R-SBM reduced PWD and improved nutrient digestibility and ileal morphology in piglets as compared with feeding the R-SBM, but had no effect on growth performance. The inclusion in the diet of added value soy products (micronized SBM or SPC) in substitution of the R-SBM increased the TTAD of all nutrients and reduced PWD but had no advantage in terms of growth performance over the use of ground HP-SBM. In experiment 4, the effect of CP content and ingredient complexity, feed form, and duration of feeding of the phase I diets on growth performance and TTAD of nutrients were studied in Iberian pigs from 28 to 63 d of age. There were 12 dietary treatments with 2 type of feeds (HQ; higher quality and LQ; medium quality), 2 feed forms (pellets vs. mash), and 3 durations of supply (7, 14, and 21 d) of the phase I diets. From d 7, 14, or 21 (depending on treatment) to d 35 of experiment, all pigs received a common diet in mash form. Each treatment was replicated 3 times (6 pigs/pen). For the entire experiment, average daily gain (ADG; P<0.05) and ADFI (P<0.01) were lower with the HQ than with the LQ phase I diets but FCR was not affected. Pelleting of the phase I diets did not affect ADG but improved FCR (P<0.01). Feeding the phase I diets from d 0 to 21 improved FCR (P<0.05) but decreased ADG (P<0.01) as compared with 7 or 14 d of feeding. Post-weaning diarrhea tended to be higher (P=0.06) for pigs fed the HQ diets than for pigs fed the LQ diets and for pigs fed pellets than for pigs fed mash (P<0.001). Also, PWD was higher for pigs fed the phase I diet for 14 or 21 d than for pigs fed this diet for 7 d (P<0.01). From d 0 to 21, ADG and FCR were not affected by feed quality but feeding pellets or increasing the duration of feeding the phase I diets improved FCR (P<0.01). Also, in this period PWD was higher with pellets than with mash and for pigs fed the phase I diets for 14 or 21 d than for pigs fed this diet for only 7 d (P<0.01). From d 21 to 35, pigs previously fed the LQ diet had higher ADG than pigs fed the HQ phase I diets (P<0.001). Also, pigs that were fed the phase I diets for 21 d had lower ADG (P<0.05) and ADFI (P< 0.001) and poor FCR (P<0.05) than pigs fed these diets for 7 or 14 d. Organic matter digestibility was higher for pigs fed the HQ phase I diets than for pigs fed the LQ phase I diets (P<0.05). Pelleting improved TTAD of all nutrients (P<0.01). It is concluded that HQ phase I diets increased TTAD of nutrients but not feed efficiency of Iberian pigs from d 28 to 63 d of age. Also, pelleting improved nutrient digestibility and feed efficiency. Increasing the duration of supply of the phase I diets from 7 to 21 d improved feed efficiency but reduced ADG. Therefore, the use of LQ phase I diets in pellet form for no more than 7 d after weaning is recommended in Iberian pigs.

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To more precisely formulate feed and predict animal performance, it is important to base both the recommendations and feed formulations on digestible rather than total amino acid contents. Most published data on the digestibility of amino acids in feed ingredients for poultry are based on excreta digestibility. Ileal digestibility is an alternative and preferred approach to estimate amino acid availability in feed ingredients. Both methodologies are described and assessed. In addition, the differences between apparent and standardised (in which corrections are made for basal endogenous losses) digestible amino acid systems are discussed. The concept of a standardised digestibility system as a mean of overcoming the limitations of apparent digestibility estimates is proposed. In this context, different methodologies for the determination of basal endogenous amino acid losses are discussed. Although each methodology suffers from some limitations and published data on endogenous losses at the ileal level in growing poultry are limited, averaged data from repeated experiments using the 'enzymatically hydrolysed casein' method are considered as the best measure of basal losses. Standardised ileal amino acid digestibility values of 17 feed ingredients commonly used in broiler nutrition are presented including grains (barley, corn, sorghum, triticale, wheat), grain by-products (wheat middlings, rice pollard), plant protein sources (soybean meal, canola meal, corn gluten meal, cottonseed meal, lupins, peas/beans, sunflower meal), and animal by-products (feather meal, fish meal, meat and bone meal). This comprehensive set of the ileal amino acid digestibility of feed ingredients in broiler nutrition may serve as a basis for the establishment of the system in broiler feeding and for further research.

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The apparent ileal digestibility coefficients of amino acids in 107 samples representing 22 food ingredients were determined using 6-week-old broiler chickens. The ingredients assayed included five cereals ( barley, maize, sorghum, triticale and wheat), two cereal by-products ( rice polishings and wheat middlings), four oilseed meals ( canola, cottonseed, soyabean and sunflower meals), full-fat canola, maize gluten meal, four grain legumes ( chickpeas, faba beans,field peas and lupins) and five animal protein sources ( blood, feather,fish, meat and meat and bone meals). The mean ileal digestibility coefficients of amino acids in wheat and maize were higher than those in sorghum, triticale and barley. However, variations observed in individual amino acid digestibilities among samples within cereal type were greater than those determined between cereals. Threonine and lysine were the least digestible indispensable amino acids in the five cereals evaluated. The most digestible indispensable amino acid was phenylalanine in wheat and, leucine in maize and sorghum. In the case of the wheat middlings and rice polishings, threonine was the least digestible indispensable amino acid and arginine was the best digested. In the oilseed meals assayed, amino acid digestibility was highest for soya-bean and sunflower meals, intermediate for canola meal and lowest for cottonseed meal. Ileal digestibility coefficients of amino acids in lupins were found to be slightly lower than those in soya-bean meal. The amino acid digestibilities of field peas, faba beans and chickpeas were considerably lower than those of lupins. Digestibility of arginine was the highest and that of threonine was the lowest of the indispensable amino acids in oilseed meals and grain legumes, except in cottonseed meal. Lysine was the least digestible amino acid in cottonseed meal. In the animal protein sources assayed, digestibility coefficients of amino acids in blood meal were high, intermediate in fish meal, and low in meat meal, meat and bone meal and feather meal. Variation in amino acid digestibility coefficients determined for blood meal samples was small. However, wide variations in amino acid digestibilities were observed for other animal protein sources, highlighting significant batch-to-batch differences. In particular, marked variations were determined for meat meal and meat and bone meal samples. Cystine was the least digested amino acid in animal protein meals, with the exception of blood meal in which isoleucine had the lowest digestibility. The limitations of using apparent digestibility values in diet formulations and the concept of the standardized digestibility system to overcome these limitations are discussed.

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Reliable values of total and digestible tryptophan in components of feed formulation matrices are needed because tryptophan is often the third limiting amino acid in practical poultry diets. However, tryptophan is oxidatively destroyed during acid hydrolysis in routine amino acid analysis and its determination requires a separate analytical procedure. The variability in contents and apparent ileal digestibility for 6-week-old broiler chickens of tryptophan in 74 samples representing 24 feedstuffs are presented in this paper. The average ileal tryptophan digestibility coefficient in wheat was 0.83, in sorghum and triticale 0.75, maize 0.71, soybean meal 0.84, sunflower meal 0.81, canola meal 0.78 and cottonseed meal 0.75. Among the grain legumes, tryptophan in lupins was better digested than that in chickpeas, fababeans and field peas. Among the animal protein meals, the tryptophan digestibility coefficients in fish meal (0.77) and blood meal (0.84) were substantially higher than those in meat meal (0.64), meat-and-bone meal (0.63) and feather meal (0.52). Marked variations in tryptophan digestibility were also observed among samples of fish meal, meat-and-bone meal and meat meal, highlighting significant batch-to-batch differences. For most feedstuffs, considerable variability was observed in the tryptophan concentrations, but such variations were not reflected in digestibility coefficients. (c) 2006 Society of Chemical Industry.

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Protein quality of carp diets was assessed by five methods: 1. True digestibility, true NPU, BV (as percentage) and PER were determined for approximately iso-energetic diets containing ca.38% protein from 4 different sources. Fish meal gave values of 94.0, 72.5, 77.0, and 1.21 respectively; egg 93.0, 65.4, 70.3, 1.26; Pruteen 68.4, 63.6, 68.40, 1.36; and Casein 91.0, 56.90, 62.5, 1.33. 2. Blood urea were determined and found to be significantly increased with increasing protein concentration in the diet. 3. Ammonia excretion rate was determined; it increased with a decline in protein quality, being greater on groundnut, rapeseed meal, and sunflower diets than on fishmeal, cottonseed meal, and pruteen. 4. Protein sources were incubated in vitro with digestive fluids of fish. Protein digestibilities for fishmeal diets containing 14 and 27% protein were 90.2 and 93.0% respectively; casein (18 and 36%), 91.5 and 93.2%; soybean (10 and 20%), 84.2 and 85.3% ; sunflower (8 and 16%), 64.2 and 66.1%; and fish meal plus soybean meal (ca. 18.2%) 86.5. 5. Plasma free amino acids were individually determined at 0, 6, 24 and 48 h after force-feeding diets containing 15 and 30% protein from six different sources. Total free AA were highest at 24 h for casein and fishmeal, and at 48 h for egg, soybean, rapeseed and sunflower. The 24 h essential amino acid indices (EAAI) for the six diets at 15% protein were, in the same order, 93.0, 100, 100, 86.4, 62.4, and 97.2. At 30% protein, the 24 h EAAI were 78.5, 84.3, 100, and 83.8 for casein, fishmeal, egg, and rapeseed respectively.

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The Region comprises three sub-regions (FAO Statistical Areas) with very different characteristics. The South Pacific includes the vast and virtually unpopulated Southern Ocean surrounding the Antarctic. It has the world’s largest fisheries off Peru and Chile and some of the world’s best managed fisheries in Australia and New Zealand. The Region has over 27% of the world’s ocean area and over 98% of the Region’s total area of 91 million km2 is ‘open ocean’. The Region contains less than 5% of the global continental shelf area and only a fraction of this area is covered by three large marine ecosystems (the New Zealand Shelf, the Humboldt Current and the Antarctic large marine ecosystems (LMEs). The Humboldt Current System (HCS) is the world’s largest upwelling which provides nutrients for the world’s largest fisheries. The Region also has a high number of seamounts. The marine capture fisheries of the Region produce over 13 million tons annually and an expanding aquaculture industry produces over 1.5 million tons. Peru’s anchoveta fishery provides about half the world’s supply of fish meal and oil, key ingredients of animal and fish feeds. El Niño Southern Oscillations (ENSOs), known more generally as El Niños, can substantially change the species composition of the key small pelagic catches (anchovy, sardine, horse mackerel and jack mackerel) causing production to fluctuate from about 4-8 million tons. Partly due to the lack of upwelling and shelf areas, fisheries production in the Southern Ocean and Area 81 is relatively small but supports economically important commercial and recreational fisheries and aquaculture in New Zealand and in New South Wales (Australia). Krill remains a major underexploited resource, but is also a keystone species in the Antarctic food web. The Region is home to numerous endangered species of whales, seals and seabirds and has a high number of seamounts, vulnerable ecosystems fished for high-value species such as orange roughy.

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The Region comprises three sub-regions (FAO Statistical Areas) with very different characteristics. The South Pacific includes the vast and virtually unpopulated Southern Ocean surrounding the Antarctic. It has the world’s largest fisheries off Peru and Chile and some of the world’s best managed fisheries in Australia and New Zealand. The Region has over 27% of the world’s ocean area and over 98% of the Region’s total area of 91 million km2 is ‘open ocean’. The Region contains less than 5% of the global continental shelf area and only a fraction of this area is covered by three large marine ecosystems (the New Zealand Shelf, the Humboldt Current and the Antarctic large marine ecosystems (LMEs). The Humboldt Current System (HCS) is the world’s largest upwelling which provides nutrients for the world’s largest fisheries. The Region also has a high number of seamounts. The marine capture fisheries of the Region produce over 13 million tons annually and an expanding aquaculture industry produces over 1.5 million tons. Peru’s anchoveta fishery provides about half the world’s supply of fish meal and oil, key ingredients of animal and fish feeds. El Niño Southern Oscillations (ENSOs), known more generally as El Niños, can substantially change the species composition of the key small pelagic catches (anchovy, sardine, horse mackerel and jack mackerel) causing production to fluctuate from about 4-8 million tons. Partly due to the lack of upwelling and shelf areas, fisheries production in the Southern Ocean and Area 81 is relatively small but supports economically important commercial and recreational fisheries and aquaculture in New Zealand and in New South Wales (Australia). Krill remains a major underexploited resource, but is also a keystone species in the Antarctic food web. The Region is home to numerous endangered species of whales, seals and seabirds and has a high number of seamounts, vulnerable ecosystems fished for high-value species such as orange roughy.

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Groundnut cake (GNC) meal is an important source of dietary protein for domestic animals with a cost advantage over the conventional animal protein sources used in aquaculture feed production. It would be useful to evaluate the effects of GNC processing methods on the density and nutritional values of processed GNC meals. The use of processed GNC meals in the diets of Clarias gariepinus fingerlings was evaluated. Seven iso-proteic and iso-caloric diets were formulated, replacing fish meal with roasted and boiled GNC meals, each at three inclusion levels of 30%, 35%, and 40%. Diet I is 100% fishmeal, Diet II is 30% roasted GNC meal, Diet III is 35% roasted GNC meal, Diet IV is 40% roasted GNC meal, Diet V is 30% boiled GNC meal, Diet VI is 35% boiled GNC meal and Diet VII is 40% boiled GNC meal. Results showed that the crude protein content of GNC meals was 40.5% and 40.8% in boiled and roasted GNC meals respectively; the lower protein content for processed GNC meals might be due to heat denaturation of the seed protein, with boiled GNC meal being more adversely affected. The mean weight gain of fingerlings fed roasted GNC meals ranged between 5.29 – 5.64 while for boiled GNC meals, it was between 4.60 – 5.22. Generally, fish performed better when fed diets containing roasted GNC meals, than boiled GNC meals, and compared favorably with fish fed fish meal based diet. Body mass increase, total feed increase, protein efficiency ratio and specific growth rate by C. gariepinus fingerlings in all diets, showed no significant differences, suggesting that processed GNC meals could partially replace diets for C. gariepinus fingerlings without adverse consequences. This study showed that processed GNC meals could partially replace fish meal up to 30% without significantly influencing fingerling growth and health. It is recommended that the use of fish meal as the main basal ingredient for fingerlings could be discontinued, since GNC meal was a cheaper alternative, and could replace fish meal up to 35%, without any significant adverse effects on the fingerling performance. KEYWORDS: Clarias gariepinus, Fingerlings, Groundnut cake meal, Nutrient utilization, Performance.

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The aim of this study was to assess the relative contribution of natural productivity and compound food to the growth of the juvenile blue shrimp Litopenaeus stylirostris reared in a biofloc system. Two experiments were carried out based on the same protocol with three treatments: clear water with experimental diet (CW), biofloc with experimental diet (BF) and biofloc unfed (BU). Shrimp survival was significantly higher in biofloc rearing than in CW rearing. The contribution of the biofloc to shrimp diet was estimated through measurement of carbon and nitrogen stable isotope ratios in shrimp and food sources. Different isotopic compositions between feeds were obtained by feeding natural productivity with a mixture rich in fish meal and the shrimps with a pellet containing a high level of soy protein concentrate. Using a two source one-isotope mixing model, we found that the natural productivity of the biofloc system contributed to shrimp growth at a level of 39.8% and 36.9%, for C and N, respectively. The natural food consumed by the shrimps reared in the biofloc system resulted in higher gene expression (mRNA transcript abundance) and activities of two digestive enzymes in their digestive gland: α-amylase and trypsin. The growth of shrimp biomass reared in biofloc was, on average, 4.4 times that of those grown in clear water. Our results confirmed the best survival and promoted growth of shrimps using biofloc technology and highlighted the key role of the biofloc in the nutrition of rearing shrimps. Statement of relevance In this study, we have applied an original protocol to determine the respective contribution of natural productivity and artificial feeds on the alimentation of the juvenile blue shrimp L. stylirostris reared in biofloc system by using C and N natural stable isotope analysis. Moreover, we have compared, in shrimp digestive gland, the α-amylase and trypsin enzyme activities at biochemical and molecular levels for two different shrimp rearing systems, biofloc and clear water. In our knowledge, the use of molecular tool to study the influence of biofloc consumption on digest process of shrimp was never carried out. We think that our research is new and important to increase knowledge on biofloc topic.