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81.
杜泊、萨福克、无角陶塞特与小尾寒羊杂交肥羔肉质特性的研究 总被引:1,自引:0,他引:1
选在相同条件下饲养的杜泊、萨福克、无角陶塞特与小尾寒羊杂交一代及小尾寒羊(公羔、5~6 月龄、体重46~48.5 kg)共16只,每个处理4只.经屠宰取背最长肌和股二头肌各半制备样品,测定肌肉中化学成分、氨基酸、矿物质和微量元素含量.结果表明:粗蛋白质含量,萨寒F1 20.8%,陶寒F1 20.5%,杜寒F1 20.1%,均高于小尾寒羊(19.6%).每百克肉中17种氨基酸总量也分别高于小尾寒羊,依次为萨寒F1(20.09g),陶寒F1(19.78g);杜寒F1(19.13g);小尾寒羊(18.42g).人体营养所需要的必需氨基酸总量分别比小尾寒羊提高8.86%;8.54%和2.16%,其中组氨酸的含量显著高于小尾寒羊(P<0.05);杜寒F1和陶寒F1的蛋氨酸含量也显著高于小尾寒羊(P<0.05).与风味(鲜味)有直接关系的天冬氨酸和谷氨酸含量也分别比小尾寒羊高.萨寒F1和陶寒F1粗脂肪含量高于小尾寒羊(P<0.05).杂交肥羔钙极显著高于小尾寒羊(P<0.01),铁、锰、硒含量也显著高于小尾寒羊(P<0.05);而小尾寒羊肥羔肉含锌量(34mg)高于杂交羊;有毒有害元素均未检出,综合评定杂交肥羔肉的营养价值和肉质品质均优于小尾寒羊. 相似文献
82.
The effect of taurine supplementation to a plant‐based diet for barramundi (Lates calcarifer) with varying methionine content 下载免费PDF全文
The effect of variable taurine inclusion (Tau) (1 g/kg DM to 15 g/kg DM) in the diet of juvenile barramundi (Lates calcarifer) on growth and nutrient utilization was investigated at three levels of dietary methionine (Met) supplementation. Diets were fed to juvenile barramundi (starting weight: 26.8 g) twice daily under a restricted pair‐fed regime for a period of 42 days. No significant effect of dietary Tau supply on growth or nutrient utilization was observed at any level of Met inclusion. Numerical variations suggested a positive effect of Tau provision at the mid‐level of supplementation (6–8 g/kg DM). The best‐fit response model (5‐SKM), fitted to the percentage body weight gain data of fish fed diets with an adequate level of Met, suggested a relatively weak pattern of response (R2 = 0.183) and predicted a Tau requirement of 5.47 g/kg DM (9.64 g/kg CP) similar to that reported for several other species. It was concluded that taurine appears to be conditionally essential to barramundi, whereby provision in the diet when sulphur amino acid supply is insufficient to meet biosynthetic demands may be beneficial, but that the predicted requirement is likely reasonably accurate for use as a minimum level of inclusion. 相似文献
83.
84.
This study examines the effects of nonesterified fatty acids on the properties of the sex steroid binding protein (SSBP) in the plasma of goldfish (Carassius auratus). Scatchard analysis revealed a single class of high affinity (Kd 1.89±0.20 nM), low capacity (Bmax 302±17 nM) binding sites for [3H]17-estradiol in female goldfish plasma. The SSBP bound 17-estradiol and testosterone with similar affinity but had much lower affinity for estriol, 17,20-dihydroxy-4-pregnen-3-one and cholesterol. Nonesterified fatty acids inhibit the binding of [3H]17-estradiol to the SSBP as a function of dose, degree of unsaturation and fatty acid chain length. Polyunsaturated fatty acids (PUFAs) such as arachidonic acid (C20:4), eicosapentaenoic acid (C20:5) and docosahexaenoic acid (C22:6) strongly inhibit the binding of [3H]17-estradiol to the SSBP. By comparison, saturated fatty acids such as heptadecanoic acid (C17:0), palmitic acid (C16:0) and stearic acid (C18:0) were without effect. Scatchard analysis and Lineweaver-Burk plots showed that PUFAs act through a competitive mechanism whereby they reduce the affinity but have no effect on the binding capacity of the SSBP. Collectively, these studies suggest that in addition to their roles as metabolic energy sources and as precursors to eicosanoids, PUFAs can be potent modulators of steroid hormone interactions with the SSBP in goldfish plasma. 相似文献
85.
Dietary n‐3 highly unsaturated fatty acids affect the biological and serum biochemical parameters,tissue fatty acid profile,antioxidation status and expression of lipid‐metabolism‐related genes in grass carp,Ctenopharyngodon idellus 下载免费PDF全文
A 95‐day feeding trial was conducted to determine the effects of n‐3 highly unsaturated fatty acids (n‐3 HUFA) on the growth, antioxidation and lipid metabolism in grass carp (Ctenopharyngodon idellus). Two isonitrogenous and isolipidic diets were formulated with either lard oil (LO) or fish oil (FO) as the main lipid source. The results showed that the intraperitoneal fat (IPF) ratio was significantly lower (P < 0.05) in FO group. The concentration of n‐3 HUFA in muscle, hepatopancreas and IPF was significantly higher in FO group (P < 0.05). The serum low‐density lipoprotein (LDL) content was significantly lower (P < 0.05), and glucose (GLU) content was significantly higher (P < 0.05) in FO group. The serum total superoxide dismutase (T‐SOD) activity was significantly higher (P < 0.05) in FO group, consistent with the serum malondialdehyde (MDA) content. The gene expression of IPF fatty acid synthase (FAS), acetyl‐CoA carboxylase (ACC), sterol regulatory element‐binding protein (SREBP‐1) and peroxisome proliferator‐activated receptor γ (PPARγ) was significantly lower (P < 0.05) and that of peroxisome proliferator‐activated receptor α (PPARα) was significantly higher (P < 0.05) in FO group compared with LO group. Similar trends were found in the hepatopancreas, except for PPARγ. It is suggested that n‐3 HUFA could inhibit lipid accumulation in grass carp by affecting the expression of lipid‐metabolism‐related genes. 相似文献
86.
J. Gordon Bell Douglas R. Tocher Fiona M. MacDonald John R. Sargent 《Fish physiology and biochemistry》1994,13(2):105-118
Three practical-type diets utilizing fishmeal and casein as the protein sources and containing fish oil (FO), safflower oil
(SO) or linseed oil (LO) were fed to duplicate groups of juvenile turbot (Scophthalmus maximus) of initial weight 1.2 g for a period of 12 weeks. No differences in final weight, mortality or development of pathological
lesions were evident either between duplicate tanks or between dietary treatments over this period. Fish fed diets containing
SO and LO contained significantly greater amounts of liver triacylglycerol compared to fish fed FO. The major C18 polyunsaturated fatty acids (PUFA) in SO and LO diets, 18:2(n-6) and 18:3(n-3) respectively, were readily incorporated into
both total lipid and individual phospholipids of turbot tissues. There was no accumulation of the Δ6-desaturation products
of these fatty acids, namely 18:3(n-6) and 18:4(n-3), in any of the tissues examined. The products of elongation of 18:2(n-6)
and and 18:3(n-3), 20:2(n-6) and 20:3(n-3) respectively, accumulated in both total lipid and phospholipids with the highest
levels of 20:2(n-6) in liver PC and 20:3(n-3) in liver PE. Eicosapentaenoic acid [EPA, 20:5(n-3)] levels exceeded those of
arachidonic acid [AA, 20:4(n-6)] in phosphatidylinositol (PI) from liver and gill of fish fed LO. EPA levels in liver PI from
fish fed LO were 3-fold and 2-fold greater than SO-fed and FO-fed fish, respectively. Fish fed diets containing SO and LO
had significantly reduced levels of AA in liver and muscle total lipid and lower AA in individual phospholipid classes of
liver and gill compared to FO-fed fish. The concentration of thromboxane B2 was significantly reduced in plasma and isolated gill cells stimulated with calcium ionophore A23187 of fish fed SO and LO
compared to those fed FO. Prostaglandin E produced by isolated gill cells stimulated with A23187 was significantly reduced
in fish fed both SO and LO compared to fish fed FO. 相似文献
87.
Giovanni M Turchini Rasanthi M Gunasekera & Sena S De Silva 《Aquaculture Research》2003,34(9):697-708
The efficacy of trout oil (TO), extracted from trout offal from the aquaculture industry, was evaluated in juvenile Murray cod Maccullochella peelii peelii (25.4±0.81 g) diets in an experiment conducted over 60 days at 23.7±0.8 °C. Five isonitrogenous (48% protein), isolipidic (16%) and isoenergetic (21.8 kJ g?1) diets, in which the fish oil fraction was replaced in increments of 25% (0–100%), were used. The best growth and feed efficiency was observed in fish fed diets containing 50–75% TO. The relationship of specific growth rate (SGR), food conversion ratio (FCR) and protein efficiency ratio (PER) to the amount of TO in the diets was described in each case by second‐order polynomial equations (P<0.05), which were: SGR=–0.44TO2+0.52TO+1.23 (r2=0.90, P<0.05); FCR=0.53TO2–0.64TO+1.21 (r2=0.95, P<0.05); and PER=–0.73TO2+0.90TO+1.54 (r2=0.90, P<0.05). Significant differences in carcass and muscle proximate compositions were noted among the different dietary treatments. Less lipid was found in muscle than in carcass. The fatty acids found in highest amounts in Murray cod, irrespective of the dietary treatment, were palmitic acid (16:0), oleic acid (18:1n‐9), linoleic acid (18:2n‐6) and eicosapentaenoic acid (20:5n‐3). The fatty acid composition of the muscle reflected that of the diets. Both the n‐6 fatty acid content and the n‐3 to n‐6 ratio were significantly (P<0.05) related to growth parameters, the relationships being as follows. Percentage of n‐6 in diet (X) to SGR and FCR: SGR=–0.12X2+3.96X–32.51 (r2=0.96) and FCR=0.13X2–4.47X+39.39 (r2=0.98); and n‐3:n‐6 ratio (Z) to SGR, FCR, PER: SGR=–2.02Z2+5.01Z–1.74 (r2=0.88), FCR=2.31Z2–5.70Z+4.54 (r2=0.93) and PER=–3.12Z2–7.56Z+2.80 (r2=0.88) respectively. It is evident from this study that TO could be used effectively in Murray cod diets, and that an n‐3:n‐6 ratio of 1.2 results in the best growth performance in Murray cod. 相似文献
88.
种青养鱼模式下的草鱼肌肉营养成分和品质特性 总被引:3,自引:2,他引:3
为探究种青养鱼养殖模式对草鱼肌肉营养成分和品质特性的影响,随机选取以种青喂草为主养殖模式下养殖的草鱼(生态草鱼)和投喂人工配合饲料进行养殖的草鱼(饲料草鱼)各16尾,测定其肌肉系水力和质构特性指标,以及肌肉常规营养成分、矿物元素、氨基酸和脂肪酸含量。结果显示,生态草鱼和饲料草鱼肝体比和空壳率无显著性差异;生态草鱼肌肉系水力指标中滴水损失显著低于饲料草鱼,冷冻渗出率不显著地低于饲料草鱼,失水率不显著地高于饲料草鱼,p H值无显著性差异;肌肉的硬度、弹性、凝聚性、胶黏性和回复性均无显著性差异;生态草鱼粗脂肪含量显著低于饲料草鱼,水分、灰分、粗蛋白含量均无显著性差异;生态草鱼P和Fe含量均显著高于饲料草鱼,Mg、Mn和Cr含量均极显著高于饲料草鱼;生态草鱼和饲料草鱼肌肉氨基酸组成基本一致,均含有17种氨基酸,其中人体必需氨基酸总量分别为6.85%和6.27%。生态草鱼必需氨基酸指数(EAAI)为76.07,而饲料草鱼为77.29,饲料草鱼略高于生态草鱼。生态草鱼和饲料草鱼肌肉均含19种脂肪酸,其中棕榈酸、花生四烯酸(ARA)、亚油酸(LA)、油酸、二十二碳六烯酸(DHA)和硬脂酸含量较高,为主要脂肪酸,而花生五烯酸(EPA)+DHA含量分别为8.95%和10.70%,且差异显著。研究表明,生态草鱼和饲料草鱼在肌肉质构特性方面无显著性差异,与饲料草鱼相比,生态草鱼具有肌肉系水力强、低脂肪和矿物元素含量高的特点。 相似文献
89.
Farmed eels had lower levels of arachidonic acid (20:4 n‐6) (ARA) and higher ratios of eicosapentaenoic acid (20:5 n‐3) (EPA):ARA compared to wild European eels collected from the Baltic Sea and southern Norwegian coast. Eels fed a formulated feed (JD) with a distribution of essential fatty acids (EFA) resembling wild European eel were sampled after 0, 5, 10, 14 and 44 weeks of feeding to examine changes in fatty acid composition (FAC) in ovaries, visceral fat and muscle. The results showed a slow but steady incorporation of EFA. Lipids are incorporated in the oocytes early in oogenesis, and the leading cohort of oocytes is rich in lipid droplets before the onset of vitellogenesis. This indicates that feeding with optimized broodstock feeds should start early to allow the incorporation of EFA in the first cohort of oocytes. At least 14 weeks of feeding is required to change lipid EFA in broodstock eel to resemble EFA in the diet or in wild fish. After 44 weeks of feeding, ARA was significantly higher in the neutral lipids of ovaries (1.9%) compared to visceral fat (1.2%) or muscle (1.0%). EPA:ARA ratios decreased two‐ to threefold in all tissues examined during that time. ARA and docosahexaenoic acid (22:6 n‐3) (DHA) had accumulated in ovarian polar lipids. 相似文献
90.
A 3 × 3 factorial experiment was conducted on Labeo rohita fingerlings to evaluate the effect of dietary oxidized oil and vitamin E. Nine experimental diets were made, based on three degrees of oil oxidation (fresh oil, low oil oxidation and high oil oxidation), and each level of oxidation was further supplemented with three levels of vitamin E (0, 100 and 1,000 mg/kg). Weight gain% and specific growth rate (SGR) of fish fed fresh fish oil and low oil oxidation level were significantly higher than highly oxidized oil. Moreover, vitamin E supplemented fish also showed better growth performance. Oil oxidation caused a significant reduction in the concentrations of α‐tocopherol and increase in TBARS level and antioxidant enzyme activities in fish liver and muscles. However, increasing the dietary vitamin E abrogated these effects. Dietary vitamin E supplementation improved the fatty acid, more specifically polyunsaturated fatty acids profile of oxidized oil fed fish. In conclusion, dietary oxidized fish oil increased the oxidative stress condition of fish but supplementation of high dose of vitamin E prevented lipid oxidation, improved growth performance and fatty acid profile of L. rohita. 相似文献