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试验旨在探讨饲粮能量和蛋白来源对育肥猪生长性能、养分消化率、血清生化指标、胴体性状以及肉质的影响。试验采用2×2因子试验设计,选取DLY育肥猪60头[平均体重(81±7.89) kg],随机分为4个处理,每个处理5个重复,每个重复3头猪。饲粮能量来源包括玉米和小麦,饲粮蛋白来源包括豆粕和菜粕。4个处理分别饲喂玉米-豆粕型、玉米-菜粕型、小麦-豆粕型、小麦-菜粕型饲粮,试验期28 d。结果表明:①4种饲粮对猪平均日采食量和平均日增重无显著影响(P0.05),但玉米豆粕组的料重比显著低于其余3组(P0.05)。②能量和蛋白来源显著影响养分的消化率。与小麦饲粮相比,玉米饲粮极显著提高了粗脂肪、干物质、灰分、钙和磷的消化率以及能量的利用率(P0.01);与豆粕饲粮相比,菜粕饲粮极显著提高了钙、磷的消化率和能量的利用率(P0.01),显著提高了干物质的消化率(P0.05)。③与豆粕饲粮相比,菜粕饲粮极显著提高了猪血清尿素氮的含量(P0.01);与小麦饲粮相比,玉米饲粮显著提高了猪血清总蛋白水平,显著降低了胰岛素样生长因子Ⅰ水平。④玉米豆粕组的眼肌面积显著高于玉米菜粕组(P0.05);与玉米菜粕组相比,小麦菜粕组显著降低了肌肉的蒸煮损失(P0.05),显著提高了肌内脂肪含量(P0.05)。由此可见,4种饲粮对育肥猪的生长性能无显著影响,但显著影响猪养分的表观消化率,且对育肥猪胴体性状、肉质有一定的影响。  相似文献   

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试验旨在研究亚硒酸钠、酵母硒、混合硒(亚硒酸钠+酵母硒)等不同硒源对育肥猪后期的影响。试验采用单因子试验设计,设亚硒酸钠、酵母硒、混合硒(亚硒酸钠+酵母硒)等3个硒源,在0.3 mg/kg的添加浓度下对育肥猪生长性能和肉质性状的影响。结果显示,基础日粮中添加不同硒源后,猪的生长性能无显著差异,能够显著降低肉质性状中的滴水损失。结果说明,在此次试验条件下,不同硒源对育肥后期猪的各生长性能指标无显著影响,能够显著改变部分肉质性状指标,可为不同硒源在生猪饲料中的添加及利用提供试验基础和理论依据。  相似文献   

4.
选择平均体重约15kg左右的三元杂交生长猪24头,随机分成三个处理组,每个处理设两个重复,每个重复4头仔猪。试验Ⅰ组和试验Ⅱ组分别在日粮中添加0 5%和0 3%的小肽制剂,经过30d试验,与对照组相比平均日增重分别提高8 34%(P<0 05)和3 91%(P>0 05),料肉比降低8 40%和5 04%,生长猪腹泻率分别降低5 16%(P<0 05)和4 45%(P<0 05)。  相似文献   

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本试验旨在研究饲粮添加亚麻籽对生长育肥猪生长性能、胴体性状、肉质和脂肪酸组成的影响。试验选用(52.31±2.28) kg的生长猪72头,按体重随机分为3组,每组4个重复,每个重复6头猪。对照组饲喂基础饲粮,试验组分别饲喂在基础饲粮中添加5%和10%亚麻籽的饲粮。试验分2个阶段(50~80 kg和81~110 kg),每个阶段结束时对猪进行称重,试验结束后每栏选2头接近平均体重猪进行麻醉屠宰。结果表明:1)与对照组相比,饲粮添加5%和10%亚麻籽显著降低了生长育肥猪50~80 kg阶段平均日采食量、料重比及50~110 kg阶段料重比(P<0.05),并且10%添加量还显著提高了50~80 kg阶段平均日增重(P<0.05)。2)饲粮添加亚麻籽能显著增加生长育肥猪眼肌面积(P<0.05),但对胴体长、屠宰率、平均背膘厚等胴体性状无显著影响(P>0.05)。3)饲粮添加5%和10%亚麻籽能显著降低生长育肥猪背最长肌n-6/n-3多不饱和脂肪酸(PUFA)值(P<0.05),显著提高α-亚麻酸、二十二碳烯酸、二十二碳二烯酸含量及PUFA总含量(P<0.05),且当添加量达到10%时,还能显著提高背最长肌中油酸和亚油酸含量(P<0.05)。结果提示,亚麻籽能一定程度提高生长育肥猪生长性能,增加背最长肌中n-3PUFA含量,降低n-6/n-3 PUFA值,且对胴体性状及肉质无负面影响。  相似文献   

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本试验采用发酵预混合饲料替代对照组的发酵基料,对照组为添加抗生素的饲粮。研究微生物发酵饲料对育肥猪生长性能、胴体性能、肉质性能、肉风味特征及肉营养特性的影响。结果表明:发酵饲料有提高生长性能的趋势,对胴体品质没有不良影响,综合多项指标认为发酵饲料对肉质、风味及营养特性有较好的趋势。  相似文献   

7.
为探讨日粮中添加不同比例的兔粪对生长育肥猪生长性状和肉质性状的影响,我们选取60头生长育肥猪分为对照组和4个试验组进行试验.试验组日粮中分别添加10%、15%、20%、25%兔粪,经过61 d的饲养.结果表明:生长育肥猪饲粮中添加不同比例的兔粪对其生长性状、胴体性状、肉质性状影响不显著(P>0.05);从经济效益和饲料的利用效率方面考虑,在生长育肥猪饲粮中添加兔粪的比例以10%左右较为适宜.  相似文献   

8.
中草药添加剂对猪育肥性能和肉质的影响   总被引:4,自引:1,他引:4  
选择姜曲海猪与长白猪的杂交仔猪,分成4组,分别饲喂中草药+全植物型饲料、中草药+混合型饲料、全植物型饲料、混合型饲料,进行饲养试验,测定生长肥育性状和肉质性状。结果表明:中草药添加剂能显著提高试验猪的日增重和瘦肉率,降低料重比;减少失水率和滴水损失,改善猪肉品质。  相似文献   

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为进一步研究中草药对猪肉肉质性状的影响,本试验将黄芪、陈皮、丁香、当归和肉桂按各20%比例混合磨碎做成中草药复方,选取55kg左右的三元杂交(杜×长×大)育肥猪36头,根据"胎次一致、体重相近、公母各半"的原则,随机分成对照组、抗生素组、0.5%中草药组和1.0%中草药组4个组,每组3个重复,每个重复3头猪,试验全期90d。试验结束后,根据屠宰试验要求和肉质性状测定方法测定各项指标。试验结果表明:0.5%中草药组的瘦肉率达58.54±2.26%,显著高于抗生素组和对照组(P<0.05);1.0%中草药组的瘦肉率为60.49±1.96%,显著高于抗生素组、对照组和0.5%中草药组(P<0.01);0.5%和1.0%中草药组的脂肪率分别为7.73±0.54%,7.51±0.48%,比抗生素组和对照组低,但差异不显著(P>0.05);0.5%和1.0%中草药组肉色评分为3.31±0.07,3.33±0.04,均显著高于抗生素组和对照组(P<0.05);0.5%和1.0%中草药组熟肉率分别为71.14±13.89%,71.28±0.21%,显著高于抗生素组和对照组(P&...  相似文献   

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为研究中草药配方对育肥猪生长性能及肉质风味的影响,将黄芪、党参、大蒜、五加皮、构树叶、甘草等六味中草药按一定比例混合做成中草药配方,选取120头三元杂交育肥猪,随机分成对照组(CON)、0.025%中草药组(IB)、0.05%中草药组(IB2)3个组开展试验,每组8个重复,每个重复5头猪,试验期为12周.试验结束后,根...  相似文献   

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本研究主要通过生长育肥猪的饲养试验,观察日粮中添加非淀粉多糖酶(Non-Starch Polysaccharide Enzyme,NSP酶)对生长育肥猪生长性能、胴体性状和肉品质的影响。试验选择体质量约为40kg的杜长大三元杂交猪48头,公母各半。本试验随机分为2个处理,每个处理3个重复,每个重复8头猪,对照组饲喂基础日粮,NSP酶组饲喂基础日粮+0.6%NSP酶。结果表明:(1)生长性能方面,NSP酶组的平均日增重和平均日采食量均显著高于对照组(P<0.05),分别提高了9.8%和4.7%;NSP酶组的料重比显著低于对照组(P<0.05),降低了5.0%;(2)在胴体性状和背最长肌化学组成方面,NSP酶组眼肌面积比对照组显著提高(P<0.05),提高了9.8%;与对照组相比,滴水损失和剪切力2个指标分别降低了2.0%和14.6%,但在统计学上未达到显著水平(P>0.05)。结果显示,基础饲粮中添加NSP酶能有效提高生长育肥猪生长性能,并在一定程度上改善肉品质。  相似文献   

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Two experiments were conducted to determine the effect of substituting a more available dietary carbohydrate (CHO) for portions of corn or fat in the diet on growth performance, carcass traits, meat quality, and serum or plasma metabolites in growing-finishing pigs. A three-phase feeding program was used with corn-soybean meal diets formulated to provide 105% of the Lys requirement for barrows or gilts gaining 325 g of lean daily in Exp. 1 or gilts gaining 350 g of lean daily in Exp. 2. Diets were isoenergetic within experiments. All other nutrients met or exceeded suggested requirements. In Exp. 1, pigs were allotted to three dietary treatments (0, 7.5, or 15.0% sucrose), with three replications of barrows and three replications of gilts, and with three or four pigs per replicate pen; average initial and final BW were 25.2 and 106.7 kg. In Exp. 2, gilts were allotted to two dietary treatments (waxy [high amylopectin] or nonwaxy [75% amylopectin and 25% amylose] corn as the grain source), with five replications of four gilts per replicate pen; average initial and final BW were 37.7 and 100.0 kg. In Exp. 1, ADG and gain:feed ratio increased linearly (P < 0.02) as dietary sucrose increased. Minolta color scores, a* and b*, and drip loss (P < 0.06) also increased linearly with added sucrose. In Exp. 2, ADG, carcass weight and length, and the Minolta a* value were greater for pigs fed waxy corn (P < 0.08) than for those fed nonwaxy corn. Feed intake, longissimus muscle area, 10th-rib and average backfat thickness, dressing percentage, fat-free lean, percentage of lean and muscling, lean gain per day, total fat, percentage fat, lean:fat ratio, serum or plasma metabolites (Exp. 1: serum urea N; Exp. 2: serum urea N, and plasma nonesterified fatty acids, triacylglycerols, total and high-density lipoprotein cholesterol, insulin, and total protein), pH of the longissimus muscle, and subjective muscle scores (color, firmness-wetness, and marbling) were not affected by diet in either experiment. In summary, increasing availability of dietary CHO in growing-finishing pig diets improved growth performance, but it did not affect carcass traits.  相似文献   

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Two experiments were conducted to determine the effect of soy isoflavones on growth, meat quality, and carcass traits of growing-finishing pigs. In Exp. 1, 36 barrows (initial and final BW, 26 and 113 kg, respectively) were used and each treatment was replicated four times with three pigs each. The dietary treatments were 1) corn-soybean meal (C-SBM), 2) corn-soy protein concentrate (low isoflavones, C-SPC), or 3) C-SPC + isoflavones (isoflavone levels equal to those in C-SBM). Daily gain and ADFI were increased (P < 0.10) in pigs fed the C-SPC relative to pigs fed the C-SPC + isoflavone diet in the late finishing period; otherwise, growth performance was not affected (P > 0.10) by diet. Longissimus muscle area, 10th-rib fat depth, percentage muscling (National Pork Producers Council), 24-h pH and temperature, color, firmness-wetness, marbling, drip loss, and CIE L*, a*, and b* color values were not affected (P > 0.10) by diet. Dressing percentage, carcass length, weight and percentage of fat-free lean in ham and carcass, lean gain per day, lean:fat, and ham weight were increased (P < 0.10), and ham fat and percentage fat in ham and carcass were decreased (P < 0.10) in pigs fed the C-SPC + isoflavone diet compared with pigs fed the C-SPC diet. Pigs fed the C-SPC + isoflavone diet had similar (P > 0.10) carcass traits as pigs fed the C-SBM diet, except carcass length, percentage ham lean and thaw loss were greater (P < 0.10), and total ham fat was less (P < 0.10) in pigs fed the C-SPC + isoflavone diet. In Exp. 2, 60 gilts (initial and final BW, 31 and 116 kg, respectively) were used, and each treatment was replicated five times with four pigs per replicate. The treatments were 1) C-SBM, 2) C-SBM + isoflavone levels two times those in C-SBM, and 3) C-SBM + isoflavone levels five times those in C-SBM. Daily feed intake was linearly decreased (P < 0.10) in the growing phase and increased (P < 0.10) in the late finishing phases as isoflavone levels increased; otherwise, growth performance was not affected (P > 0.10) by diet. Diet did not affect (P > 0.10) carcass traits; however, CIE a* and b* color scores and drip loss were decreased (P < 0.06) as isoflavone levels increased. Soy isoflavones decreased fat and increased lean in barrows when fed within the dietary concentrations found in typical C-SBM diets but not when fed to gilts at concentrations above those present in C-SBM diets.  相似文献   

14.
An experiment was conducted to determine the effect of dietary Cr propionate (CrProp) on growth, carcass traits, and pork quality of crossbred finishing gilts. Dietary treatments were 0 or 200 ppb Cr (as CrProp; as-fed basis), and each treatment was replicated four times with five gilts per replicate pen. Gilts were fed diets containing 0.82% lysine from 73 to 80 kg BW and 0.64% lysine from 80 to 115 kg BW. At the end of the trial, carcass and pork quality data were collected from four gilts per replicate. Average daily gain, ADFI, and G:F were not affected (P = 0.76 to 0.96) by CrProp. Before delivery at the abattoir, shrink loss was determined after an 18-h fast (fasting shrink) and after hauling (shipping shrink) pigs for 2.66 h (209.2 km). Fasting, shipping, and overall shrink were not affected (P = 0.14 to 0.39) by CrProp. Carcass length was increased (P = 0.03) in pigs fed CrProp. Loin muscle area, 10th-rib backfat thickness, average backfat thickness, dressing percent, muscle score, fat-free lean, and percent lean were not affected (P = 0.18 to 0.95) by CrProp. Twenty-four-hour loin pH was increased (P = 0.10) in pigs fed CrProp, but 45-min loin and ham pH and 24-h ham pH were not affected (P = 0.39 to 0.83) by CrProp. Subjective (color, marbling, firmness, and wetness) and objective (Commission Internationale de l'Eclairage L*, a*, b*) assessments of the loin muscle (at the 10th-rib interface) were not affected (P = 0.62 to 0.99) by CrProp. Forty-eight-hour drip (P = 0.10) and 21-d purge loss (P = 0.01) were decreased in pigs fed CrProp, but cook and total loss (drip + cook loss) and shear force were not affected (P = 0.35 to 0.53) by CrProp. Plasma cortisol, glucose, and lactate concentrations were not affected (P = 0.28 to 0.97) by CrProp after transportation or during exsanguination. These data indicate that CrProp may improve some aspects of pork quality (loin pH, drip and purge loss) but not growth performance or carcass traits.  相似文献   

15.
The effects of feeding modified tall oil (MTO) and creatine monohydrate (CMH) on growing-finishing pig growth performance, carcass characteristics, and meat quality were determined. Eighty cross-bred barrows (initially 45.4 kg) were allotted randomly to one of four dietary treatments by weight and ancestry. The experiment was arranged as a 2 x 2 factorial with two levels of MTO (0 or 0.50%), which were fed throughout the growing-finishing period, and two levels of CMH (0 or 25 g/d), which were fed for the final 10 d before slaughter. The corn-soybean meal diets were fed in two phases (45.4 to 78.9 kg and 78.9 to 117.5 kg BW). When CMH was added to the diet in place of corn, average BW was 107.5 kg. Feeding MTO increased (P < 0.05) ADG and gain:feed ratio (G/F) during the 45.4- to 78.9-kg growth interval and tended to improve (P = 0.10) G/F during the 45.4- to 107.5-kg growth interval. Dietary treatment did not affect (P > 0.15) growth performance during the 78.9- to 107.5-kg growth interval. Modified tall oil increased (P = 0.02) G/F during the 10-d CMH supplementation period, and CMH numerically (P = 0.11) increased ADG and G/F. Supplementation of CMH did not affect (P > 0.20) any measured carcass characteristic or measures of meat quality at 24 h or 14 d postmortem. Feeding MTO reduced average back-fat (P = 0.05) and 10th rib backfat (P = 0.01) but did not affect (P > 0.10) other measured carcass characteristics or measures of meat quality at 24 h postmortem. Modified tall oil increased (P = 0.02) L* values (lightness) and tended to increase (P < 0.10) thawing and cooking losses of longissimus muscle chops at 14 d postmortem. These data demonstrate that MTO improves growth performance and reduces backfat in growing-finishing pigs, but supplementation of CMH, under the conditions of this experiment, was not beneficial for growing-finishing pigs.  相似文献   

16.
Crossbred barrows (n = 72) were used to evaluate effects of diet supplementation with modified tall oil (MTO; 0.0 or 0.50%) and vitamin E (0, 22, or 110 IU/kg) on growth performance, carcass traits, and longissimus muscle (LM) quality traits of finishing pigs. Pigs were blocked by ancestry and initial BW and allotted randomly to treatments in a 2 x 3 factorial. Corn-soybean meal-based diets were fed in two phases: 45.5 to 81.6 (1.00% lysine) and 81.6 to 114.6 (0.75% lysine) kg BW with no added fat. From 45.5 to 81.6 kg, pigs fed MTO had greater ADG (P = 0.03) regardless of added vitamin E; otherwise, treatment did not affect growth performance. Carcasses from pigs fed MTO had reduced (P < 0.05) average backfat (2.76 vs 2.92 cm) and firmer bellies compared to those fed no MTO. Boneless loins were cut into 2.54-cm chops at 7 d postmortem and evaluated for display color, thiobarbituric acid-reactive substance (TBARS), Warner-Bratzler shear force (WBSF), and sensory panel ratings. Visual color was similar (P > 0.05) among treatments at 0 and 1 d of display. At 4 and 6 d of display chops from pigs fed MTO with 110 IU vitamin E/kg had less deterioration (P < 0.05) than chops from pigs fed MTO with 0 IU vitamin E/kg and 0.0% MTO with 22 or 110 IU vitamin E/kg. The CIE L*, a*, b* and spectral values also suggested a delay in color deterioration for chops from pigs fed MTO with 110 IU vitamin E/kg. At 6 and 8 d of display, chops from pigs fed 110 IU vitamin E/kg had lower (P < 0.05) L* values than those from pigs fed 0 or 22 IU vitamin E/kg, and higher (P < 0.05) a* values than those from pigs fed 0 IU vitamin E/kg feed. A higher (P < 0.05) %R630/%R580 (indicator of more oxymyoglobin) was observed for chops from pigs fed MTO with 110 IU vitamin E/kg than those from pigs fed 0.0% MTO with 22 or 110 IU vitamin E/kg and MTO with 0 IU vitamin E/kg. Chops from pigs fed MTO with 110 IU vitamin E/kg had lower (P < 0.05) TBARS values than those from pigs fed MTO with 0 IU vitamin E/kg. No differences (P > 0.05) were detected among treatments for WBSF or sensory evaluations. The addition of MTO in swine diets improved belly firmness and reduced backfat, and feeding MTO with high levels of vitamin E extended display life without affecting palatability of LM chops.  相似文献   

17.
本试验旨在研究DDGS对生长育成猪的生产性能和胴体品质的影响。432头体重为29.8±0.2kg的育成猪被随机分成1-9个日粮组,分别为对照组(D0),D15-0wk,D15-3wk,D15-6wk,D15-9wk,D30-0wk,D30-3wk,D30-6wk和D30-9wk,其中D0、D15和D30分别代表DDGS在猪日粮中的百分含量;0wk、3wk、6wk和9wk代表在屠宰0、3、6和9周前分别取消DDGS在猪日粮的添加时间。结果显示,当生长育成猪日粮中的DDGS含量为15%或30%时,不管屠宰前是否取消DDGS的添加,除了D30-0wk处理组的猪的ADG比对照组(D0)稍降外(0.87:0.92kg/d;P〈0.05),其他处理组猪的ADG、ADFI和G:F均没有显著差异(P=0.76)。DDGS的不同含量或屠宰前取消DDGS的添加时间(0周、3周、6周和9周)对猪胴体质量、背最长肌(LM)猪肉品质、背脂和腹脂颜色评分分数没有显著影响(背脂,P=0.47;腹脂,P=0.17)。相对对照组,D30-0wk组的腹部猪肉嫩度稍低(P=0.04),其他处理组猪的腹部猪肉嫩度与对照组的差别均不大(P=0.26)。当增加猪日粮中的DDGS含量时,腹脂的亚油酸含量(C18:2;P〈0.001)和碘值(IV;P〈0.001)有所增加。当猪日粮中含有15%DDGS时,在屠宰前的0~9周取消DDGS添加可以线性的降低猪腹脂的C18:2含量和腹脂碘值(屠宰前的第0-、3-、6-和9周的腹脂C18:2含量分别为:14.6%、13.3%、12.6%、10.9%;P=0.001;碘值分别为:67.3、64.4、64.1和62.7);而当猪的日粮中含有30%DDGS时,在屠宰前0~9周取消DDGS的添加也可以线性的降低猪腹脂的C18:2含量和腹脂碘值(屠宰前的第0-、3-、6-和9周的腹脂C18:2含量分别为:17.3%、16.1%、14.2%和12.4%;P〈0.001;碘值分别为:71.2、68.2、64.5和62.7)。总体来看,当在生长育肥猪中添加高达30%DDGS对猪的生产性能有极小影响,且在屠宰前的3周取消在猪日粮中的DDGS的添加可以降低猪腹脂的C18:2含量和碘值。  相似文献   

18.
本试验研究基础日粮中添加不同水平的斜发沸石对育肥期苏淮猪生长性能、肉品质的影响,旨在获得苏淮猪育肥期斜发沸石的适宜添加量。选择体重相近(50 kg左右)、健康的苏淮阉公猪40头,随机分为对照组、试验Ⅰ组、试验Ⅱ组、试验Ⅲ组共4个处理组,每组10头。预试期10 d,所有猪自由采食对照组基础日粮;正试期64 d,对照组饲喂基础日粮,试验Ⅰ至Ⅲ组分别在基础日粮中添加0.5%、1.0%和2.0%的斜发沸石。于试验结束屠宰全部试验猪,用于屠宰测定和肉质检测。结果表明:1)第1阶段(体重56~68 kg)和第2阶段(体重83~98 kg),终末体重、平均日增重、料重比均无显著差异;但斜发沸石水平对第1阶段和第2阶段平均日采食量影响显著(P<0.05)并呈线性(P=0.02,P=0.047)二次方升高趋势(P=0.01)。2)对照组、试验Ⅰ组、Ⅱ组和Ⅲ组苏淮猪的生长曲线拐点分别是:第50.26天86.06 kg、第40.22天87.15 kg、第38.27天89.69 kg和第45.98天89.02 kg;最大日增重分别是0.702、0.743、0.814和0.855 kg/d,说明在饲料中添加斜发沸石后,可延长育肥猪到达生长曲线拐点体重。3)斜发沸石水平对眼肌面积和肌内脂肪影响显著(P<0.05),眼肌面积随斜发沸石添加水平的升高,呈二次方(P=0.01)变化;肌内脂肪呈线性(P=0.01),二次方(P=0.03)升高;胴体重和系水力分别随斜发沸石添加水平的升高,呈线性(P=0.07,P=0.09)升高趋势。试验表明:苏淮育肥猪采食量、胴体重和肌内脂肪随日粮斜发沸石添加水平增加呈线性升高,系水力呈线性升高趋势,但眼肌面积随斜发沸石添加水平的升高,呈二次方变化,先升高后降低。因此,添加2%斜发沸石有利于采食量、胴体重和肌内脂升高,有助于系水力降低;但从增加眼肌面积的角度考虑,斜发沸石的适宜添加比例为1%。  相似文献   

19.
文章旨在评估木棉籽油替代大豆油对育肥猪生长性能、胴体性状和肉品质的影响.试验将500头20?w平均体重为(84.40±0.18)kg的育肥猪随机分为2组,每组5个重复,每个重复50头.对照组饲喂含有1.5%大豆油的基础日粮,处理组饲喂含有0.8%木棉籽油的基础日粮,试验分为0~3?w和4~6?w共42?d.结果:对照组...  相似文献   

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