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1.
选择59头高原瘦肉型猪,断奶后每个血统选用5~6头公猪为一组,经育肥达90 kg体重屠宰,测定其胴体性状和胴体品质,测定结果表明全期日增重均在500 g以上,但各世代有差异.其胴体品质较之互助猪有了明显提高.  相似文献   

2.
互助猪胴体性状和肉脂品质的测定及其相关分析   总被引:6,自引:1,他引:5  
测定了25头互助猪的胴体性能和肉脂品质,结果表明,互助猪的胴体性能远远劣于国外瘦肉型猪,但优于国内某些地方猪种,瘦肉率低是其显著特点;肉脂品质优于国外瘦肉型猪,表现在良好肉色和肌间脂肪含量,相关分析表明,互助猪的产瘦肉能力与肉脂品质呈出一定的拮抗关系,表现为胴体瘦肉率愈高,背膘愈薄,肌间脂肪含量就愈低,贮存损失率也愈大。  相似文献   

3.
莱芜猪及其杂种猪血液指标与胴体品质性状关系的研究   总被引:2,自引:0,他引:2  
本试验分析测定了36头莱芜猪及其杂种猪的血液指标。分析结果表明,血液指标与胴体品质性状存在着一定的相关,且宰前血液指标的测定可用为预测宰后的胴体品质。  相似文献   

4.
大约克新品系猪的胴体品质和肉质测定报告叶虎贲,张忠良,仇志军,范树祥,周松良,毛珠祥,黄晓东(龙游县大约克种猪试验场)(浙江农科院畜牧所)为了解大约克新品系猪的胭体质量和肌肉品质,我们对大约克新品系32头肥育猪进行了规范化的屠宰测定,胴体剥离和肌肉品...  相似文献   

5.
选择20kg左右,胎次、日龄相近的DLY生长育肥猪96头,按照体重相似的原则随机分为添加0.1%中草药制剂组和对照组,每组6个重复,每个重复8头猪,研究对DLY生长育肥猪生产性能、胴体性状及肉品品质的影响。通过饲养试验、消化试验及屠宰试验,并对背最长肌进行采样,测定分析其肉品品质。结果表明,生长育肥猪日粮中添加中草药制剂具有提高其生产性能、改善其胴体性状及肉品品质的趋势。  相似文献   

6.
《养猪》2020,(5)
为了分析和比较宁乡猪不同杂交组合猪的胴体性状和肌肉品质,试验随机选择达上市体重的皮特兰×宁乡猪(皮宁)7头和皮特兰×(巴克夏猪×宁乡猪)(皮巴宁)4头进行屠宰,测定了眼肌面积、瘦肉率、肌内脂肪、氨基酸、脂肪酸、微量元素等多项胴体及肉质性状指标,并分析其差异性。结果表明,胴体重、屠宰率、3点平均背膘厚、瘦肉率、肥膘率、十七烷酸、α-亚麻酸和总不饱和脂肪酸等8项指标组间差异达到了显著水平(P0.05),其他各项指标组间差异不显著(P0.05)。说明皮宁组合和皮巴宁组合猪均表现出了良好的胴体性能和肌肉品质。  相似文献   

7.
不同品种猪胴体性状和肉品质的比较研究张敏红编译吕同校从1990年11月至1994年3月,加拿大安大略省开展了“安大略省猪胴体评定项目”。该项目的研究目的为:①评估猪胴体成分和肉品质性状;②测定反映胴体和肉品质的表型、遗传型和环境参数;③用活体测量技术...  相似文献   

8.
赖氨酸是猪日粮中第一限制性氨基酸。因此,满足生长猪所需的蛋白质和赖氨酸对其肥育效果和胴体品质有直接影响。试验研究了在日粮含有不同水平赖氨酸的情况下限制饲养(减饲10—17%)与充足饲养(满足饲料需要)对猪肥育效果和胴体品质的影响(见方案)。每试验组10头猪。  相似文献   

9.
为研究湘岭猪的生长肥育性能、胴体性能及肌肉品质,实验选择30 kg左右的湘岭猪、沙子岭猪、巴沙沙猪和沙巴沙猪各20头,公母各半,按品种分为4组。育肥试验全期98 d,实验期间各组猪饲喂相同营养水平日粮,育肥实验结束后,选择80 kg左右的沙子岭猪4头、90 kg左右的湘岭猪6头、巴沙沙猪和沙巴沙猪各4头进行屠宰测定。结果表明:6个体尺指标在组间存在极显著差异,其中,湘岭猪的体长极显著高于其他3组;在体重相近的情况下,巴沙沙猪的腹围极显著小于沙子岭猪。在肥育性能方面,湘岭猪的全期日增重极显著高于其他3组,全期耗料增重比低于其他3组。在胴体性能方面,湘岭猪的胴体直长、胴体斜长、眼肌面积和瘦肉率最高,三点均膘厚和脂率在组间最低;肌肉品质方面,湘岭猪a1值在组间最高,失水率、贮存损失和熟肉率在组间最低。综上所述,湘岭猪在体长、肥育性能和胴体性能上比其他3组有明显优势,但肌肉品质略差。  相似文献   

10.
为探讨不同杂交组合育肥猪胴体品质及肉质性状的差异,选用体重30 kg左右的长×大、巴×长×大、杜×长×大3种杂交阉猪各15头,饲养至100 kg左右,每组选6头进行屠宰试验,测定胴体品质与肉质性状.试验结果显示,3个杂交组合的猪都符合优质瘦肉型猪的要求,杜×长×大组的胴体性状最好,其屠宰率、眼肌面积、瘦肉率显著高于长×大组(P<0.05);巴×长×大组的肉质性状最好,其肉色、大理石纹显著优于杜×长×大组和长×大组(P<0.05).结果表明,杜×长×大组的胴体性状较好,巴×长×大组的肉质性状较好,采用杜洛克做杂交父本可提高后代猪的胴体性状,采用巴克夏做杂交父本可提高后代猪的肉质性状.  相似文献   

11.
This study determined the effect of gender on slaughter and carcass traits in Anatolian water buffalos reared under free range conditions in Turkey. Sixteen four-years-old Anatolian water buffalo were divided into two groups of eight males in one group and eight females in the other. The slaughter and carcass traits, carcass measurement, amount of worthy meat from each animal and phenotypic correlations among some carcass traits were determined. Chilling loss, slaughter weight and hot and cold carcass weights were 5.27%, 496.44 kg, 234.60 kg and 222.16 kg, respectively in males and 5.43%, 515.34 kg, 236.08 kg and 223.00 kg, respectively for females (P > 0.05). The ratio of skin and four leg weights (P < 0.05) and skin, head and the legs weights to the live-weight (P < 0.01) were found significantly higher in males than in female buffalos. In addition, from worthy meat, short loin was higher in males compared to females (P < 0.05). In this study, it is concluded that, generally carcass yield and amount of worthy meat in carcass tends to be higher in male water buffalo compared to females.  相似文献   

12.
Carcass data from more than 4,400 Southdown x Romney ewe and wether lambs collected over a 16-yr period were analyzed for the effects of sex, rearing status, and growth rate. Ewe lambs grew more slowly than wethers and had .78 kg less carcass weight at the same age. The carcass weight advantage for wethers was nearly all caused by heavier fat-free weight. Based on fat depths, the fat on ewe lambs was distributed in more anterior and ventral parts of the carcass relative to wether lambs. Lambs reared as twins had 1.73 kg less carcass weight and correspondingly reduced carcass measurements compared with lambs reared as singles. Sex and rearing status interacted for some traits. However, in no case was a significant sex difference reversed in single- and twin-related lambs. Growth rate effects were determined by regressing average change in carcass measurements on average carcass weight gain over a 5-wk period. When carcass weight remained constant over a 5-wk period, fat weight increased by .12 kg, fat-free weight and muscle measurements decreased, and bone lengths increased. For each kilogram of increase in 5-wk carcass weight gain, the marginal increase in fat weight was .41 kg and that of fat-free weight was .59 kg. At the average 5-wk carcass weight gain of 1.4 kg, fat and fat-free gains were As carcass weight gain increased above 1.4 kg, fat-free gain exceeded fat gain.  相似文献   

13.
Liquid scintillation detection of potassium-40 was used to estimate pork carcass composition of 124 boars, barrows and gilts. Pigs were fed to five live weights (23, 45, 68, 91 and 114 kg) and 40K emissions were determined on live pigs in a whole body counter (WBC) equipped with a two-pi liquid scintillation detector. Then, pigs were slaughtered conventionally and the right side of each carcass was weighed, 40K emissions of this carcass side was determined in the WBC and total grams of potassium were calculated. The right side of each carcass was ground, sampled and analyzed for fat, protein, moisture and potassium. Fat, protein, moisture and overall potassium percentage means were 23.9 +/- 7.2, 16.5 +/- .94, 57.0 +/- 6.5 and .25 +/- .02, respectively. Whole body counter carcass potassium was highly correlated (P less than .01) to chemically determined carcass potassium (r = .70). Percentage of fat, protein and moisture prediction equations were formed by stepwise regression using the linear, quadratic and interactive effects of live animal and carcass side weight. Whole body counter live animal and carcass potassium and sex were utilized as independent variables. Carcass weight and 40K determined potassium of the carcass explained more of the variation in carcass composition than did live animal weight and 40K determined potassium of the live animal.  相似文献   

14.
Carcass and live measurements of 203 pigs representing seven genetic populations and four target live weights (100, 114, 128, and 152 kg) were used to evaluate alternative measures of carcass composition. Measures of carcass lean (fat tissue-free lean, FFLM; lipid-free soft tissue, LFSTIS; and dissected lean in the four lean cuts, DL), fat (total carcass fat tissue, TOFAT), and lipid mass (soft tissue lipid, STLIP) were evaluated. Overall, LFSTIS was 22.8% greater than FFLM (47.8 vs 38.9 kg) and TOFAT was 30% greater than STLIP (38.5 vs 29.6 kg). The allometric growth coefficients relative to carcass weight were different for the measures: b = 0.776, 0.828, 0.794, 1.37, and 1.49 for FFLM, LFSTIS, DL, TOFAT, and STLIP, respectively. At 90 kg carcass weight, the predicted growth of FFLM, LFSTIS, TOFAT, and STLIP was 0.314, 0.420, 0.553, and 0.446 kg/kg increase in carcass weight. The difference between FFLM and LFSTIS, representing nonlipid components of the carcass fat tissue, was greater for barrows than for gilts (9.2 vs 8.6 kg). Lipid-free soft tissue mass was predicted more accurately from carcass or live animal measurements than FFLM with smaller relative RSD (4.6 vs 6.5% of their mean values). The alternative measures of carcass composition were evaluated as predictors of empty body protein (MTPRO) and lipid (MTLIP) mass. Empty body protein was predicted with similar accuracy (R2 = 0.74 to 0.81) from either DL, FFLM, LFSTIS, or ribbed carcass measurements. Empty body lipid was predicted more accurately from TOFAT (R2 = 0.92) or STLIP (R2 = 0.93) than ribbed carcass measurements (R2 = 0.88). Although the alternative measures of lean mass (LFSTIS vs FFLM) and lipid mass (TOFAT vs STLIP) were highly related to each other (r = 0.93 to 0.98), they had different relative growth rates (allometric coefficients) and thus cannot be predicted as linear functions of the similar alternative variable without significant weight group biases. From the 100- to 152-kg target weight groups, gilts gained 12.9% greater FFLM and 12.1% greater MTPRO but only 4.4% greater LFSTIS than barrows. Fat-free lean mass is more precise as a measure of muscle growth and as a predictor of lysine requirements. Lipid-free soft tissue can be obtained more quickly and predicted more accurately from carcass or live animal measurements.  相似文献   

15.
试验测定了10头100kg杜洛克母猪不同胴体部位的肉质参数。结果提示,胴体部位对某些肉质参数有显著影响,与后腿肌肉相比,前肩肌肉系水力较好,肌纤维较细,肌内脂肪含量较高,剪切力值较低。  相似文献   

16.
选择体重35kg左右的杂交猪34头,采用饲养试验和屠宰试验,研究了育肥结束体重和屠宰体重对试验猪的肥育性能及胴体肉品质的影响。结果显示:育肥结束体重在85~110 kg阶段对试验猪的生长肥育性能没有显著的影响;屠宰体重除对屠宰率形成显著差异外,对试验猪的其它胴体性能及肉品质影响不明显;采用综合选择指数对试验猪肥育性能及胴体肉品质进行综合评定,结果显示,体重在95~100kg阶段结束育肥并屠宰的试验猪生长性能及胴体肉品质的综合选择指数最大。因此,在该试验日粮水平下杜莱商品猪的适宜育肥结束及屠宰体重为95~100kg。  相似文献   

17.
The purpose of this study was to examine the effects of dietary betaine over a range of concentrations (between 0 and 0.5%) on growth and body composition in young feed-restricted pigs. Betaine is associated with decreased lipid deposition and altered protein utilization in finishing pigs, and it has been suggested that the positive effects of betaine on growth and carcass composition may be greater in energy-restricted pigs. Thirty-two barrows (36 kg, n = 8 pigs per group) were restrictively fed one of four corn-soybean meal-skim milk based diets (18.6% crude protein, 3.23 Mcal ME/kg) and supplemented with 0, 0.125, 0.25, or 0.5% betaine. Feed allotment was adjusted weekly according to BW, such that average feed intake was approximately 1.7 kg for all groups. At 64 kg, pigs were slaughtered and visceral tissue was removed and weighed. Carcasses were chilled for 24 h to obtain carcass measurements. Subsequently, one-half of each carcass and whole visceral tissue were ground for chemical analysis. Linear regression analysis indicated that, as betaine content of the diet was elevated from 0 to 0.5%, carcass fat concentration (P = 0.06), P3 fat depth (P = 0.14) and viscera weight (P = 0.129) were decreased, whereas total carcass protein (P = 0.124), protein deposition rate (P = 0.98), and lean gain efficiency (P = 0.115) were increased. The greatest differences over control pigs were observed in pigs consuming 0.5% betaine, where carcass fat concentration and P3 fat depth were decreased by 10 and 26%, respectively. Other fat depth measurements were not different (P > 0.15) from those of control pigs. In addition, pigs consuming the highest betaine level had a 19% increase in the carcass protein:fat ratio, 23% higher carcass protein deposition rate, and a 24% increase in lean gain efficiency compared with controls. Dietary betaine had no effects (P > 0.15) on growth performance, visceral tissue chemical composition, carcass fat deposition rate, visceral fat and protein deposition rates, or serum urea and ammonia concentrations. These data suggest that betaine alters nutrient partitioning such that carcass protein deposition is enhanced at the expense of carcass fat and in part, visceral tissue.  相似文献   

18.
In order to evaluate the effect of slaughter weight and rearing system on the Chato Murciano pig carcass and meat quality traits, a total of 71 castrated male pigs were used. Forty-one pigs were reared in an outdoor system, divided in one heavy group (CHOHW) with an average live weight of 132.05 kg, and a second group with lower weights (CHOLW, 115.7 kg average). Simultaneously, 30 pigs were reared indoors and divided into one heavy group (CHIHW) with an average live weight of 144.3 kg, and a second group with lower weights (CHILW, 117.6 kg average).Heavier pigs showed higher values for several carcass parameters (hot carcass weight, carcass length, maximum perimeter of the ham, hand length, leg length, ham length, wrist perimeter) and meat cuts, higher Dorsal Fat Thickness (DFT) and Intramuscular Fat (IMF) levels, but no difference was found in the hot carcass yields (HCY). Differences in the colour parameters and several minerals (Ca, Mg, K and Na) were also due to the different slaughter weights. The rearing system had an influence on the HCY (it is higher in the outdoor system), on many carcass parameters, on meat the ultimate pH (it is higher for animals reared indoors) and on colour (this is variable). It also affected the levels of many minerals with the levels of Mg, P and K being higher for animals reared outdoors, whereas the Fe, Cu and Zn content were higher in the animals reared indoors. DFT and IMF levels were not influenced by the rearing system.  相似文献   

19.
This study aimed to evaluate the effects of different salinity levels in drinking water on the quantitative and qualitative characteristics of lamb carcass and meat. Ram lambs (n = 32) were distributed in a completely randomized design with four levels of salinity in the drinking water (640 mg of total dissolved solids (TDS)/L of water, 3188 mg TDS/L water, 5740 mg TDS/L water, and 8326 mg TDS/L water). After slaughter, blending, gutting, and skinning the carcass, hot and biological carcass yields were obtained. Then, the carcasses were cooled at 5 °C for 24 h, and then, the morphometric measurements and the cold carcass yield were determined and the commercial cuts made. In the Longissimus lumborum muscle color, water holding capacity, cooking loss, shear force, and chemical composition were determined. The yields of hot and cold carcass (46.10 and 44.90%), as well as losses to cooling (2.40%) were not affected (P > 0.05) by the salinity levels in the water ingested by the lambs. The meat shear force was 3.47 kg/cm2 and moisture, crude protein, ether extract, and ash were 73.62, 22.77, 2.5, and 4.3%, respectively. It is possible to supply water with salinity levels of up to 8326 mg TDS/L, because it did not affect the carcass and meat characteristics of Santa Inês lambs.  相似文献   

20.
Growth, development, and carcass composition in five genotypes of swine.   总被引:3,自引:0,他引:3  
An experiment with 127 barrows representing five genotypes, 1) H x HD, 2) SYN, 3) HD x L[YD], 4) L x YD, and 5) Y x L (H = Hampshire, D = Duroc, SYN = synthetic terminal sire line, L = Landrace, and Y = Yorkshire), was conducted to evaluate growth and development of swine from 59 to 127 kg live weight. Animals were allowed ad libitum access to a pelleted finishing diet containing 18.5% CP, .95% lysine, and 10.5% fat, with an energy density of 3,594 kcal of ME/kg. Pigs were serially slaughtered at either 59, 100, 114, or 127 kg live BW. After slaughter, carcasses were chilled and backfat was measured at four locations. The right side of each carcass was fabricated into primal cuts of ham, loin, Boston Butt, picnic, and belly. Composition of each primal cut was determined by physical dissection into lean, fat, bone, and skin. Estimated allometric growth coefficients for carcass length, carcass weight, and longissimus muscle area relative to BW; carcass lean, fat, bone, and skin relative to both BW and carcass weight; and lean in each of the primal cuts relative to total carcass lean did not differ (P greater than .05) among genotypes. Relative to BW, the pooled growth coefficient(s) for carcass weight was (were) greater (P less than .001) than unity, whereas those for carcass length, longissimus muscle area, and backfat at first rib were smaller (P less than .001) than unity. Those for other backfat measurements were close to 1.00. Relative to either BW or carcass weight, the pooled coefficient(s) for fat was (were) greater (P less than .001) than unity, whereas those for lean, bone, and skin were smaller (P less than .001) than unity. Growth of lean, backfat, bone, and skin in the carcass were nearly linearly associated with increases in BW. The increase in fat weight was curvilinear as the pig grew and was accelerated in later growth stages, indicating that carcass fat percentage increased with increased BW.  相似文献   

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