

Acta Veterinaria et Zootechnica Sinica ›› 2026, Vol. 57 ›› Issue (1): 167-180.doi: 10.11843/j.issn.0366-6964.2026.01.015
• ANIMAL GENETICS AND BREEDING • Previous Articles Next Articles
WANG Zhijing1,2(
), LIU Yingming1, GAO Zhenhua1(
), YIN Fuquan1(
)
Received:2025-06-05
Online:2026-01-23
Published:2026-01-26
Contact:
GAO Zhenhua, YIN Fuquan
E-mail:zhijingw@126.com;xmsgzhh@126.com;yinfuquan01@ 163.com;yinfuquan01@163.com
CLC Number:
WANG Zhijing, LIU Yingming, GAO Zhenhua, YIN Fuquan. Study on the Reciprocal Cross Effects of Hybrid Combinations between Kirin Chicken and Huaixiang Chicken[J]. Acta Veterinaria et Zootechnica Sinica, 2026, 57(1): 167-180.
Table 2
Average body weight of Huaixiang chicken, Kirin chicken and their hybrid first generation"
周龄 Week | 性别 Sex | 怀乡鸡 Huaixiang chicken | 粤西卷羽鸡 Kirin chicken | 正交鸡 Orthogonal chicken | 反交鸡 Reverse chicken | P值 P-value |
|---|---|---|---|---|---|---|
| 0 | 公 | 30.96±2.10 | 32.16±2.44 | 30.90±1.65 | 30.93±2.43 | >0.05 |
| 母 | 30.44±1.56 | 30.08±2.01 | 30.94±3.88 | 30.00±2.86 | >0.05 | |
| 1 | 公 | 60.94±9.11b | 84.03±11.51a | 85.39±11.39a | 79.65±10.84a | <0.05 |
| 母 | 57.79±8.73c | 88.62±15.40a | 72.86±11.94b | 72.39±11.32b | <0.05 | |
| 2 | 公 | 105.76±22.82b | 161.50±26.71a | 142.69±27.80a | 153.37±19.74a | <0.05 |
| 母 | 85.36±21.22b | 134.89±41.28a | 137.56±19.60a | 141.95±28.52a | <0.05 | |
| 3 | 公 | 154.87±26.27b | 204.90±26.48a | 199.81±20.63a | 217.71±31.26a | <0.05 |
| 母 | 131.07±30.41c | 199.26±28.20a | 168.34±23.63b | 213.18±38.88a | <0.05 | |
| 4 | 公 | 233.96±50.69b | 276.28±28.13a | 279.69±39.34a | 304.09±68.15a | <0.05 |
| 母 | 216.79±32.57b | 285.95±43.31a | 244.93±27.10b | 286.83±65.95a | <0.05 | |
| 5 | 公 | 266.60±48.60c | 348.62±25.43b | 345.31±33.30b | 415.88±65.63a | <0.05 |
| 母 | 268.09±42.77c | 313.83±35.11b | 289.65±39.40bc | 348.66±40.09a | <0.05 | |
| 6 | 公 | 363.97±59.57c | 433.15±63.62b | 434.25±53.00b | 577.90±82.96a | <0.05 |
| 母 | 331.04±62.85c | 397.83±40.61b | 383.17±49.03b | 453.29±58.72a | <0.05 | |
| 8 | 公 | 644.50±89.97b | 700.04±53.86b | 696.96±100.19b | 796.25±125.05a | <0.05 |
| 母 | 584.04±99.09c | 632.09±63.04bc | 655.88±63.07ab | 708.42±65.06a | <0.05 | |
| 10 | 公 | 896.00±115.13b | 937.04±36.21b | 987.71±141.23ab | 1 075.17±184.71a | <0.05 |
| 母 | 791.46±67.71c | 887.38±62.24b | 916.07±79.93ab | 962.08±111.12a | <0.05 | |
| 12 | 公 | 1 104.50±179.34b | 1 280.75±137.76a | 1 238.54±108.21ab | 1 273.33±214.55a | <0.05 |
| 母 | 976.17±87.76b | 1 160.00±102.92a | 1 125.54±63.72a | 1 168.63±123.35a | <0.05 | |
| 14 | 公 | 1 318.58±122.56b | 1 620.25±201.14a | 1 578.67±150.19a | 1 596.63±193.48a | <0.05 |
| 母 | 1 225.54±169.86 | 1 286.96±217.08 | 1 345.92±93.82 | 1 321.08±139.05 | >0.05 | |
| 16 | 公 | 1 582.63±189.05b | 1 733.78±257.57ab | 1 761.67±204.00ab | 1 790.69±187.52a | <0.05 |
| 母 | 1 422.50±217.51 | 1 471.41±174.08 | 1 459.17±119.12 | 1 448.82±118.51 | >0.05 |
Table 3
The absolute growth rate and the relative growth rate of Huaixiang chicken, Kirin chicken and their hybrid first generation"
周龄 Week | 绝对生长速度/(g· d-1) The absolute growth rate | 相对生长速度/% The relative growth rate | ||||||||||||||
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
怀乡公Huai- xiangcock | 怀乡母Huaixianghen | 粤西卷羽公 Kirin cock | 粤西卷羽母 Kirin hen | 正交公 Orthogonalcock | 正交母 Orthogonalhen | 反交公Reverse-crosscock | 反交母 Reverse-crossHen | 怀乡公Huaixiangcock | 怀乡母 Huaixianghen | 粤西卷羽公 Kirin cock | 粤西卷羽母 Kirin hen | 正交公 Orthogonalcock | 正交母 Orthogonalhen | 反交公Reverse-crosscock | 反交 母 Reverse-crosshen | |
| 1 | 4.28 | 3.91 | 7.41 | 8.36 | 7.78 | 5.99 | 6.96 | 6.06 | 65.24 | 62.00 | 89.28 | 98.64 | 93.71 | 80.77 | 88.12 | 82.80 |
| 2 | 6.40 | 3.94 | 11.07 | 6.61 | 8.19 | 9.24 | 10.53 | 9.94 | 53.77 | 38.52 | 63.10 | 41.40 | 50.25 | 61.50 | 63.27 | 64.91 |
| 3 | 7.02 | 6.53 | 6.20 | 9.20 | 8.16 | 4.40 | 9.19 | 10.18 | 37.69 | 42.24 | 23.69 | 38.53 | 33.35 | 20.12 | 34.68 | 40.11 |
| 4 | 11.30 | 12.25 | 10.20 | 12.38 | 11.41 | 10.94 | 12.34 | 10.52 | 40.68 | 49.28 | 29.67 | 35.73 | 33.32 | 37.07 | 33.11 | 29.46 |
| 5 | 4.66 | 7.33 | 10.33 | 3.98 | 9.37 | 6.39 | 15.97 | 8.83 | 13.04 | 21.16 | 23.15 | 9.30 | 21.00 | 16.73 | 31.05 | 19.46 |
| 6 | 13.91 | 8.99 | 12.08 | 12.00 | 12.71 | 13.36 | 23.15 | 14.95 | 30.88 | 21.01 | 21.63 | 23.61 | 22.82 | 27.80 | 32.61 | 26.09 |
| 8 | 20.04 | 18.07 | 19.06 | 16.73 | 18.77 | 19.48 | 15.60 | 18.22 | 55.63 | 55.30 | 47.10 | 45.49 | 46.45 | 52.49 | 31.78 | 43.92 |
| 10 | 17.96 | 14.82 | 16.93 | 18.24 | 20.77 | 18.59 | 19.92 | 18.12 | 32.65 | 30.16 | 28.95 | 33.60 | 34.52 | 33.10 | 29.81 | 30.37 |
| 12 | 14.89 | 13.19 | 24.55 | 19.47 | 17.92 | 14.96 | 14.15 | 14.75 | 20.84 | 20.90 | 31.00 | 26.63 | 22.53 | 20.52 | 16.88 | 19.39 |
| 14 | 15.29 | 17.81 | 24.25 | 9.07 | 24.30 | 15.74 | 23.09 | 10.89 | 17.67 | 22.65 | 23.41 | 10.38 | 24.15 | 17.83 | 22.53 | 12.25 |
| 16 | 18.86 | 14.07 | 8.11 | 13.18 | 13.07 | 8.09 | 13.86 | 9.12 | 18.20 | 14.88 | 6.77 | 13.37 | 10.96 | 8.07 | 11.46 | 9.22 |
Table 4
Comparison of chest muscle nutrient characteristics"
项目 Item | 性别 Sex | 怀乡鸡 Huaixiang chicken | 粤西卷羽鸡 Kirin chicken | 正交鸡 Orthogonal chicken | 反交鸡 Reverse chicken |
|---|---|---|---|---|---|
| 水分 Moisture | 公 | 73.30±0.81a | 71.38±1.06c | 72.61±1.17b | 71.89±0.67c |
| 母 | 72.83±1.03a | 71.09±0.99b | 72.40±0.65a | 71.46±0.49b | |
| 粗蛋白 Crude protein | 公 | 27.84±1.29a | 26.37±1.15b | 27.39±1.22a | 27.03±1.52ab |
| 母 | 23.29±1.00b | 24.24±0.85a | 23.46±0.69b | 24.34±0.49a | |
| 粗脂肪 Crude fat | 公 | 2.71±1.02 | 2.87±0.77 | 2.72±0.67 | 2.88±0.86 |
| 母 | 3.65±1.24 | 3.53±1.24 | 3.65±1.32 | 3.46±0.75 | |
| 粗灰分 Crude ash | 公 | 4.85±0.53 | 4.96±0.43 | 4.88±0.56 | 4.98±0.54 |
| 母 | 5.43±0.40 | 5.24±0.29 | 5.47±0.61 | 5.18±0.44 |
Table 5
Comparison of leg muscle nutrient characteristics"
项目 Item | 性别 Sex | 怀乡鸡 Huaixiang chicken | 粤西卷羽鸡 Kirin chicken | 正交鸡 Orthogonal chicken | 反交鸡 Reverse chicken | P值 P-value |
|---|---|---|---|---|---|---|
| 水分 Moisture | 公 | 73.25±1.38a | 70.94±1.24c | 72.10±1.22b | 71.66±1.28bc | <0.05 |
| 母 | 73.27±1.59a | 70.70±1.12c | 72.20±0.86b | 71.26±1.22c | <0.05 | |
| 粗蛋白 Crude protein | 公 | 22.00±2.06a | 20.67±1.60b | 21.92±1.30a | 20.38±1.27b | <0.05 |
| 母 | 19.63±1.57 | 19.55±1.25 | 19.67±2.86 | 19.23±1.38 | >0.05 | |
| 粗脂肪 Crude fat | 公 | 8.49±0.79b | 9.45±0.76a | 8.57±0.67b | 9.53±0.87a | <0.05 |
| 母 | 10.41±1.26 | 10.79±1.52 | 10.35±1.12 | 10.85±1.07 | >0.05 | |
| 粗灰分 Crude ash | 公 | 5.00±0.35 | 5.01±0.43 | 5.03±0.60 | 5.08±0.30 | >0.05 |
| 母 | 4.59±0.21b | 5.26±0.46a | 4.69±0.35b | 5.07±0.34a | <0.05 |
Table 6
Comparison of chest muscle tissue characteristics"
指标 Item | 性别 Sex | 怀乡鸡 Huaixiang chicken | 粤西卷羽鸡 Kirin chicken | 正交鸡 Orthogonal chicken | 反交鸡 Reverse chicken | P值 P-value |
|---|---|---|---|---|---|---|
| 肌纤维直径/μmMuscle fiber diameter | 公 | 17.20±1.81a | 14.52±1.44b | 17.46±1.96a | 16.80±1.93a | <0.05 |
| 母 | 17.13±1.75a | 15.90±1.95b | 17.95±1.95a | 17.35±2.31a | <0.05 | |
| 肌纤维密度/(N·mm‒2)Muscle fiber density | 公 | 1090.08±112.26a | 677.55±107.28b | 807.13±94.58ab | 834.33±81.29ab | <0.05 |
| 母 | 966.25±89.24a | 473.60±71.56d | 658.60±70.92c | 695.53±2.28b | <0.05 |
Table 7
Comparison of leg muscle tissue characteristics"
指标 Item | 性别 Sex | 怀乡鸡 Huaixiang chicken | 粤西卷羽鸡 Kirin chicken | 正交鸡 Orthogonal chicken | 反交鸡 Reverse chicken | P值 P-value |
|---|---|---|---|---|---|---|
| 肌纤维直径/μmMuscle fiber diameter | 公 | 18.64±2.17bc | 18.42±1.33c | 20.04±2.16a | 19.31±1.84ab | <0.05 |
| 母 | 19.38±2.81a | 16.94±4.10b | 19.41±2.39a | 18.72±1.98a | <0.05 | |
| 肌纤维密度/(N·mm‒2)Muscle fiber density | 公 | 775.40±97.80a | 497.90±40.72d | 587.78±79.94c | 679.93±98.26b | <0.05 |
| 母 | 666.28±111.02a | 485.15±44.47c | 589.20±86.95b | 727.45±93.21a | <0.05 |
Table 8
Correlation analysis between nutritional and tissue characteristics of chest muscles"
指标 Indicator | 水分 Moisture | 粗蛋白 Crude protein | 粗脂肪 Crude fat | 粗灰分Crude ash | 肌纤维直径 Muscle fiber diameter | 肌纤维密度 Muscle fiber density |
|---|---|---|---|---|---|---|
| 水分 Moisture | 1 | >0.05 | >0.05 | >0.05 | >0.05 | <0.01 |
| 粗蛋白 Crude protein | 0.256 | 1 | >0.05 | >0.05 | >0.05 | >0.05 |
| 粗脂肪 Crude fat | -0.241 | -0.990** | 1 | >0.05 | >0.05 | >0.05 |
| 粗灰分 Crude ash | -0.098 | -0.970** | 0.968** | 1 | >0.05 | >0.05 |
肌纤维直径 Muscle fiber diameter | 0.601 | -0.168 | 0.231 | 0.285 | 1 | >0.05 |
肌纤维密度 Muscle fiber density | 0.860** | 0.435 | -0.424 | -0.329 | 0.357 | 1 |
Table 9
Correlation analysis between nutritional and tissue characteristics of leg muscles"
指标 Item | 水分Moisture | 粗蛋白 Crude protein | 粗脂肪 Crude fat | 粗灰分Crude ash | 肌纤维直径 Muscle fiber diameter | 肌纤维密度 Muscle fiber density |
|---|---|---|---|---|---|---|
| 水分 Moisture | 1 | >0.05 | >0.05 | >0.05 | >0.05 | >0.05 |
| 粗蛋白 Crude protein | 0.368 | 1 | >0.01 | >0.05 | >0.05 | >0.05 |
| 粗脂肪 Crude fat | -0.386 | -0.985** | 1 | >0.05 | >0.05 | >0.05 |
| 粗灰分 Crude ash | -0.689 | 0.170 | -0.104 | 1 | >0.05 | >0.05 |
肌纤维直径 Muscle fiber diameter | 0.576 | 0.371 | -0.461 | -0.591 | 1 | >0.05 |
肌纤维密度 Muscle fiber density | 0.635 | 0.180 | -0.214 | -0.205 | 0.331 | 1 |
| [1] | 杜炳旺,陈 建,赵志远,等.信宜怀乡鸡的生长性能及部分肉质性状测定[J].家禽科学,2011,(5):15-20. |
| DU B W,CHEN J,ZHAO Z Y,et al.Growth performance and some meat quality traits of Xinyi Huaixiang Chickens[J].Poultry Science,2011,(5):15-20.(in Chinese) | |
| [2] | 王府建,焦振海,李 国,等.卷羽麒麟鸡快、慢羽品系生长发育规律对比分析[J].四川农业大学学报,2023,41(1):131-138+145. |
| WANG F J,JIAO Z H,LI G,et al.Comparative analysis of the growth and development of fast and slow feather iines of Kirin Chicken with frizzled feather[J].Journal of Sichuan Agricultural University,2023,41(1):131-138+145.(in Chinese) | |
| [3] | 王志敬,刘英明,高振华,等.怀乡鸡、粤西卷羽鸡及其杂交一代体尺性状和屠宰性能测定[J].四川农业大学学报,2025,43(3):744-754. |
| WANG Z J,LIU Y M,GAO Z H,et al.Determination of body measurements and slaughter performance of Huaixiang Chicken,Kirin Chicken and their hybrid generation[J].Journal of Sichuan Agricultural University,2025,43(3):744-754.(in Chinese) | |
| [4] | 李乃宾.贵妃鸡、麒麟鸡及其杂交后代重要性状比较和Δ6-脂肪酸脱氢酶基因的表达研究[D].湛江:广东海洋大学,2015. |
| LI N B.The comparative study of main charactersof Princess Chicken,Kirin Chicken and F1 hybrids and delta 6-fatty acid dehydrogenase gene expression[D].Zhanjiang:Guangdong Ocean Uiniversity,2015.(in Chinese) | |
| [5] | 赵志远.贵妃鸡与怀乡鸡杂交效果观察及Ex-FABP基因分子遗传特征研究[D].湛江:广东海洋大学,2010. |
| ZHAO Z Y.The study of crossing effect of Princess and Huaixiang Chickens and analysis of the molecular genetic characteristics of Ex-FABP gene[D].Zhanjiang:Guangdong Ocean Uiniversity,2010.(in Chinese) | |
| [6] | ULLENGALA R,RAO S V,VIJAYKUMA,et al.Evaluation of growth performance and economic viability of meat type crossbred chicken variety in farmer’s fields under intensive management[J].In J Poult Sci,2021,56(2):101-106. |
| [7] | SUNGKHAPREECHA P,CHANKITISAKUL V,DUANGJINDAM,et al.Combining abilities,heterosis,growth performance,and carcass characteristics in a diallel cross from black-bone chickens and thai native chickens[J].Animals,2022,12(13):1602. |
| [8] | 管红尔.广元灰鸡及其杂交组合生长性能、屠宰性能、肉品质的效果分析[D].雅安:四川农业大学,2020. |
| GUAN H E.Analysis of growth performance,slaughter performance and meat quality of Guangyuan Gray Chickens and their hybrid combinations[D].Yaan:Sichuan Agricultural University,2020.(in Chinese) | |
| [9] | OBREMSKI K,TYBURSKI J,WOJTACHA P,et al.Assessment of the economic profitability of fattening selected chicken genotypes in an organic farm[J].Agriculture,2024,14(1):10. |
| [10] | 吴 迪.瑶鸡和济宁百日鸡正反交生产性能及肠道微生物多样性分析[D].泰安:山东农业大学,2023. |
| WU D.Analysis of production performance and intestinal microbial diversity in reciprocal crosses of Yao chickens and Jining Hundred-Day chickens[D].Taian:Shandong Agricultural University,2023.(in Chinese) | |
| [11] | 侯英东,耿晓文,张志远,等.固始鸡A系与矮小贵妃鸡杂交杂交后代生长性能探究及最佳生长曲线拟合[J].中国家禽,2023:1-7. |
| HOU Y D,GEN X W,ZHANG Z Y,et al.Study on growth performance and optimal growth curve fitting of F1 generation from crosses between Gushi chicken line A and dwarf Guifei chicken[J].China Poultry,2023,1-7 (in Chinese) | |
| [12] | LIU J,LIU D H,ZHENG A R,et al.Haem-mediated protein oxidation affects water-holding capacity of beef during refrigerated storage[J].Food Chemistry-X,2022,14:100304. |
| [13] | SULIMAN G M,HUSSEIN E O S,Al-OWAIMER A N,et al.Betaine and nano-emulsified vegetable oil supplementation for improving carcass and meat quality characteristics of broiler chickens under heat stress conditions[J].Front Vet Sci,2023,10:1147020. |
| [14] | SCHUMACHER M,DEL CURTO-WYFFELS H,THOMSON J,et al.Fat deposition and fat effects on meat quality-a review[J].Animals,2022,12:1550. |
| [15] | WENG K Q,HUO W R,GU T T,et al.Quantitative phosphoproteomic analysis unveil the effect of marketable ages on meat quality in geese[J].Food Chem,2021,361:130093. |
| [16] | LIU S Q,DU M,TU Y A,et al.Fermented mixed feed alters growth performance,carcass traits,meat quality and muscle fatty acid and amino acid profiles in finishing pigs[J].Anim Nutr,2023,12:87-95. |
| [17] | ZHANG Y,CAO Z,WANG L D,et al.Effects of linseed oil supplementation duration on fatty acid profile and fatty acid metabolism-related genes in the muscles of Chinese crested white ducks[J].Poult Sci,2023,102(10):102896. |
| [18] | 施力光,胡海超,彭维祺,等.儋州鸡和文昌鸡屠宰性能和肉品质比较研究[J].家畜生态学报,2018,39(4):72-74. |
| SHI L G,HU H C,PENG W Q,et al.Comparative study on slaughter performance and meat quality of Danzhou chickens and Wenchang chickens[J].Journal of Domestic Animal Ecology,2018,39(4),72-74. (in Chinese) | |
| [19] | 黄玉萍.京海黄鸡及其杂交配套组合肉品质的研究[D].扬州:扬州大学,2012. |
| HUANG Y P.Study on meat quality of Jinghai yellow chickens and their hybrid combinations[D].Yangzhou:Yangzhou University,2012.(in Chinese) | |
| [20] | 李培峰,张 旗,魏清宇,等.边鸡及其杂交组合肌肉品质的比较分析[J].家畜生态学报,2023,44(12):42-47. |
| LI P F,ZHANG Q,WEI Q Y,et al.Comparative analysis of muscle quality in Bian Chickens and their hybrid combinations[J].Journal of Domestic Animal Ecology,2023,44(12),42-47.(in Chinese) | |
| [21] | MO M J,ZHANG Z H,WANG X T,et al.Molecular mechanisms underlying the impact of muscle fiber types on meat quality in livestock and poultry[J].Front Vet Sci,2023,10:1284551. |
| [22] | DENG K P,LIU Z P,SU Y L,et al.Comparison of muscle fiber characteristics and meat quality between newborn and adult Haimen goats[J].Meat Sci,2024,207:109361. |
| [23] | QI K K,MEN X M,WU J,et al.Rearing pattern alters porcine myofiber type,fat deposition,associated microbial communities and functional capacity[J].BMC Microbiol,2019,19(1):181. |
| [24] | HUO W R,WENG K Q,LI Y,et al.Comparison of muscle fiber characteristics and glycolytic potential between slow- and fast-growingbroilers[J].Poultry Science,2022,101(3):101649. |
| [25] | 王 婷,胡小爱,姚亚铃,等.雪峰乌骨鸡配套系母本与商品代生长性能、屠宰性能和肉品质的比较分析[J].中国畜牧杂志,2024,60(6):121-127. |
| WANG T,HU X A,YAO Y L,et al.Comparative analysis of growth performance,slaughter performance and meat quality between maternal line and commercial line of Xuefeng Black-bone Chicken[J].Chinese Journal of Animal Science,2024,60(6),121-127. (in Chinese) | |
| [26] | 李 洁,赵生国,王建福,等.‘太平鸡’‘海兰褐鸡’及其杂交一代屠宰性能及肉品质比较分析[J].甘肃农业大学学报,2020,55(1):196-203. |
| LI J,ZHAO S G,WANG J F,et al.Comparative analysis of slaughter performance and meat quality among 'Taiping Chicken,Hy-Line Brown Chicken and their hybrid F1 generation[J].Journal of Gansu Agricultural University,2020,55(1),196-203.(in Chinese) | |
| [27] | U-CHUPAJ J,MALILA Y,GAMONPILAS C,et al.Differences in textural properties of cooked caponized and broiler chicken breast meat[J].Poult Sci,2017,96(7):2491-2500. |
| [28] | TAO H,SI B W,XU W C,et al.Effect of Broussonetia Papyrifera L.silage on blood biochemical parameters,growth performance,meat amino acids and fatty acids compositions in beef cattle [J].Asian-Australas J Anim Sci,2020,33(5):732-741. |
| [29] | ZHANG J P,WEI Q X,LI Q L,et al.Effects of hybrid Broussonetia Papyrifera silage on growth performance,visceral organs,blood biochemical indices,antioxidant indices,and carcass traits in dairy goats[J].Anim Feed Sci Technol,2022,292:115435. |
| [30] | DAI Z C,FENG M W,FENG C G,et al.Effects of sex on meat quality traits,amino acid and fatty acid compositions,and plasma metabolome profiles in White King squabs[J ].Poult Sci,2024,103(4):103524. |
| [31] | WANG T T,FENG X C,LI L Z,et al.Effects of quercetin on tenderness,apoptotic and autophagy signalling in chickens during post-mortem ageing[J].Food Chem,2022,383:132409. |
| [32] | CAO G T,WANG H X,YU Y,et al.Dietary bamboo leafflavonoidsimprove quality and microstructure of broiler meat bychanging untargeted metabolome[J].J Anim Sci Biotechnol,2023,14(1):52. |
| [33] | CHODOVÁD,TŮUMOVÁ M,KETTA M,et al.Breast meat quality in males and females of fast-,medium- and slow-growing chickens fed diets of 2protein levels[J].Poult Sci,2021,100(4):100997. |
| [34] | LI J J,YANG C W,PENG H,et al.Effects of slaughter age on muscle characteristics and meat quality traits of Da-Heng meat type birds[J].Animals (Basel),2020,10(1):69. |
| [35] | ZHANG Y,ZENG Q F,BAI S P,et al.Calcium supplementation in low nutrient density diet for meat ducks improves breast meat tenderness associated with myocyte apoptosis and proteolytic changes[J].Anim Nutr,2022,9:49-59. |
| [36] | WENG K Q,HUO W R,LI Y,et al.Fiber characteristics and meat quality of different muscular tissues from slow-and fast-growing broilers[J].Poult Sci,2022,101(1):101537. |
| [37] | LIN Y,YAN H,CAO L,et al.Maternal organic selenium supplementation during gestation enhances muscle fiber area and muscle fiber maturation of offspring in porcine model[J].J Anim Sci Biotechnol,2022,13(1):121. |
| [38] | LIU S,YU H B,ZHU L W,et al.Dietary nano-Se supplementation regulates lipid deposition,protein synthesis and muscle fibre formation in grass carp fed with high-fat diet[J].Br J Nutr,2023,130(10):1678-1688. |
| [39] | HOU X H,LIU Q F,MENG Q S,et al.TMT-based quantitative proteomic analysis of porcine muscle associated with postmortem meat quality[J].Food Chem,2020,328:127133. |
| [40] | ISMAIL I,JOO S T.Poultry meat quality in relation to muscle growth and muscle fiber characteristics[J].Korean J Food Sci Anim Res,2017,37(6):873-883. |
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