Acta Prataculturae Sinica ›› 2024, Vol. 33 ›› Issue (4): 199-209.DOI: 10.11686/cyxb2023180
Cheng-fang GAO(), Lei SANG, Shi-kun SUN, Dong-jin CHEN, Jin-xiang WANG, Xi-ping XIE()
Received:
2023-05-30
Revised:
2023-07-17
Online:
2024-04-20
Published:
2024-01-15
Contact:
Xi-ping XIE
Cheng-fang GAO, Lei SANG, Shi-kun SUN, Dong-jin CHEN, Jin-xiang WANG, Xi-ping XIE. Effects of dietary supplementation with kudzu vine on apparent nutrient digestibility, intestinal development, and intestinal digestive enzyme activities in growing meat rabbits[J]. Acta Prataculturae Sinica, 2024, 33(4): 199-209.
原料 Ingredient (%) | 组Group | 营养水平 Nutrient level | 组Group | ||||||
---|---|---|---|---|---|---|---|---|---|
A | B | C | D | A | B | C | D | ||
玉米Corn | 29.0 | 24.0 | 14.0 | 15.0 | 干物质Dry matter (DM, %) | 88.45 | 90.74 | 91.36 | 90.54 |
米糠Rice bran | 2.0 | 2.0 | 2.0 | 2.0 | 消化能Digestible energy (DE, MJ·kg-1) | 10.03 | 10.16 | 10.18 | 10.12 |
次粉Wheat midding | 5.0 | 5.0 | 5.0 | 4.0 | 粗蛋白Crude protein (CP, %) | 14.33 | 14.33 | 14.55 | 14.23 |
豆粕Soybean meal | 11.0 | 8.0 | 4.0 | 1.0 | 粗纤维Crude fibre (CF, %) | 12.00 | 12.84 | 12.75 | 12.77 |
葛藤Kudzu vine | 0.0 | 15.0 | 25.0 | 35.0 | 粗脂肪Ether extract (EE, %) | 7.69 | 6.06 | 5.79 | 6.19 |
麦芽根Barley malt sprouts | 6.0 | 4.0 | 2.0 | 2.0 | 中性洗涤纤维Neutral detergent fiber (NDF, %) | 29.66 | 36.17 | 34.31 | 33.30 |
米糠粕Rice bran meal | 6.0 | 9.0 | 24.0 | 25.0 | 酸性洗涤纤维Acid detergent fiber (ADF, %) | 22.38 | 28.43 | 26.09 | 23.21 |
统糠Unified | 22.0 | 13.0 | 4.0 | 2.0 | 酸性木质素Acidic lignin (ADL, %) | 15.41 | 8.70 | 13.80 | 12.78 |
甜菜渣Beet slag | 14.0 | 15.0 | 15.0 | 9.0 | 纤维素Cellulose (%) | 6.97 | 19.73 | 12.30 | 10.44 |
氯化钠NaCl | 0.5 | 0.5 | 0.5 | 0.5 | 半纤维素Hemicellulose (%) | 7.28 | 7.74 | 8.22 | 10.09 |
CaHPO4 | 0.5 | 0.5 | 0.5 | 0.5 | 果胶(半乳糖醛酸)Galacturonic acid (%) | 16.58 | 28.48 | 31.76 | 38.76 |
预混料Premix | 4.0 | 4.0 | 4.0 | 4.0 | 非纤维性碳水化合物NFC (%) | 38.26 | 33.06 | 38.71 | 35.17 |
全部Total | 100.0 | 100.0 | 100.0 | 100.0 | 可溶性纤维Digestible fiber (%) | 30.83 | 55.95 | 52.28 | 59.29 |
钙Ca (%) | 0.97 | 1.04 | 1.30 | 1.30 | |||||
总磷Total phosphorus (TP, %) | 0.59 | 0.53 | 0.83 | 0.94 | |||||
粗灰分Coarse ash (Ash, %) | 10.06 | 10.38 | 6.64 | 11.11 |
Table 1 Composition and nutrient levels of diets (air-dry basis)
原料 Ingredient (%) | 组Group | 营养水平 Nutrient level | 组Group | ||||||
---|---|---|---|---|---|---|---|---|---|
A | B | C | D | A | B | C | D | ||
玉米Corn | 29.0 | 24.0 | 14.0 | 15.0 | 干物质Dry matter (DM, %) | 88.45 | 90.74 | 91.36 | 90.54 |
米糠Rice bran | 2.0 | 2.0 | 2.0 | 2.0 | 消化能Digestible energy (DE, MJ·kg-1) | 10.03 | 10.16 | 10.18 | 10.12 |
次粉Wheat midding | 5.0 | 5.0 | 5.0 | 4.0 | 粗蛋白Crude protein (CP, %) | 14.33 | 14.33 | 14.55 | 14.23 |
豆粕Soybean meal | 11.0 | 8.0 | 4.0 | 1.0 | 粗纤维Crude fibre (CF, %) | 12.00 | 12.84 | 12.75 | 12.77 |
葛藤Kudzu vine | 0.0 | 15.0 | 25.0 | 35.0 | 粗脂肪Ether extract (EE, %) | 7.69 | 6.06 | 5.79 | 6.19 |
麦芽根Barley malt sprouts | 6.0 | 4.0 | 2.0 | 2.0 | 中性洗涤纤维Neutral detergent fiber (NDF, %) | 29.66 | 36.17 | 34.31 | 33.30 |
米糠粕Rice bran meal | 6.0 | 9.0 | 24.0 | 25.0 | 酸性洗涤纤维Acid detergent fiber (ADF, %) | 22.38 | 28.43 | 26.09 | 23.21 |
统糠Unified | 22.0 | 13.0 | 4.0 | 2.0 | 酸性木质素Acidic lignin (ADL, %) | 15.41 | 8.70 | 13.80 | 12.78 |
甜菜渣Beet slag | 14.0 | 15.0 | 15.0 | 9.0 | 纤维素Cellulose (%) | 6.97 | 19.73 | 12.30 | 10.44 |
氯化钠NaCl | 0.5 | 0.5 | 0.5 | 0.5 | 半纤维素Hemicellulose (%) | 7.28 | 7.74 | 8.22 | 10.09 |
CaHPO4 | 0.5 | 0.5 | 0.5 | 0.5 | 果胶(半乳糖醛酸)Galacturonic acid (%) | 16.58 | 28.48 | 31.76 | 38.76 |
预混料Premix | 4.0 | 4.0 | 4.0 | 4.0 | 非纤维性碳水化合物NFC (%) | 38.26 | 33.06 | 38.71 | 35.17 |
全部Total | 100.0 | 100.0 | 100.0 | 100.0 | 可溶性纤维Digestible fiber (%) | 30.83 | 55.95 | 52.28 | 59.29 |
钙Ca (%) | 0.97 | 1.04 | 1.30 | 1.30 | |||||
总磷Total phosphorus (TP, %) | 0.59 | 0.53 | 0.83 | 0.94 | |||||
粗灰分Coarse ash (Ash, %) | 10.06 | 10.38 | 6.64 | 11.11 |
项目Item | A组Group A | B组Group B | C组Group C | D组Group D | P 值P value |
---|---|---|---|---|---|
干物质Dry matter | 81.68±1.26Cc | 82.64±2.51Cc | 85.27±1.57Bb | 87.46±0.97Aa | <0.001 |
粗蛋白Crude protein | 80.78±2.54Bb | 80.50±2.48Bb | 86.18±2.52Aa | 88.97±3.35Aa | <0.001 |
粗纤维Crude fibre | 33.45±4.13Ab | 39.58±4.74Ab | 49.13±14.33Aab | 52.29±11.73Aa | 0.049 |
中性洗涤纤维Neutral detergent fiber | 58.79±2.57Ab | 61.55±3.48Ab | 68.06±8.61Aab | 74.07±5.79Aa | 0.026 |
酸性洗涤纤维Acid detergent fiber | 64.26±14.99Ab | 65.34±2.45Ab | 69.53±7.13Aab | 73.54±5.60Aa | 0.047 |
酸性木质素Acidic lignin | 36.98±6.98Bb | 30.36±7.99Bb | 66.46±11.11Aa | 74.49±6.13Aa | <0.001 |
粗脂肪Ether extract | 70.33±5.59Bb | 74.26±2.92Bb | 75.44±8.36Bb | 84.54±2.95Aa | 0.009 |
半乳糖醛酸Galacturonic acid | 94.84±5.69Bc | 95.37±4.87Bc | 97.21±6.51Ab | 98.27±4.62Aa | 0.009 |
Table 2 Effect of different kudzu vine proportion on nutrient apparent digestibility of rabbits (%)
项目Item | A组Group A | B组Group B | C组Group C | D组Group D | P 值P value |
---|---|---|---|---|---|
干物质Dry matter | 81.68±1.26Cc | 82.64±2.51Cc | 85.27±1.57Bb | 87.46±0.97Aa | <0.001 |
粗蛋白Crude protein | 80.78±2.54Bb | 80.50±2.48Bb | 86.18±2.52Aa | 88.97±3.35Aa | <0.001 |
粗纤维Crude fibre | 33.45±4.13Ab | 39.58±4.74Ab | 49.13±14.33Aab | 52.29±11.73Aa | 0.049 |
中性洗涤纤维Neutral detergent fiber | 58.79±2.57Ab | 61.55±3.48Ab | 68.06±8.61Aab | 74.07±5.79Aa | 0.026 |
酸性洗涤纤维Acid detergent fiber | 64.26±14.99Ab | 65.34±2.45Ab | 69.53±7.13Aab | 73.54±5.60Aa | 0.047 |
酸性木质素Acidic lignin | 36.98±6.98Bb | 30.36±7.99Bb | 66.46±11.11Aa | 74.49±6.13Aa | <0.001 |
粗脂肪Ether extract | 70.33±5.59Bb | 74.26±2.92Bb | 75.44±8.36Bb | 84.54±2.95Aa | 0.009 |
半乳糖醛酸Galacturonic acid | 94.84±5.69Bc | 95.37±4.87Bc | 97.21±6.51Ab | 98.27±4.62Aa | 0.009 |
项目Item | A组Group A | B组Group B | C组Group C | D组Group D | P 值P value |
---|---|---|---|---|---|
纤维素酶Cellulase | 393.56±75.42Ab | 538.35±58.96Aa | 480.38±129.13Aab | 396.55±29.20Ab | 0.034 |
半纤维素酶Hemicellulase | 26.40±3.57Ab | 51.00±10.08Aa | 32.92±12.04Aab | 34.09±5.74Aab | 0.011 |
果胶酶Pectase | 0.61±0.05Ab | 0.77±0.11Aa | 0.67±0.13Aab | 0.68±0.15Aab | 0.023 |
Table 3 Effect of different kudzu vine proportion on cecum digestive enzyme activities of rabbits (U·mL-1)
项目Item | A组Group A | B组Group B | C组Group C | D组Group D | P 值P value |
---|---|---|---|---|---|
纤维素酶Cellulase | 393.56±75.42Ab | 538.35±58.96Aa | 480.38±129.13Aab | 396.55±29.20Ab | 0.034 |
半纤维素酶Hemicellulase | 26.40±3.57Ab | 51.00±10.08Aa | 32.92±12.04Aab | 34.09±5.74Aab | 0.011 |
果胶酶Pectase | 0.61±0.05Ab | 0.77±0.11Aa | 0.67±0.13Aab | 0.68±0.15Aab | 0.023 |
项目 Item | 相对长度Relative length (%) | ||||
---|---|---|---|---|---|
A组Group A | B组Group B | C组Group C | D组Group D | P值P value | |
胃Stomach | 0.25±0.03Aa | 0.25±0.02Aa | 0.24±0.01Aa | 0.25±0.02Aa | 0.212 |
盲肠Cecum | 1.20±0.11Ab | 1.26±0.14Ab | 1.33±0.10Aab | 1.42±0.16Aa | 0.031 |
小肠Small intestine | 8.70±1.24Aa | 8.01±0.39Aa | 7.84±0.83Aa | 7.74±0.80Aa | 0.525 |
项目 Item | 相对重量Relative weight (g·kg-1) | ||||
A组Group A | B组Group B | C组Group C | D组Group D | P值P value | |
胃Stomach | 10.92±0.88Ab | 11.12±1.28Ab | 11.88±0.99Aab | 12.73±0.64Aa | 0.015 |
盲肠Cecum | 15.94±1.86Ab | 18.80±1.95Aa | 19.00±4.12Aa | 18.33±1.91Aab | 0.046 |
小肠Small intestine | 25.22±3.57Ab | 32.39±1.21Aa | 28.77±5.15Aa | 29.08±2.41Aa | 0.024 |
Table 4 Effect of different kudzu vine proportion on relative length and relative weight of rabbits
项目 Item | 相对长度Relative length (%) | ||||
---|---|---|---|---|---|
A组Group A | B组Group B | C组Group C | D组Group D | P值P value | |
胃Stomach | 0.25±0.03Aa | 0.25±0.02Aa | 0.24±0.01Aa | 0.25±0.02Aa | 0.212 |
盲肠Cecum | 1.20±0.11Ab | 1.26±0.14Ab | 1.33±0.10Aab | 1.42±0.16Aa | 0.031 |
小肠Small intestine | 8.70±1.24Aa | 8.01±0.39Aa | 7.84±0.83Aa | 7.74±0.80Aa | 0.525 |
项目 Item | 相对重量Relative weight (g·kg-1) | ||||
A组Group A | B组Group B | C组Group C | D组Group D | P值P value | |
胃Stomach | 10.92±0.88Ab | 11.12±1.28Ab | 11.88±0.99Aab | 12.73±0.64Aa | 0.015 |
盲肠Cecum | 15.94±1.86Ab | 18.80±1.95Aa | 19.00±4.12Aa | 18.33±1.91Aab | 0.046 |
小肠Small intestine | 25.22±3.57Ab | 32.39±1.21Aa | 28.77±5.15Aa | 29.08±2.41Aa | 0.024 |
项目Item | 部位Organ | A组Group A | B组Group B | C组Group C | D组Group D | P 值P value |
---|---|---|---|---|---|---|
绒毛长度 Villous length (V, mm) | 空肠Jejunum | 0.57±0.21Aab | 0.56±0.05Ab | 0.73±0.12Aab | 0.74±0.15Aa | 0.033 |
回肠Ileum | 0.59±0.08Ab | 0.59±0.09Ab | 0.75±0.12Aa | 0.75±0.22Aa | 0.016 | |
十二指肠Duodenum | 0.86±0.14Ab | 1.05±0.12Aa | 0.93±0.13Aab | 0.99±0.08Aa | 0.011 | |
隐窝深度 Crypt depth (C, mm) | 空肠Jejunum | 0.14±0.03Aa | 0.11±0.03Ab | 0.10±0.02Ab | 0.12±0.01Aab | 0.018 |
回肠Ileum | 0.12±0.03Aa | 0.12±0.04Aab | 0.11±0.00Ab | 0.10±0.00Aab | 0.013 | |
十二指肠Duodenum | 0.13±0.05Aa | 0.12±0.01Aa | 0.11±0.03Aa | 0.11±0.11Aa | 0.368 | |
V/C | 空肠Jejunum | 4.30±1.61Ab | 5.49±0.92Aab | 6.47±1.24Aa | 5.89±1.37Aa | 0.048 |
回肠Ileum | 5.07±1.57Ac | 5.41±1.86Abc | 7.23±1.23Aa | 6.85±2.04Aab | 0.042 | |
十二指肠Duodenum | 6.65±2.44Ab | 8.11±2.68Aa | 8.06±1.04Aab | 9.07±2.85Aa | 0.031 | |
黏膜层厚度 Mucosal thickness (mm) | 空肠Jejunum | 0.79±0.23Aa | 0.67±0.06Aa | 0.80±0.16Aa | 0.81±0.20Aa | 0.235 |
回肠Ileum | 0.79±0.11Aab | 0.70±0.06Ab | 0.82±0.07Aa | 0.76±0.12Aab | 0.024 | |
十二指肠Duodenum | 1.00±0.12Bb | 1.24±0.11Aa | 1.13±0.10Aa | 1.12±0.08ABab | 0.005 |
Table 5 Effect of different kudzu vine proportion on enteric canal morphology indexes of rabbits
项目Item | 部位Organ | A组Group A | B组Group B | C组Group C | D组Group D | P 值P value |
---|---|---|---|---|---|---|
绒毛长度 Villous length (V, mm) | 空肠Jejunum | 0.57±0.21Aab | 0.56±0.05Ab | 0.73±0.12Aab | 0.74±0.15Aa | 0.033 |
回肠Ileum | 0.59±0.08Ab | 0.59±0.09Ab | 0.75±0.12Aa | 0.75±0.22Aa | 0.016 | |
十二指肠Duodenum | 0.86±0.14Ab | 1.05±0.12Aa | 0.93±0.13Aab | 0.99±0.08Aa | 0.011 | |
隐窝深度 Crypt depth (C, mm) | 空肠Jejunum | 0.14±0.03Aa | 0.11±0.03Ab | 0.10±0.02Ab | 0.12±0.01Aab | 0.018 |
回肠Ileum | 0.12±0.03Aa | 0.12±0.04Aab | 0.11±0.00Ab | 0.10±0.00Aab | 0.013 | |
十二指肠Duodenum | 0.13±0.05Aa | 0.12±0.01Aa | 0.11±0.03Aa | 0.11±0.11Aa | 0.368 | |
V/C | 空肠Jejunum | 4.30±1.61Ab | 5.49±0.92Aab | 6.47±1.24Aa | 5.89±1.37Aa | 0.048 |
回肠Ileum | 5.07±1.57Ac | 5.41±1.86Abc | 7.23±1.23Aa | 6.85±2.04Aab | 0.042 | |
十二指肠Duodenum | 6.65±2.44Ab | 8.11±2.68Aa | 8.06±1.04Aab | 9.07±2.85Aa | 0.031 | |
黏膜层厚度 Mucosal thickness (mm) | 空肠Jejunum | 0.79±0.23Aa | 0.67±0.06Aa | 0.80±0.16Aa | 0.81±0.20Aa | 0.235 |
回肠Ileum | 0.79±0.11Aab | 0.70±0.06Ab | 0.82±0.07Aa | 0.76±0.12Aab | 0.024 | |
十二指肠Duodenum | 1.00±0.12Bb | 1.24±0.11Aa | 1.13±0.10Aa | 1.12±0.08ABab | 0.005 |
1 | Zhou J, Long W, Kui J X. Utilization value and development prospect of kudzu. Prataculture and Animal Husbandry, 2007(2): 35-38. |
周珺, 龙伟, 奎嘉祥. 葛藤的利用价值及开发前景. 草业与畜牧, 2007(2): 35-38. | |
2 | Li J N, Kang S H, Yang D M, et al. Effects of substituting dietary alfalfa meal with kudzu vine (Pueraria lobata) meal on serum biochemical indexes, apparent nutrient digestibility and growth performance in Boer crossbred goats. Acta Prataculturae Sinica, 2021, 30(8): 146-153. |
李俊年, 康绍华, 杨冬梅, 等. 葛藤草粉替代苜蓿草粉对波杂山羊血清生化指标、养分表观消化率和生产性能的影响. 草业学报, 2021, 30(8): 146-153. | |
3 | Yang D M, Li J N, Tao S L. Effects of tannic acid addition on the aerobic stability and mycotoxin content of kudzu vine silage. Acta Prataculturae Sinica, 2021, 30(8): 164-170. |
杨冬梅, 李俊年, 陶双伦. 添加单宁酸对青贮葛藤有氧稳定性霉菌素含量的影响. 草业学报, 2021, 30(8): 164-170. | |
4 | Tan J C. Nutritional value of Pueraria lobata and its feeding effect on broilers. Guiyang: Guizhou University, 2021. |
谭景晨. 葛藤营养价值及其对肉鸡饲喂效果评价. 贵阳: 贵州大学, 2021. | |
5 | Du J H, Chang B, Ge J, et al. Effects of kudzu vine replacing forage on performance of Oryctolagus cuniculus. China Animal Industry, 2015(4): 48-49. |
杜建华, 常宝, 葛剑, 等. 葛藤粉替代牧草对獭兔生产性能的影响. 中国畜牧业, 2015(4): 48-49. | |
6 | Lv M Y. Effects of kudzu vine flavonoids extract on growth performance and lipid metabolism of broilers. Nanchang: Jiangxi Agricultural University, 2017. |
吕梦云. 葛藤黄酮提取物对肉鸡生产性能和脂肪代谢的影响. 南昌: 江西农业大学, 2017. | |
7 | Dylan G, Safaa A. Kudzu forage quality evaluation as an animal feed source. American Journal of Plant Sciences, 2016, 7(4): 702-707. |
8 | Li L, Tang H J, Shan Y, et al. Food safety evaluation of cultivated kudzu vine (Pueraria thomsoii Benth). Food and Machinery, 2014, 30(3): 64-68, 173. |
李琳, 唐汉军, 单杨, 等. 栽培粉葛藤蔓的营养成分特性及其安全性评价. 食品与机械, 2014, 30(3): 64-68, 173. | |
9 | Kong X J, Study on extraction and purification process of total isoflavonoids from stem of Pueraria lobata (Willd.) Ohw and its antioxidant activity. Chongqing: Southwest University, 2009. |
孔祥建. 葛藤总黄酮的提取纯化及其抗氧化活性的研究. 重庆: 西南大学, 2009. | |
10 | Zhao H Y, Yu S Q, Jiang L S, et al. Research progress on metabolism of soybean isoflavone and its protective mechanism on intestine of animals. Chinese Journal of Animal Nutrition, 2022, 34(7): 4132-4142. |
赵慧颖, 余诗强, 蒋林树, 等. 大豆异黄酮的代谢及其对动物肠道保护机制的研究进展. 动物营养学报, 2022, 34(7): 4132-4142. | |
11 | Pu X X, Guo X F, Jiang C Y, et al. Effects of dietary non-fiber carbohydrate/neutral detergent fiber on nutrient digestion and rumen bacterial structure of Karakul sheep. Chinese Journal of Animal Nutrition, 2020, 32(1): 285-294. |
普宣宣, 郭雪峰, 蒋辰宇, 等. 饲粮非纤维性碳水化合物/中性洗涤纤维对卡拉库尔羊营养物质消化和瘤胃菌群结构的影响. 动物营养学报, 2020, 32(1): 285-294. | |
12 | GB/T 6432-2018. Determination of crude protein in feeds-Kjeldahl method. Beijing: State Administration for Market Regulation, 2018. |
GB/T 6432-2018. 饲料中粗蛋白的测定, 凯氏定氮法. 北京: 国家市场监督管理总局, 2018. | |
13 | Bao S D. Agrochemical analysis of soil. Beijing: China Agriculture Press, 2000: 325-331. |
鲍士旦. 土壤农化分析. 北京: 中国农业出版社, 2000: 325-331. | |
14 | GB/T 20805-2006. Determination of acid detergent lignin in feedstuffs. Beijing: Inspection and Quarantine of the People’s Republic of China, 2006. |
GB/T 20805-2006. 饲料中酸性洗涤木质素(ADL)的测定. 北京: 中华人民共和国国家质量监督检验检疫总局, 2006. | |
15 | GB/T 6436-2018. Determination of calcium in feeds. Beijing: State Administration for Market Regulation, 2018. |
GB/T 6436-2018. 饲料中钙的测定. 北京: 国家市场监督管理总局, 2018. | |
16 | GB/T 6437-2018. Determination of phosphorus in feeds-Spectrophotometry. Beijing: State Administration for Market Regulation, 2018. |
GB/T 6437-2018. 饲料中总磷的测定, 分光光度法. 北京: 国家市场监督管理总局, 2018. | |
17 | Yang D M, Tao S L, Liang J, et al. Effects of tannic acid additive on the quality of kudzu stem and leaf silage. Acta Agrestia Sinica, 2012, 20(4): 784-787. |
杨冬梅, 陶双伦, 梁静, 等. 添加单宁酸对青贮葛藤茎叶品质的影响. 草地学报, 2012, 20(4): 784-787. | |
18 | Hyeon-Jun C, Yoon-Hee K, Yun-Hwan K, et al. Antioxidant and antibacterial effects of medicinal plants and their stick-type medicinal concentrated beverages. Food Science and Biotechnology, 2020, 29(10): 1413-1423. |
19 | Zhan H J, Cao L, Ren K L, et al. Effects of “complex enzyme+citric acid+potassium dicarboxylate” combined additives on performance, nutrient apparent digestibilities, serum biochemical indexes and fur quality of growing rex rabbits. Chinese Journal of Animal Nutrition, 2023, 35(2): 1219-1230. |
詹海杰, 曹亮, 任克良, 等. “复合酶+柠檬酸+二甲酸钾” 组合添加剂对生长獭兔生产性能、养分表观消化率、血清生化指标及毛皮品质的影响. 动物营养学报, 2023, 35(2): 1219-1230. | |
20 | Wang C Y. Effect of soluble fiber in diet of growing rabbits. Chinese Journal of Rabbit Farming, 2012(12): 11-15. |
王春阳. 生长兔日粮可溶纤维的作用. 中国养兔, 2012(12): 11-15. | |
21 | Wang J F, Huang D R, Liu B C. Effect of soluble fiber on in vitro fermentation of cecum of Fujian yellow rabbit. Journal of Fujian Agriculture and Forestry University (Natural Science Edition), 2018, 47(2): 217-222. |
王建烽, 黄鼎瑞, 刘博超. 可溶性纤维对福建黄兔盲肠体外发酵的影响. 福建农林大学学报(自然科学版), 2018, 47(2): 217-222. | |
22 | Zhang L P, Wang J F, Li Z Z, et al. Effects of different sources of fiber diet on apparent digestibility, duodenal tissue morphology and cecal fiber digestive enzyme activity in Fujian yellow rabbits. China Animal Husbandry & Veterinary Medicine, 2021, 48(2): 501-508. |
张丽萍, 王建烽, 李真真, 等. 不同来源纤维饲粮对福建黄兔表观消化率、十二指肠组织形态及盲肠纤维消化酶活性的影响. 中国畜牧兽医, 2021, 48(2): 501-508. | |
23 | Hassan F A, Elkassas N E M, ElBltagy E A, et al. Dietary zinc-chitosan nanoparticles addition influences on growth performance, apparent total tract digestibility, carcass indices, and immune function in weaned rabbits. Animal Biotechnology, 2023: 1-9. |
24 | Lai J Y, Li X B. Chemical constituents, pharmacological effects and uses of Pueraria. Agriculture and Technology, 2018, 38(20): 36. |
赖建有, 李兴波. 葛根的化学成分和药理作用和用途. 农业与技术, 2018, 38(20): 36. | |
25 | Luo Q S, Du H Y, Xiong J H, et al. Extraction process optimization of Pueraria isoflavones and studies on its antioxidant activity. Journal of Chinese Institute of Food Science and Technology, 2015, 15(2): 104-110. |
罗秋水, 杜华英, 熊建华, 等. 葛根异黄酮类化合物提取工艺优化及其抗氧化活性研究. 中国食品学报, 2015, 15(2): 104-110. | |
26 | Liu Z H, Li N, Zheng Z, et al. Influence of Lonicera japonica and Radix puerariae crude extracts on the fecal microbiome and nutrient apparent digestibility of finishing pigs. Animals, 2022, 16(12): 2109. |
27 | Luo Z F, Zhao Y Y, Zeng L M, et al. Effects of fermented Radix puerariae residue on nutrient digestibility and reproductive performance of sows. Frontiers in Nutrition, 2021, 30(8): 715713-715721. |
28 | Blas C D, Wiseman J. Nutrition of the rabbit (2nd ed). Beijing: China Agriculture Press, 2010: 107-113. |
29 | Calvert R, Schneeman B O, Satchithanandam S, et al. Dietary fiber and intestinal adaptation: Effects on intestinal and pancreatic digestive enzyme activities. The American Journal of Clinical Nutrition, 1985, 41(6): 1249-1256. |
30 | Gidenne T, Jehl N, Segura M, et al. Microbial activity in the caecum of the rabbit around weaning: Impact of a dietary fibre deficiency and of intake level. Animal Feed Science and Technology, 2002, 99(1/2/3/4): 107-118. |
31 | Song Z Q, Gan Y M, Tan J R, et al. Effects of white clover on intestinal mucosal morphology, intestinal digestive enzyme activity and caecum fermentation of meat rabbits. Chinese Journal of Animal Nutrition, 2013, 25(8): 1878-1885. |
宋中齐, 干友民, 谭剑蓉, 等. 白三叶对肉兔肠黏膜形态、肠道消化酶活性和盲肠发酵的影响. 动物营养学报, 2013, 25(8): 1878-1885. | |
32 | Zhou W C. Effects of different levels of soluble fiber, starch and crude protein on growth performance, nutrient digestibility and carcass traits of meat rabbits. China Feed, 2018(22): 67-71. |
周万才. 不同纤维、淀粉和蛋白质水平日粮对肉兔生长性能、养分利用率及屠宰性能的影响. 中国饲料, 2018(22): 67-71. | |
33 | Liu T T. Effects of dietary non-fibrous carbohydrate/neutral detergent fiber on growth performance and intestinal healthy of meat rabbits. Baoding: Hebei Agricultural University, 2021. |
刘婷婷. 日粮NFC/NDF值对肉兔生长性能及肠道健康的影响. 保定: 河北农业大学, 2021. | |
34 | Chao H Y, Li F C. Effects of different and levels on small intestine digestive enzyme activity, caecal fermentation and growth performance of 2-3 month meat rabbits abstract. Journal of Shandong Agricultural University (Natural Science), 2008, 39(3): 355-360. |
晁洪雨, 李福昌. 日粮ADF水平对2-3月龄肉兔生产性能、消化酶活性和盲肠发酵的影响. 山东农业大学学报(自然科学版), 2008, 39(3): 355-360. | |
35 | Jing C L, Li F C, Wang X P, et al. Effects of dietary ADF levels on growth performance, nitrogen metabolism, cellulase activity and caecum fermentation of rex rabbits from weaning to 3-month-old. Acta Veterinaria et Zootechnica Sinica, 2013, 44(9): 1417-1424. |
荆常亮, 李福昌, 王雪鹏, 等. 日粮ADF水平对断奶至3月龄獭兔生长性能、氮代谢、纤维素酶活和盲肠发酵的影响. 畜牧兽医学报, 2013, 44(9): 1417-1424. | |
36 | Cai J Y, Liao K Y, Tian G, et al. Effects of expansion pelleting on gastrointestinal development and intestinal physiological function of rabbits. Chinese Journal of Animal Nutrition, 2021, 33(1): 448-456. |
蔡景义, 廖阔遥, 田刚, 等. 膨胀制粒对肉兔胃肠道发育和肠道生理机能的影响. 动物营养学报, 2021, 33(1): 448-456. | |
37 | Javier G, Thierry G, Luisa F E C, et al. Identification of the main factors that influence caecal fermentation traits in growing rabbits. Animal Research, 2002, 51(2): 165-173. |
38 | Downs K M, Gulizia J P, Stafford E K, et al. Influence of varying dietary kudzu leaf meal particle size on performance, breast weight, and organ weight of broiler chickens from 1 to 21 days of age. Poultry, 2022, 1(1): 30-39. |
39 | Gulizia J P, Downs K M. Comparison of dietary kudzu leaf meal (Pueraria montana var. lobata) and alfalfa meal supplementation effect on broiler (Gallus gallus domesticus) performance, carcass characteristics, and organ parameters. Animals, 2020, 10(1): 147. |
40 | Li Y, Cai H Y, Liu G H, et al. Effect of dexamethasone on disaccharidase activities and mucosa morphology in jejunum of broilers. Acta Veterinaria et Zootechnica Sinica, 2008, 39(1): 48-52. |
李勇, 蔡辉益, 刘国华, 等. 地塞米松对肉仔鸡空肠二糖酶活性及黏膜形态的影响. 畜牧兽医学报, 2008, 39(1): 48-52. | |
41 | Huang Y S. Histology and embryology of livestock and poultry. Chengdu: Chengdu University of Science and Technology press, 1990: 1-5. |
黄亦生. 畜禽组织学与胚胎学. 成都: 成都科技大学出版社, 1990: 1-5. | |
42 | Sun J Y, Yang G Q, Guo D X, et al. Effects of dietary fiber source and crude fiber level on gastrointestinal development and duodenum morphology of meat rabbits. Journal of Shenyang Agricultural University, 2016, 47(3): 291-298. |
孙佳易, 杨桂芹, 郭东新, 等. 饲粮纤维源及粗纤维水平对肉兔胃肠道发育及十二指肠组织形态的影响. 沈阳农业大学学报, 2016, 47(3): 291-298. | |
43 | Zhang N B. Effects of different fiber source diets on growth performance and immune performance of growing rabbits. Taian: Shandong Agricultural University, 2019. |
张南斌. 不同纤维源饲粮对生长肉兔生长性能和免疫性能的影响. 泰安: 山东农业大学, 2019. |
[1] | Li ZHOU, Sheng-zhen HOU, Zhi-you WANG, Bao-chun YANG, Li-juan HAN, Lin-sheng GUI. Changes in small intestinal morphology, digestive enzyme activity and antioxidant enzyme activities of female Tibetan sheep after substituting the maize component of a concentrate diet with palm meal [J]. Acta Prataculturae Sinica, 2023, 32(3): 118-127. |
[2] | Qian-long YANG, Qian-qian WEI, De-hui ZHAO, Xiao-lan GUO, Tie-tao ZHANG, Xiao-xu WANG, Kun BAO, Kai-ying WANG. Effects of dietary rumen-protected cysteine on growth performance, nutrient apparent digestibility and serum biochemical indexes of sika deer during weight gain [J]. Acta Prataculturae Sinica, 2023, 32(2): 148-159. |
[3] | Jun-nian LI, Shao-hua KANG, Dong-mei YANG, Qian HE, Shuang LI, Shuang-lun TAO. Effects of substituting dietary alfalfa meal with kudzu vine (Pueraria lobata) meal on serum biochemical indexes, apparent nutrient digestibility and growth performance in Boer crossbred goats [J]. Acta Prataculturae Sinica, 2021, 30(8): 146-153. |
[4] | Dong-mei YANG, Jun-nian LI, Shuang-lun TAO. Effects of tannic acid addition on the aerobic stability and mycotoxin content of kudzu vine silage [J]. Acta Prataculturae Sinica, 2021, 30(8): 164-170. |
[5] | Hong LI, Shu-zhen SONG, Liang-shuang GAO, Xia LANG, Li-shan LIU, Xu-yin GONG, Yu-bing WEI, Jian-ping WU. Effects of feeding level on the gastrointestinal development, rumen fermentation and rumen microbiota in Altay sheep [J]. Acta Prataculturae Sinica, 2021, 30(4): 180-190. |
[6] | Lei ZHANG, Xue-lin HAN, Juan ZHANG, Su-tao LI, Wen-jiao SHI, Fu-lin YANG. Effects of fucoidan on the growth performance, serum biochemical indexes, and nutrient apparent digestibility of meat rabbits [J]. Acta Prataculturae Sinica, 2021, 30(10): 159-168. |
[7] | SUN Da-ming, YIN Yu-yang, WU Jian-liang, LIU Li-xiang, MAO Sheng-yong, LIU Jun-hua. Effect of early mashed and pelleted concentrate starter supplementation on animal performance and development of the gastrointestinal tract in lambs [J]. Acta Prataculturae Sinica, 2020, 29(7): 184-192. |
[8] | LIU Bo-shuai, WANG Wen-jing, SUN Xiao, LI De-feng, ZHU Xiao-yan, LI Zhen-tian, WANG Cheng-zhang, SHI Ying-hua, QIU Xiao-dong. Effects of different dietary fiber on growth performance, intestinal development and digestive enzyme activity of piglets [J]. Acta Prataculturae Sinica, 2018, 27(9): 175-182. |
[9] | DENG Kai-Ping, WANG Feng, MA Tie-Wei, WANG Zhen, YU Xiao-Qing, DING Li-Ren, TAO Xiao-Qiang, FAN Yi-Xuan. Effect of dietary Perilla frutescens seed intake on rumen fermentation characteristics, apparent nutrient digestibility, and growth performance of Hu sheep [J]. Acta Prataculturae Sinica, 2017, 26(5): 205-212. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||