China Animal Husbandry & Veterinary Medicine ›› 2026, Vol. 53 ›› Issue (2): 610-621.doi: 10.16431/j.cnki.1671-7236.2026.02.009
• Review • Previous Articles Next Articles
WANG Na(
), LIU Yuanyi, YANG Mingying, SHI Yujie, LI Xinyu, CAO Jialong, HE Qianqian, DU Ming, MANG Lai(
)
Received:2025-07-03
Online:2026-02-20
Published:2026-01-28
Contact:
MANG Lai
E-mail:15804814519@163.com;dmanglai@163.com
CLC Number:
WANG Na, LIU Yuanyi, YANG Mingying, SHI Yujie, LI Xinyu, CAO Jialong, HE Qianqian, DU Ming, MANG Lai. Biological Functions of Trans-10,Cis-12 Conjugated Linoleic Acid and Its Application in Livestock and Poultry[J]. China Animal Husbandry & Veterinary Medicine, 2026, 53(2): 610-621.
Table 1
Anticancer mechanism of t10, c12-CLA"
介导途径 Mediating pathway | 作用 Effect | 参考文献References |
|---|---|---|
酰基肽水解酶 Acylpeptide hydrolase 蛋白酶体 Proteasome | 降低癌细胞活力 | Bergamo等[ |
脂肪酸合酶的下调作用 Down-regulation effect of fatty acid synthase | 抑制癌细胞生长(高剂量t10,c12-CLA) | Lau等[ |
| 胰岛素样生长因子-1受体信号的抑制及Akt和细胞外信号调节激酶-1/2的激活 Inhibition of insulin-like growth factor-1 receptor signaling and activation of Akt and extracellular signal-regulated kinase-1/2 | 抑制TSU-Pr1人膀胱癌细胞增殖,促进细胞凋亡 | Jung等[ |
抑制胰岛素样生长因子-2分泌 Inhibit the secretion of insulin-like growth factor-2 | 抑制肿瘤细胞增殖 | 董贵成等[ |
激活AMPK-p38 MAPK-Bim信号通路 Activation of AMPK-p38 MAPK-Bim signaling pathway | 诱导TM4t乳腺肿瘤细胞凋亡 | Hsu等[ |
Table 2
Other biological functions of t10,c12-CLA"
生物学功能 Biological function | 调节因子 Regulatory factors | 作用 Effect | 参考文献 References |
|---|---|---|---|
抗脂肪生成 Inhibit adipogenesis | 棕色脂肪组织、皮下腹股沟白色脂肪组织 | 促进产热、提高能量消耗,间接减少白色脂肪沉积 | 梁露文[ |
| Δ9-去饱和酶指数、脂肪细胞分化标志物 | 脂肪生成减少和分化程度降低 | Martins等[ | |
抗动脉粥样硬化 Anti-atherosclerosis | 动脉血管中细胞的凋亡水平 | 抑制动脉粥样硬化斑块的产生 | 陆家琦[ |
| 甘油三酯、总胆固醇、低密度脂蛋白胆固醇、高密度脂蛋白胆固醇 | 减少动脉粥样硬化斑块的形成 | 刘佩等[ | |
脂质代谢 Lipid metabolism | 5′-单磷酸腺苷活化蛋白激酶(AMPK)、前列腺素 | 脂肪细胞中脂质含量降低 | Jiang等[ |
| 结肠癌细胞(Caco-2细胞)内源性甘油三酯 | 调节肠道脂蛋白代谢 | Black等[ | |
| PLC-AMPK通路 | 降低前脂肪细胞中甘油三酯含量,促进脂肪氧化分解,抑制脂肪分化 | 徐文涛[ |
Table 3
Research on t10, c12-CLA in livestock and poultry"
物种 Species | 研究方向(关键因子) Research direction (Key factor) | 作用 Effect | 参考文献 References |
|---|---|---|---|
猪 Pig | 卵母细胞(脂质) 肌肉生长(甘油三酯、FAS、INSR、HSL、LPL) 乳脂含量(ACACA、SCD1) 脂肪代谢调控(HSL、FAS、LPL、PPARγ) 免疫功能(NF-κB、TNF-α) | 促进发育进程;降低乳脂含量;调节脂肪沉积 | Jia等[ Sandri等[ Kim等[ |
山羊 Goat | 乳腺上皮细胞(FASN、ACACA、SCD1、SREBP-1) | 显著抑制脂肪酸合成和乳脂生成 | Zhang等[ |
牛 Cattle | 卵母细胞(脂质) 乳腺上皮细胞(甘油三酯、SREBP-1、PI4K) | 提高卵母细胞发育能力; 抑制脂质合成 | Lapa等[ Mu等[ |
家禽 Poultry | 脂质调控(脂质) 生产性能 抗氧化(SOD、CAT、Nrf2) | 控制脂质的积累; 调节脂质代谢; 提高生产性能; 较强的抗氧化能力 | 徐文涛等[ 张广民等[ |
| [1] | 王洋洋. 内源t10c12-CLA对小鼠肝脏脂质代谢的影响[D].扬州: 扬州大学, 2023. |
| WANG Y Y. Effects of endogenous t10,c12-CLA on lipid metabolism in mouse liver[D]. Yangzhou: Yangzhou University, 2023. (in Chinese) | |
| [2] | AZADEH Y, CARLA G T, JENNA P, et al. Trans-10, cis-12 conjugated linoleic acid inhibits 3T3-L1 adipocyte adipogenesis by elevating β-catenin levels[J]. Biochimica et Biophysica Acta, 2016, 1861(4): 363-370. |
| [3] | 刘晓华, 刘 萍, 李海星, 等. 共轭亚油酸异构体对胰岛素抵抗脂肪细胞消耗葡萄糖的影响[J]. 南昌大学学报(理科版), 2014, 38(1): 86-90. |
| LIU X H, LIU P, LI H X, et al. Effects of conjugated linoleic acid isomers on glucose consumption of insulin-resistant adipocytes[J]. Journal of Nanchang University (Natural Science), 2014, 38(1): 86-90. (in Chinese) | |
| [4] | POIRIER H, SHAPIRO J S, KIM R J, et al. Nutritional supplementation with trans-10,cis-12-conjugated linoleic acid induces inflammation of white adipose tissue[J]. Diabetes, 2006, 55(6): 1634-1641. |
| [5] | LEE J, KIM Y, FRISO S, et al. Epigenetics in non-alcoholic fatty liver disease[J]. Molecular Aspects of Medicine, 2017, 54:78-88. |
| [6] | KIM K J, LEE J, PARK Y, et al. ATF3 mediates anti-cancer activity of trans-10,cis-12 conjugated linoleic acid in human colon cancer cells[J]. Biomolecules & Therapeutics, 2015, 23(2): 134-140. |
| [7] | MEI Y, CHEN H, YANG B, et al. Research progress on conjugated linoleic acid bio-conversion in Bifidobacterium [J]. International Journal of Food Microbiology, 2022, 369: 109593. |
| [8] | WU C, CHEN H, MEI Y, et al. Advances in research on microbial conjugated linoleic acid bioconversion[J]. Progress in Lipid Research, 2024, 93: 101257. |
| [9] | BADAWY S, LIU Y, GUO M, et al. Conjugated linoleic acid (CLA) as a functional food: Is it beneficial or not?[J] Food Research International, 2023, 172: 113158. |
| [10] | BRUEN R, FITZSIMONS S, BELTON O. Atheroprotective effects of conjugated linoleic acid[J]. British Journal of Clinical Pharmacology, 2017, 83(1): 46-53. |
| [11] | IORIZZO M, DI MARTINO C, LETIZIA F, et al. Production of conjugated linoleic acid (CLA) by Lactiplantibacillus plantarum: A review with emphasis on fermented foods[J]. Foods, 2024, 13(7): 975. |
| [12] | 孙志娟, 黄之瑜. 肥胖的研究进展[J]. 生理科学进展,2001, 1: 39-44. |
| SUN Z J, HUANG Z Y. Progress in the study of obesity[J]. Progress in Physiological Sciences, 2001,1: 39-44. (in Chinese) | |
| [13] | BERKEL C, CACAN E. Trans-10,cis-12 conjugated linoleic acid- and caloric restriction-mediated upregulation of CNDP2 expression in white adipose tissue in rodents, with implications in feeding and obesity[J]. Journal of Nutritional Biochemistry, 2023, 114: 109269. |
| [14] | RAO Y, LI S L, LI M J, et al. Transgenic mice producing the trans 10,cis 12-conjugated linoleic acid present reduced adiposity and increased thermogenesis and fibroblast growth factor 21 (FGF21)[J]. Journal of Nutritional Biochemistry, 2023, 120: 109419. |
| [15] | HOUSE R L, CASSADY J P, EISEN E J, et al. Functional genomic characterization of delipidation elicited by trans-10,cis-12-conjugated linoleic acid (t10,c12-CLA) in a polygenic obese line of mice[J]. Physiol Genomics, 2005, 21(3): 351-361. |
| [16] | SHAHZAD M M K, FELDER M, LUDWIG K, et al. Trans-10,cis-12 conjugated linoleic acid inhibits proliferation and migration of ovarian cancer cells by inducing ER stress, autophagy, and modulation of Src[J]. PLoS One, 2018, 13(1): e0189524. |
| [17] | NGEMA L M, ADEYEMI S A, MARIMUTHU T, et al. Synthesis of novel conjugated linoleic acid (CLA)- coated superparamagnetic iron oxide nanoparticles (SPIONS) for the delivery of paclitaxel with enhanced in vitro anti-proliferative activity on A549 lung cancer cells[J]. Pharmaceutics, 2022, 14(4): 829. |
| [18] | PALOMBO J D, GANGULY A, BISTRIAN B R, et al. The antiproliferative effects of biologically active isomers of conjugated linoleic acid on human colorectal and prostatic cancer cells[J]. Cancer Letters, 2002, 177(2): 163-172. |
| [19] | BERGAMO P, COCCA E, PALUMBO R, et al. RedOx status, proteasome and APEH: Insights into anticancer mechanisms of t10,c12-conjugated linoleic acid isomer on A375 melanoma cells[J]. PLoS One, 2013, 8(11): e80900. |
| [20] | LAU D S, ARCHER M C. The 10t,12c isomer of conjugated linoleic acid inhibits fatty acid synthase expression and enzyme activity in human breast, colon, and prostate cancer cells[J]. Nutrition and Cancer, 2010, 62(1): 116-121. |
| [21] | JUNG J I, CHO H J, KIM J, et al. Trans-10,cis-12 conjugated linoleic acid inhibits insulin-like growth factor-Ⅰ receptor signaling in TSU-Pr1 human bladder cancer cells[J]. Journal of Medicinal Food, 2010, 13(1): 13-19. |
| [22] | 董贵成, 曹丽霞, 那日苏, 等. 共轭亚油酸对癌的抗性及机制探索[J]. 食品科学, 2008, 4: 448-451. |
| DONG G C, CAO L X, NA R S,et al. Inquire conjugated linoleic acid anti-carcinogenesis effects and mechanisms[J]. Food Science, 2008, 4: 448-451. (in Chinese) | |
| [23] | HSU Y C, MENG X, OU L, et al. Activation of the AMP-activated protein kinase-p38 MAP kinase pathway mediates apoptosis induced by conjugated linoleic acid in p53-mutant mouse mammary tumor cells[J]. Cell Signal, 2010, 22(4): 590-599. |
| [24] | RYDER J W, PORTOCARRERO C P, SONG X M, et al. Isomer-specific antidiabetic properties of conjugated linoleic acid. Improved glucose tolerance, skeletal muscle insulin action, and UCP-2 gene expression[J]. Diabetes, 2001, 50(5): 1149-1157. |
| [25] | JOURDAN T, DJAOUTI L, DEMIZIEUX L, et al. Liver carbohydrate and lipid metabolism of insulin-deficient mice is altered by trans-10,cis-12 conjugated linoleic acid[J]. Journal of Nutrition, 2009, 139(10): 1901-1907. |
| [26] | DIPASQUALE D, BASIRICÒ L, MORERA P, et al. Anti-inflammatory effects of conjugated linoleic acid isomers and essential fatty acids in bovine mammary epithelial cells[J]. Animal, 2018, 12(10): 2108-2114. |
| [27] | YANG C, ZHU B, YE S, et al. Isomer-specific effects of cis-9,trans-11- and trans-10,cis-12-CLA on immune regulation in ruminal epithelial cells[J]. Animals (Basel), 2021, 11(4): 1169. |
| [28] | BASIRICÒ L, MORERA P, DIPASQUALE D, et al. Conjugated linoleic acid isomers strongly improve the redox status of bovine mammary epithelial cells (BME-UV1)[J]. Journal of Dairy Science, 2015, 98(10): 7071-7082. |
| [29] | NAKAMURA Y K, OMAYE S T. Conjugated linoleic acid isomers’ roles in the regulation of PPAR-gamma and NF-kappaB DNA binding and subsequent expression of antioxidant enzymes in human umbilical vein endothelial cells[J]. Nutrition, 2009, 25(7-8): 800-811. |
| [30] | 梁露文. t10c12-CLA抑制小鼠脂肪沉积的分子机制研究[D]. 扬州: 扬州大学, 2024. |
| LIANG L W. Study on the molecular mechanism of t10c12-CLA inhibiting fat deposition in mice[D]. Yangzhou: Yangzhou University, 2024. (in Chinese) | |
| [31] | MARTINS S V, MADEIRA A, LOPES P A, et al. Adipocyte membrane glycerol permeability is involved in the anti-adipogenic effect of conjugated linoleic acid[J]. Biochemical and Biophysical Research Communications, 2015, 458(2): 356-361. |
| [32] | 陆家琦. t10c12-CLA对小鼠动脉粥样硬化的保护作用[D]. 扬州: 扬州大学,2024. |
| LU J Q. Improvement of t10c12 CLA on atherosclerosis in mice[D]. Yangzhou: Yangzhou University, 2024. (in Chinese) | |
| [33] | 刘 佩, 沈生荣, 阮 辉, 等. c9,t11-和t10,c12-共轭亚油酸抗癌和影响脂质代谢的异同[J]. 食品科学, 2010, 31(13): 297-301. |
| LIU P, SHEN S R, RUAN H, et al. c9,t11-CLA and t10,c12-CLA: Difference in biological functions and mechanisms[J]. Food Science, 2010, 31(13): 297-301. (in Chinese) | |
| [34] | JIANG S, CHEN H, WANG Z, et al. Activated AMPK and prostaglandins are involved in the response to conjugated linoleic acid and are sufficient to cause lipid reductions in adipocytes[J]. Journal of Nutritional Biochemistry, 2011, 22(7): 656-664. |
| [35] | BLACK I L, ROCHE H M, GIBNEY M J. Chronic but not acute treatment with conjugated linoleic acid (CLA) isomers (trans-10,cis-12 CLA and cis-9,trans-11 CLA) affects lipid metabolism in Caco-2 cells[J]. Journal of Nutrition, 2002, 132(8): 2167-2173. |
| [36] | 徐文涛. 母源性t10,c12-CLA对子代鸡脂质代谢的影响和机制研究[D].泰安: 山东农业大学, 2023. |
| XU W T. Mechanism of maternal tl0,cl2-CLA on lipid metabolism in offspring chickens[D].Tai’an: Shandong Agricultural University, 2023. (in Chinese) | |
| [37] | JIA B, WU G, FU X, et al. Trans-10,cis-12 conjugated linoleic acid enhances in vitro maturation of porcine oocytes[J]. Molecular Reproduction and Development, 2014, 81(1): 20-30. |
| [38] | PRATES E G, MARQUES C C, BAPTISTA M C, et al. Fat area and lipid droplet morphology of porcine oocytes during in vitro maturation with trans-10,cis-12 conjugated linoleic acid and forskolin[J]. Animal, 2013, 7(4): 602-609. |
| [39] | PRATES E G, ALVES S P, MARQUES C C, et al. Fatty acid composition of porcine cumulus oocyte complexes (COC) during maturation: Effect of the lipid modulators trans-10,cis-12 conjugated linoleic acid (t10,c12 CLA) and forskolin[J]. In Vitro Cellular & Developmental Biology-Animal, 2013, 49(5): 335-345. |
| [40] | ABAZARIKIA A H, ZHANDI M, SHAKERI M, et al. In vitro supplementation of trans-10,cis-12 conjugated linoleic acid ameliorated deleterious effect of heat stress on bovine oocyte developmental competence[J]. Theriogenology, 2020, 142: 296-302. |
| [41] | LAPA M, MARQUES C C, ALVES S P, et al. Effect of trans-10,cis-12 conjugated linoleic acid on bovine oocyte competence and fatty acid composition[J]. Reproduction in Domestic Animals, 2011, 46(5): 904-910. |
| [42] | PEREIRA R M, CARVALHAIS I, PIMENTA J, et al. Biopsied and vitrified bovine embryos viability is improved by trans-10,cis-12 conjugated linoleic acid supplementation during in vitro embryo culture[J]. Animal Reproduction Science, 2008, 106(3-4): 322-332. |
| [43] | ZHANG T, LI C, HUANG L, et al. Regulation of stearoyl-coenzyme a desaturase 1 by trans-10,cis-12 conjugated linoleic acid via SREBP1 in primary goat mammary epithelial cells[J]. Journal of Agricultural and Food Chemistry, 2019, 67(5): 1463-1469. |
| [44] | VARGAS-BELLO-PÉREZ E, ZHAO W, BIONAZ M, et al. Nutrigenomic effect of saturated and unsaturated long chain fatty acids on lipid-related genes in goat mammary epithelial cells: What is the role of PPARγ[J]. Veterinary Sciences, 2019, 6(2): 54. |
| [45] | 张 娜, 林雪彦, 李福昌, 等. 反-10,顺-12共轭亚油酸真胃灌注对奶山羊乳脂合成的影响[A]. 中国畜牧兽医学会养牛学分会. 中国畜牧兽医学会养牛学分会2011年学术研讨会论文集[C]. 2011. |
| ZHANG N, LIN X Y, LI F C, et al. Effect of abomasal trans-10, cis-12-CLA infusion on milk fat synthesis in lactating goats[A]. Chinese Society of Animal Husbandry and Veterinary Medicine Cattle Branch. Proceedings of 2011 Academic Symposium of Cattle Breeding Branch of China Association of Animal Husbandry and Veterinary Medicine[C]. 2011. (in Chinese) | |
| [46] | 王红芳. 外源反-10,顺-12共轭亚油酸对牛乳腺上皮细胞脂肪合成的影响及其分子机制[D].泰安:山东农业大学, 2011. |
| WANG H F. Effects of exogenetic trans-10,cis-12-CLA on lipids synthesis inbovine mammary epithelial cells (BMECS) and molecular mechanism[D]. Tai’an: Shandong Agricultural University, 2011. (in Chinese) | |
| [47] | 刘 娟. miR-485介导t10,c12-CLA对奶牛乳腺上皮细胞脂代谢的调控作用研究[D]. 湛江: 广东海洋大学, 2021. |
| LIU J. Study on the regulation effect of miR-485-mediated t10,c12-CLA on lipid metabolism in bovine mammary epithelial cells[D]. Zhanjiang: Guangdong Ocean University, 2021. (in Chinese) | |
| [48] | 泰东梅, 刘建新, 刘红云, 等 . 反 10顺12共轭亚油酸对奶牛乳腺上皮细胞内SREBP-1的调控机制研究[A]. 中国畜牧兽医学会动物营养学分会. 第七届中国饲料营养学术研讨会论文集[C]. 2014. |
| TAI D M, LIU J X, LIU H Y, et al. Study on the regulation mechanism of trans-10,cis-12 conjugated linoleic acid on SREBP-1 in bovine mammary epithelial cells[A]. Animal Nutrition Branch of China Association of Animal Husbandry and Veterinary Medicine. Proceedings of the 7th China Feed Nutrition Symposium[C]. 2014. (in Chinese) | |
| [49] | SHI H B, TAI D M, WANG C, et al. Short communication: The antilipogenic effect of trans-10,cis-12conjugated linoleic acid in bovine mammary epithelial cells is associated with proteasome activity and ATP production[J]. Journal of Dairy Science, 2020, 103(10): 9096-9101. |
| [50] | MU T, HU H, FENG X, et al. The PI4K2A gene positively regulates lipid synthesis in bovine mammary epithelial cells and attenuates the inhibitory effect of t10,c12-CLA on lipid synthesis[J]. Scientific Reports, 2025, 15(1): 3456. |
| [51] | XU W, SONG Z, WANG W, et al. Effects of in ovo feeding of t10,c12-conjugated linoleic acid on hepatic lipid metabolism and subcutaneous adipose tissue deposition in newly hatched broiler chicks[J]. Poultry Science, 2022, 101(5): 101797. |
| [52] | 张广民, 文 杰, 陈继兰, 等. 反10,顺12共轭亚油酸对肉仔鸡肉品质和相关酶活的影响[J]. 畜牧兽医学报, 2007, 5: 464-470. |
| ZHANG G M, WEN J, CHEN J L, et al. Effect of supplemental trans-10,cis-12 conjugated linoleic acid on growth performance, meat quality and relative enzyme activities in broiler chicks[J]. Acta Veterinaria et Zootechnica Sinica, 2007, 5: 464-470. (in Chinese) | |
| [53] | QI X L, WANG J, YUE H Y, et al. Trans-10,cis-12-conjugated linoleic acid exhibits a stronger antioxidant capacity than cis-9, trans-11-conjugated linoleic acid in primary cultures of laying hen hepatocytes[J]. Poultry Science, 2018, 97(12): 4415-4424. |
| [54] | 杜瑞平, 高 民, 卢德勋. t10,c12-CLA对猪皮下脂肪和背最长肌组织脂类代谢的影响[J]. 饲料工业, 2010, 31(19): 12-16. |
| DU R P, GAO M, LU D X. Studies on effects of t10,c12-CLA on lipid metabolism of subcutaneous and longissimus muscle tissues in pig[J]. Feed Industry, 2010, 31(19): 12-16. (in Chinese) | |
| [55] | SANDRI E C, HARVATINE K J, OLIVEIRA D E. Trans-10,cis-12 conjugated linoleic acid reduces milk fat content and lipogenic gene expression in the mammary gland of sows without altering litter performance[J]. British Journal of Nutrition, 2020, 123(6): 610-618. |
| [56] | 苏 展, 黄金秀, 左福元, 等. 共轭亚油酸对猪脂肪代谢调控及其作用机制的研究进展[J]. 中国畜牧杂志, 2012, 48(11): 66-70. |
| SU Z, HUANG J X, ZUO F Y, et al. Advance in conjugated linoleic acid regulating fat metabolism and its mechanisms in pigs[J]. Chinese Journal of Animal Science, 2012, 48(11): 66-70. (in Chinese) | |
| [57] | KIM D I, KIM K H, KANG J H, et al. Trans-10,cis-12-conjugated linoleic acid modulates NF-κB activation and TNF-α production in porcine peripheral blood mononuclear cells via a PPARγ-dependent pathway[J]. British Journal of Nutrition, 2011, 105(9): 1329-1336.. |
| [58] | MALOVRH T, MELKIĆE, KOMPAN D, et al. Incorporation of conjugated linoleic acid isomers into porcine erythrocytes[J]. The European Journal of Nutrition, 2014, 53(3): 989-993. |
| [1] | Yuan CHAI, Chenglin BAO, Lingyan ZHANG, Shuyan GONG, Chelimuge QI, Yanchun BAO, Meng ZHU, Sai CAO, Jiangong LI, Guojie YU, Jingkai LIN, Wenguang ZHANG. Research Progress on the Application of Single-cell Sequencing Technology in Livestock and Poultry Genetic Breeding [J]. China Animal Husbandry & Veterinary Medicine, 2026, 53(1): 15-26. |
| [2] | LIAO Hongtao, WEN Run, YAN Pupu, HUANG Yongxi, LIU Man, ZHU Jun, CHENG Haishan, GONG Yinuo, PENG Yangyun, QIN Meilin, LI Rong, SU Yingbing, GUO Liwei. Exploring of Mechanism of Action of Sihuang Zhili Granules in Treatment of Diarrhea in Livestock and Poultry by UPLC-Q-TOF-MS Combined with Network Pharmacology and Molecular Dynamics Simulation [J]. China Animal Husbandry & Veterinary Medicine, 2025, 52(9): 4427-4439. |
| [3] | LI Liuhui, GUO Fangchao, ZHOU Yinquan, WANG Yaya, PENG Weilong, YIN Shaojie. Research Progress on Biological Function of Paeonol and Its Application in Clinical Anti-inflammatory of Livestock and Poultry [J]. China Animal Husbandry & Veterinary Medicine, 2025, 52(9): 4440-4452. |
| [4] | WANG Tiange, GAO Shuang, LIN Shumei, ZHAO Dongdong. From Molecular Mechanisms to Therapeutic Strategies: The Role of Neutrophil Extracellular Traps in Acute Lung Injury [J]. China Animal Husbandry & Veterinary Medicine, 2025, 52(9): 4464-4470. |
| [5] | LAO Yingdi, HOU Caiqin, LI Xin, GUO Yiwen, HU Debao, GUO Hong, ZHANG Linlin, DING Xiangbin. Research Progress on Intramuscular Fat Deposition Related Genes in Livestock and Poultry [J]. China Animal Husbandry & Veterinary Medicine, 2025, 52(6): 2603-2611. |
| [6] | LIN Yanzhi, DENG Dun, MA Xianyong, YU Miao, LU Yusheng, SONG Min, JIANG Qingyan. Advances in Production and in vitro Degradation of Skatole in Livestock and Poultry [J]. China Animal Husbandry & Veterinary Medicine, 2025, 52(6): 2650-2661. |
| [7] | CAI Yucheng, WU Guanyuan, YANG Haidong, FANG Yinuo, CHEN Zhisheng, ZHAN Xiaoshu. Mechanisms and Current Applications of Probiotics in Animal Health Management [J]. China Animal Husbandry & Veterinary Medicine, 2025, 52(5): 2101-2114. |
| [8] | ZHU Bin, ZHOU Xingyou, WUJunquan, CHEN Huiying, ZHUJianfeng, QIJiaojiao, HU Wenfeng, YANG Meiyan. Phage Therapy in Mycoplasma Disease Management:Advances in Prevention and Treatment Strategies for Livestock and Poultry [J]. China Animal Husbandry & Veterinary Medicine, 2025, 52(4): 1763-1775. |
| [9] | ZHANG Lingyu, ZHANG Jiaxi, WEI Yuxuan, WU Qiong. Research Progress on Hazards of Bisphenol A and Its Substitutes to Livestock and Poultry [J]. China Animal Husbandry & Veterinary Medicine, 2025, 52(3): 1317-1327. |
| [10] | YANG Xinshuo, CHANG Danyi, XU Dandan, ZHANG Haihua, MA Qiugang, HUANG Shimeng. Advances in the Impact of Tryptophan and Its Bacterial Metabolites on Intestinal Barrier Function and Growth Performance in Livestock and Poultry [J]. China Animal Husbandry & Veterinary Medicine, 2025, 52(2): 636-644. |
| [11] | ZHANG Yao, ZHU Liyang, YANG Ying, HOU Jingyan, HAN Taoze, WANG Kailong, XU Yaxi, SHENG Xihui. Research Progress on Inosine Monophosphate in Livestock and Poultry Muscle [J]. China Animal Husbandry & Veterinary Medicine, 2025, 52(2): 686-697. |
| [12] | XIE Xinfeng, WANG Ziyi, ZHONG Ziqi, PAN Deyou, NI Shiheng, XIAO Qian. Advances in Extended Methods of Genome-Wide Association Studies and Their Applications in Livestock and Poultry [J]. China Animal Husbandry & Veterinary Medicine, 2024, 51(4): 1382-1389. |
| [13] | TAN Lei, PENG Xiaoye, WANG Kaixin, HUANG Xiaojiu, ZHANG Fan, YU Siyu. Role and Mechanism of Histone Deacetylase in Livestock and Poultry Virus Infection [J]. China Animal Husbandry & Veterinary Medicine, 2024, 51(3): 1259-1266. |
| [14] | LI Yafei, LIANG Xiaoyun, WU Liqin, XIAO Tianan, WANG Fuhua, ZENG Zhenling. Drug Resistance and Prevalence of Escherichia coli Isolated from Livestock and Poultry in Areas of Guangdong [J]. China Animal Husbandry & Veterinary Medicine, 2024, 51(2): 837-849. |
| [15] | HE Zhengke, SU Lijuan, TAN Xiaoyan, LI Zhangxun, CAO Liting, MA Yue, DU Hongxu. Research Progress on the Protective Effect of Baicalin on Intestinal of Animals [J]. China Animal Husbandry & Veterinary Medicine, 2024, 51(2): 875-882. |
| Viewed | ||||||
|
Full text |
|
|||||
|
Abstract |
|
|||||