综述 REVIEW

胚期给养调控肉仔鸡肌纤维发育和肉品质的研究进展

  • 王源昊 ,
  • 武书庚 ,
  • 齐广海 ,
  • 张海军
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  • 中国农业科学院饲料研究所, 农业部饲料生物技术重点实验室, 生物饲料开发国家工程研究中心, 北京 100081
王源昊(1995—),男,河南禹州人,硕士研究生,从事动物营养研究。E-mail:wangyuanhao95@163.com

收稿日期: 2021-10-09

  网络出版日期: 2022-05-14

基金资助

北京市自然科学基金(6202029);家禽产业技术体系北京市创新团队(CARS-PSTP);中国农业科学院创新工程(CAAS-ASTIP-2017-FRI-03)

Recent Advances on Regulation of in Ovo Feeding on Muscle Fiber Development and Meat Quality of Broiler Chickens

  • WANG Yuanhao ,
  • WU Shugeng ,
  • QI Guanghai ,
  • ZHANG Haijun
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  • Key Laboratory of Feed Biotechnology of Ministry of Agriculture and Rural Affairs, National Engineering Research Center of Biological Feed, Institute of Feed Research of Chinese Academy of Agricultural Sciences, Beijing 100081, China

Received date: 2021-10-09

  Online published: 2022-05-14

摘要

肉仔鸡是饲养周期短、肌肉产量高的养殖动物。肉仔鸡肌纤维形成和发育的关键阶段是胚胎期,胚胎期肌纤维发育对最终肌肉产量和肉品质具有重要影响。肉仔鸡孵化后期代谢旺盛,胚蛋内营养相对不足,时常发生胚胎肌肉蛋白质分解供能的情况,进而损害出壳后肌纤维发育和最终的肉品质。在孵化期为肉仔鸡胚胎提供合适的营养物质,可以调节胚期能量代谢和肌肉发育,具有调控出壳后肌纤维发育和上市日龄肉仔鸡肉品质的作用。本文结合肉仔鸡胚期肌纤维发育的特点,阐述了出壳前后营养物质缺乏影响肌纤维发育的代谢基础,重点综述了胚期营养对肌纤维发育和肉品质的调控作用,并对胚期营养调控肉品质的研究进行展望,旨在讨论超早期营养干预对肉仔鸡肌纤维发育和肉品质的调控作用,为后续研究和生产应用提供参考和借鉴。

本文引用格式

王源昊 , 武书庚 , 齐广海 , 张海军 . 胚期给养调控肉仔鸡肌纤维发育和肉品质的研究进展[J]. 动物营养学报, 2022 , 34(5) : 2781 -2789 . DOI: 10.3969/j.issn.1006-267x.2022.05.007

Abstract

Broiler chickens are farm animals which are characterized by short raising period and high muscle yield. Embryogenic stage is the key stage of muscle fiber formation and development in broiler chickens, and the muscle fiber development in embryogenic stage determine the final meat product and quality. In the late incubation phase, the vigorous metabolism and insufficient nutrition reserve may lead to embryonic muscle protein degradation for energy supply, which would damage the development of muscle fibers in the post hatch and final meat quality. Early exposure to suitable nutrients in the incubation phase may regulate embryonic energy metabolism and benefit the muscle development, also has the function of regulating the fiber development post hatch and the meat quality of the broiler chicken at the market age. This paper described the metabolism basis of muscle fiber development affected by the shortage of nutrient reserve in the pre and post hatch phase based on the characteristics of embryonic muscle development, and focused on the regulation of in ovo feeding on muscle development and meat quality, in addition, the future direction of study on embryonic nutrition regulation meat quality were also discussed. This paper aimed to review the regulatory function of ultra-early nutritional intervention muscle fiber development and meat quality in broilers, has with the aim to provide a theoretical foundation for future study.

参考文献

[1] CHOE J H, NAM K C, JUNG S, et al.Differences in the quality characteristics between commercial Korean native chickens and broilers[J].Korean Journal for Food Science of Animal Resources, 2010, 30(1):13-19.  
[2] FAN M D, XIAO Q F, XIE J C, et al.Aroma compounds in chicken broths of Beijing Youji and commercial broilers[J].Journal of Agricultural and Food Chemistry, 2018, 66(39):10242-10251.  
[3] OKE O E, OYELOLA O B, IYASERE O S, et al.In ovo injection of black cumin (Nigella sativa) extract on hatching and post hatch performance of thermally challenged broiler chickens during incubation[J].Poultry Science, 2021, 100(3):100831.
[4] FATEMI S A, ALQHTANI A H, ELLIOTT K E C, et al.Improvement in the performance and inflammatory reaction of Ross 708 broilers in response to the in ovo injection of 25-hydroxyvitamin D3[J].Poultry Science, 2021, 100(1):138-146.  
[5] VELLEMAN S G.Muscle development in the embryo and hatchling[J].Poultry Science, 2007, 86(5):1050-1054.  
[6] YANG T, ZHAO M M, LI J L, et al.In ovo feeding of creatine pyruvate alters energy metabolism in muscle of embryos and post-hatch broilers[J].Asian-Australasian Journal of Animal Sciences, 2019, 32(6):834-841.  
[7] UNI Z, FERKET P R, TAKO E, et al.In ovo feeding improves energy status of late-term chicken embryos[J].Poultry Science, 2005, 84(5):764-770.  
[8] SWARTZ D R, LIM S S, FASSEL T, et al.Mechanisms of myofibril assembly[J].Reciprocal Meat Conference Proceeding, 1994(47):141-153.
[9] CROW M T, STOCKDALE F E.Myosin expression and specialization among the earliest muscle fibers of the developing avian limb[J].Developmental Biology, 1986, 113(1):238-254.  
[10] BROOKE M H, KAISER K K.Muscle fiber types:how many and what kind?[J].Archives of Neurology, 1970, 23(4):369-379.  
[11] SCHIAFFINO S, REGGIANI C.Molecular diversity of myofibrillar proteins:gene regulation and functional significance[J].Physiological Reviews, 1996, 76(2):371-423.  
[12] PARR T, MAREKO M H D, RYAN K J P, et al.The impact of growth promoters on muscle growth and the potential consequences for meat quality[J].Meat Science, 2016, 120:93-99.
[13] NOBLE R C, COCCHI M.Lipid metabolism and the neonatal chicken[J].Progress in Lipid Research, 1990, 29(2):107-140.  
[14] FEHER G.Development of the albumen sac and changes of its structure in the goose during hatching[J].Magyar Allatorvosok Lapja, 1984, 39:105-112.
[15] DONALDSON W E.Carbohydrate, hatchery stressors affect poult survival[J].Feedstuffs, 1995, 67(14):16-17.
[16] SIWEK M, SLAWINSKA A, STADNICKA K, et al.Prebiotics and synbiotics-in ovo delivery for improved lifespan condition in chicken[J].BMC Veterinary Research, 2018, 14(1):402.
[17] FREEMAN B M.The mobilization of hepatic glycogen in Gallus domesticus at the end of incubation[J].Comparative Biochemistry and Physiology, 1969, 28(3):1169-1176.  
[18] HOHLWEG A, HARE T, MILAKOFSKY L, et al.Hormonal effects on amino acids and related compounds in plasma, amniotic fluid, and allantoic fluid of the chicken embryo[J].General and Comparative Endocrinology, 1999, 114(3):378-386.  
[19] LU J W, MCMURTRY J P, COON C N.Developmental changes of plasma insulin, glucagon, insulin-like growth factors, thyroid hormones, and glucose concentrations in chick embryos and hatched chicks[J].Poultry Science, 2007, 86(4):673-683.  
[20] MA Y B, ZHANG F D, WANG J, et al.Effect of in ovo feeding of β-hydroxy-β-methylbutyrate on hatchability, muscle growth and performance in prenatal and posthatch broilers[J].Journal of the Science of Food and Agriculture, 2020, 100(2):755-763.  
[21] GRATTA F, BIROLO M, SACCHETTO R, et al.Effect of feed restriction timing on live performance, breast myopathy occurrence, and muscle fiber degeneration in 2 broiler chicken genetic lines[J].Poultry Science, 2019, 98(11):5465-5476.  
[22] KORNASIO R, HALEVY O, KEDAR O, et al.Effect of in ovo feeding and its interaction with timing of first feed on glycogen reserves, muscle growth, and body weight[J].Poultry Science, 2011, 90(7):1467-1477.  
[23] ZHAO M M, GAO T, ZHANG L, et al.In ovo feeding of creatine pyruvate alters energy reserves, satellite cell mitotic activity and myogenic gene expression of breast muscle in embryos and neonatal broilers[J].Poultry Science, 2017, 96(9):3314-3323.  
[24] MOORE D T, FERKET P R, MOZDZIAK P E.Muscle development in the late embryonic and early post-hatch poult[J].International Journal of Poultry Science, 2005, 4(3):138-142.  
[25] GRODZIK M, SAWOSZ F, SAWOSZ E, et al.Nano-nutrition of chicken embryos.The effect of in ovo administration of diamond nanoparticles and L-glutamine on molecular responses in chicken embryo pectoral muscles[J].International Journal of Molecular Sciences, 2013, 14(11):23033-23044.  
[26] LIU X, MCFARLAND D C, NESTOR K E, et al.Expression of fibroblast growth factor 2 and its receptor during skeletal muscle development from turkeys with different growth rates[J].Domestic Animal Endocrinology, 2003, 25(2):215-229.  
[27] ZIELINSKA M, SAWOSZ E, GRODZIK M, et al.Effect of heparan sulfate and gold nanoparticles on muscle development during embryogenesis[J].International Journal of Nanomedicine, 2011, 6:3163-3172.
[28] SAWOSZ F, PINEDA L M, HOTOWY A M, et al.Nano-nutrition of chicken embryos.The effect of silver nanoparticles and glutamine on molecular responses, and the morphology of pectoral muscle[J].Baltic Journal of Comparative & Clinical Systems Biology, 2012, 2:29-45.
[29] ZIELINSKA M, SAWOSZ E, GRODZIK M, et al.Effect of taurine and gold nanoparticles on the morphological and molecular characteristics of muscle development during chicken embryogenesis[J].Archives of Animal Nutrition, 2012, 66(1):1-13.  
[30] BIKFALVI A, KLEIN S, PINTUCCI G, et al.Biological roles of fibroblast growth factor-2[J].Endocrine Reviews, 1997, 18(1):26-45.
[31] SUBRAMANIYAN S A, KANG D R, PARK J R, et al.Effect of in ovo injection of L-arginine in different chicken embryonic development stages on post-hatchability, immune response, and Myo-D and myogenin proteins[J].Animals, 2019, 9(6):357.
[32] LIU H H, WANG J W, ZHANG R P, et al.In ovo feeding of IGF-1 to ducks influences neonatal skeletal muscle hypertrophy and muscle mass growth upon satellite cell activation[J].Journal of Cellular Physiology, 2012, 227(4):1465-1475.  
[33] GONZALEZ J M, JACKSON A R.In ovo feeding of nicotinamide riboside affects broiler pectoralis major muscle development[J].Translation Animal Science, 2020, 4(3):txaa126.
[34] XU X X, JACKSON A R, GONZALEZ J M.The effects of in ovo nicotinamide riboside dose on broiler myogenesis[J].Poultry Science, 2021, 100(3):100926.
[35] RAO S S, KOHTZ D S.Positive and negative regulation of D-type cyclin expression in skeletal myoblasts by basic fibroblast growth factor and transforming growth factor beta.A role for cyclin D1 in control of myoblast differentiation[J].Journal of Biological Chemistry, 1995, 270(8):4093-4100.  
[36] ZHANG F D, WANG J, ZHANG H J, et al.Effect of amniotic injection of N-carbamylglutamate on meat quality of broilers[J].Animals, 2020, 10(4):576.
[37] WEI X J, NI Y D, LU L Z, et al.The effect of equol injection in ovo on posthatch growth, meat quality and antioxidation in broilers[J].Animal, 2011, 5(2):320-327.  
[38] TAVANIELLO S, MUCCI R, STADNICKA K, et al.Effect of in ovo administration of different synbiotics on carcass and meat quality traits in broiler chickens[J].Poultry Science, 2019, 98(1):464-472.  
[39] ZHANG H, ELLIOTT K E C, DUROJAYE O A, et al.Effects of in ovo injection of L-ascorbic acid on growth performance, carcass composition, plasma antioxidant capacity, and meat quality in broiler chickens[J].Poultry Science, 2019, 98(9):3617-3625.  
[40] ZHU Y F, LI S Z, SUN Q Z, et al.Effect of in ovo feeding of vitamin C on antioxidation and immune function of broiler chickens[J].Animal, 2019, 13(9):1927-1933.  
[41] ARAUJO I C S, CAFÉ M B, MESQUITA M A, et al.Effect of a commercial product containing canthaxanthin for in ovo feeding to broiler embryos on hatchability, chick quality, oxidation status, and performance[J].Poultry Science, 2020, 99(11):5598-5606.  
[42] ARAÚJO I C S, CAFÉ M B, NOLETO R A, et al.Effect of vitamin E in ovo feeding to broiler embryos on hatchability, chick quality, oxidative state, and performance[J].Poultry Science, 2019, 98(9):3652-3661.  
[43] CONG J H, ZHANG L, LI J L, et al.Effects of dietary supplementation with carnosine on growth performance, meat quality, antioxidant capacity and muscle fiber characteristics in broiler chickens[J].Journal of the Science of Food and Agriculture, 2017, 97(11):3733-3741.  
[44] JOO S T, KIM G D, HWANG Y H, et al.Control of fresh meat quality through manipulation of muscle fiber characteristics[J].Meat Science, 2013, 95(4):828-836.  
[45] DANKOWIAKOWSKA A, BOGUCKA J, SOBOLEWSKA A, et al.Effects of in ovo injection of prebiotics and synbiotics on the productive performance and microstructural features of the superficial pectoral muscle in broiler chickens[J].Poultry Science, 2019, 98(10):5157-5165.  
[46] 张封东.胚蛋给养N-氨甲酰谷氨酸对肉仔鸡肉品质的影响[D].硕士学位论文.北京:中国农业科学院, 2020. ZHANG F D.Effects of in ovo feeding of N-carbamylglutamate on meat quality of broilers[D].Master's Thesis.Beijing:Chinese Academy of Agricultural Sciences, 2020.(in Chinese)
[47] FERREIRA I B, MATOS J B, Jr, SGAVIOLI S, et al.Vitamin C prevents the effects of high rearing temperatures on the quality of broiler thigh meat[J].Poultry Science, 2015, 94(5):841-851.  
[48] TEJEDA O J, MELOCHE K J, STARKEY J D.Effect of incubator tray location on broiler chicken growth performance, carcass part yields, and the meat quality defects wooden breast and white striping[J].Poultry Science, 2021, 100(2):654-662.  
[49] FATEMI S A, ALQHTANI A, ELLIOTT K E C, et al.Effects of the in ovo injection of vitamin D3 and 25-hydroxyvitamin D3 in Ross 708 broilers subsequently fed commercial or calcium and phosphorus-restricted diets.Ⅰ.Performance, carcass characteristics, and incidence of woody breast myopathy[J].Poultry Science, 2021, 100(8):101220.
[50] SAEED M, BABAZADEH D, NAVEED M, et al.In ovo delivery of various biological supplements, vaccines and drugs in poultry:current knowledge[J].Journal of the Science of Food and Agriculture, 2019, 99(8):3727-3739.  
[51] MAIORANO G, SOBOLEWSKA A, CIANCIULLO D, et al.Influence of in ovo prebiotic and synbiotic administration on meat quality of broiler chickens[J].Poultry Science, 2012, 91(11):2963-2969.  
[52] TAVANIELLO S, SLAWINSKA A, PRIORIELLO D, et al.Effect of galactooligosaccharides delivered in ovo on meat quality traits of broiler chickens exposed to heat stress[J].Poultry Science, 2020, 99(1):612-619.  
[53] LIU P, HU Y, GROSSMANN R, et al.In ovo leptin administration accelerates post-hatch muscle growth and changes myofibre characteristics, gene expression and enzymes activity in broiler chickens[J].Journal of Animal Physiology and Animal Nutrition, 2013, 97(5):887-895.
[54] MROCZEK-SOSNOWSKA N, ŁUKASIEWICZ M, WNUK A, et al.In ovo administration of copper nanoparticles and copper sulfate positively influences chicken performance[J].Journal of the Science of Food and Agriculture, 2016, 96(9):3058-3062.  
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