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Non-Ruminants Nutrition and Feeding

Effects of dietary lysine levels on growth performance, nutrient digestibility, serum metabolites, and carcase and meat quality of Yacha pigs

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Pages 1593-1603 | Received 10 Apr 2022, Accepted 01 Sep 2022, Published online: 11 Nov 2022

References

  • AOAC 2007. Official Methods of Analysis. 18th ed. Gaithersburg, MD: Association of Official Analytical Chemists.
  • Apple JK, Maxwell CV, Brown DC, Friesen KG, Musser RE, Johnson ZB, Armstrong TA. 2004. Effects of dietary lysine and energy density on performance and carcass characteristics of finishing pigs fed ractopamine. J Anim Sci. 82(11):3277–3287.
  • Asche GL, Lewis AJ, Peo JER, Crenshaw JDL. 1985. The nutritional value of normal and high lysine corns for weanling and growing-finishing swine when fed at four lysine levels. J Anim Sci. 60(6):1412–1428.
  • Bidner BS, Ellis M, Witte DP, Carr SN, Mckeith FK. 2004. Influence of dietary lysine level, pre-slaughter fasting, and rendement napole genotype on fresh pork quality. Meat Sci. 68(1):53–60.
  • Chang J. 2012. Effect of different crude fiber and lysine levels on growing-finishing pigs in Yunan black pigs. [master’s thesis]. Zhengzhou, China: Henan Agricultural University.
  • Chen JY, Chen FM, Lin X, Wang YD, He JH, Zhao YR. 2021. Effect of excessive or restrictive energy on growth performance, meat quality, and intramuscular fat deposition in finishing Ningxiang pigs. Animals. 11(27):1–15.
  • China Nutrition Requirement of Swine (NY/T65-2004). 2004. Ministry of Agriculture of the People’s Republic of China: Beijing, China.
  • Civitelli R, Villareal DT, Agnusdei D, Nardi P, Avioli LV, Gennari C. 1992. Dietary L-lysine and calcium metabolism in humans. Nutrition. 8(6):400–405.
  • Corino C, Musella M, Pastorelli G, Rossi R, Paolone K, Costanza L, Manchisi A, Maiorano G. 2008. Influences of dietary conjugated linoleic acid (CLA) and total lysine content on growth, carcass characteristics and meat quality of heavy pigs. Meat Sci. 79(2):307–316.
  • Determination of Livestock and Poultry Meat Quality (NYT1333-2007) 2007. Ministry of Agriculture of the People’s Republic of China: Beijing, China.
  • Elnesr SS, Ropy A, Abdel-Razik AH. 2019. Effect of dietary sodium butyrate supplementation on growth, blood biochemistry, haematology and histomorphometry of intestine and immune organs of Japanese quail. Animal. 13(6):1234–1244.
  • Fernandez FI, Lachica M, Nieto R, Rivera FM, Aguilera J. 2007. Serum profile of metabolites and hormones in obese (iberian) and lean (landrace) growing gilts fed balanced or lysine deficient diets. Livestock Sci. 110(1-2):73–81.
  • He L, Yang H, Hou Y, Li T, Fang J, Zhou X, Yin Y, Wu L, Nyachoti M, Wu G. 2013. Effects of dietary L-lysine intake on the intestinal mucosa and expression of CAT genes in weaned piglets. Amino Acids. 45(2):383–391.
  • Hu XC, Huo B, Yang JM, Wang K, Huang LJ, Che LQ, Feng B, Lin Y, Xu SY, Zhuo Y, et al. 2022. Effects of dietary lysine levels on growth performance, nutrient digestibility, serum metabolites, and meat quality of Baqing Pigs. Animals. 12(15):1884.
  • Huo B, He J, Shen XY. 2020. Effects of selenium-deprived habitat on the immune index and antioxidant capacity of Przewalski’s gazelle. Biol Trace Elem Res. 198(1):149–156.
  • Huo B, Shen XY. 2020. Study of rickets and osteomalacia in Tibetan Gazelle. Pak J Zool. 52(5):1751–1759.
  • Huo B, Wu T, Song CJ, Shen XY. 2020. Studies of selenium deficiency in the Wumeng semi-fine wool sheep. Biol Trace Elem Res. 194(1):152–158.
  • Jin YH, Oh HK, Piao LG, Jang SK, Choi YH, Heo PS, Jang YD, Kim YY. 2010. Effect of dietary lysine restriction and energy density on performance, nutrient digestibility and meat quality in finishing pigs. Asian Australas J Anim Sci. 23(9):1213–1220.
  • Katsumata M, Kawakami S, Kaji Y, Takada R, Dauncey MJ. 2002. Differential regulation of porcine hepatic IGF-I mRNA expression and plasma IGF-I concentration by a low lysine diet. ASNS. 132(4):688–692.
  • Kim YW, Ingale SL, Kim JS, Kim KH, Chae BJ. 2011. Effects of dietary lysine and energy levels on growth performance and apparent total tract digestibility of nutrients in weanling pigs. Asian Australas J Anim Sci. 24(9):1256–1267.
  • Lee J, González-Vega JC, Htoo JK, Nyachoti CM. 2021. Evaluating the standardized ileal digestible lysine requirement of 7- to 15-kg weanling pigs fed corn-soybean meal-based diets. Animal. 15(2):100127.
  • Liu YH, Huo B, Chen ZP, Wang K, Huang LJ, Che LQ, Feng B, Lin Y, Xu SY, Zhuo Y, et al. 2022. Efects of organic chromium yeast on performance, meat quality, and serum parameters of grow-finish pigs. Biol Trace Elem Res. 200:1–9.
  • Liu YZ, Yang XQ, Jing XY, He XM, Wang L, Liu Y, Liu D. 2017. Transcriptomics analysis on excellent meat quality traits of skeletal muscles of the Chinese indigenous Min pig compared with the large white breed. IJMS. 19(1):21–36.
  • Llata MDL, Dritz SS, Tokach MD, Goodband RD, Nelssen JL. 2002. Effects of increasing L-lysine HCl in corn- or sorghum-soybean meal-based diets on growth performance and carcass characteristics of growing-finishing pigs. J Anim Sci. 80(9):2420–2432.
  • Loughmiller JA, Nelssen JL, Goodband RD, Tokach MD, Titgemeyer EC, Kim IH. 1998. Influence of dietary lysine on growth performance and carcass characteristics of late-finishing gilts. J Anim Sci. 76(4):1075–1080.
  • Mohn S, Gillis AM, Moughan PJ, de Lange CFM. 2000. Influence of dietary lysine and energy intakes on body protein deposition and lysine utilization in the growing pig. J Anim Sci. 78(6):1510–1519.
  • [NRC] National Research Council 2012. Nutrient requirements of swine. 11th revised ed. Washington, DC: National Academy Press.
  • Regmi N, Wang T, Crenshaw MA, Rude BJ, Liao SF. 2018. Effects of dietary lysine levels on the concentrations of selected nutrient metabolites in blood plasma of late-stage finishing pigs. J Anim Physiol Anim Nutr. 102(2):403–409.
  • Rodriguez SJA, Sanz MA, Blanco M, Serrano MP, Joy M, Latorre MA. 2011. The influence of dietary lysine restriction during the finishing period on growth performance and carcass, meat, and fat characteristics of barrows and gilts intended for dry-cured ham production. J Anim Sci. 89(11):3651–3662.
  • Shen XY, Huo B, Wu T, Song CJ, Chi YK. 2019. iTRAQ-based proteomic analysis to identify molecular mechanisms of the selenium deficiency response in the Przewalski’s gazelle. J Proteomics. 203:103389.
  • Sirtori F, Crovetti A, Acciaioli A, Pugliese C, Bozzi R, Campodoni G, Franci O. 2014. Effect of dietary protein level on carcass traits and meat properties of Cinta Senese pigs. Animal. 8(12):1987–1995.
  • Strathe AV, Bruun TS, Tauson AH, Theil PK, Hansen CF. 2020. Increased dietary protein for lactating sows affects body composition, blood metabolites and milk production. Animal. 14(2):285–294.
  • Suarez BJ, Guada JA, Latorre MA. 2015. Effects of sex and dietary lysine on performances and serum and meat traits in finisher pigs. Animal. 9(10):1731–1739.
  • Szabo C, Jansman AJM, Babinszky L, Kanis E, Verstegen MWA. 2001. Effect of dietary protein source and lysine: DE ratio on growth performance, meat quality, and body composition of growing-finishing pigs. J Anim Sci. 79(11):2857–2865.
  • Tous N, Lizardo R, Vila B, Gispert M, Font-I-Furnols M, Esteve-Garcia E. 2014. Effect of reducing dietary protein and lysine on growth performance, carcass characteristics, intramuscular fat, and fatty acid profile of finishing barrows. J Anim Sci. 92(1):129–140.
  • Wang T, Crenshaw MA, Regmi N, Armstrong T, Blanton JR, Liao SF. 2015. Effect of dietary lysine fed to pigs at late finishing stage on market-value associated carcass characteristics. J Anim Vet Adv. 14(8):232–236.
  • Wang XQ, Zeng PL, Feng Y, Zhang CM, Yang JP, Shu G, Jiang QY. 2012. Effects of dietary lysine levels on apparent nutrient digestibility and cationic amino acid transporter mRNA abundance in the small intestine of finishing pigs, Sus scrofa. Anim Sci J. 83(2):148–155.
  • Witte DP, Ellis M, McKeith FK, Wilson ER. 2000. Effect of dietary lysine level and environmental temperature during the finishing phase on the intramuscular fat content of pork. J Anim Sci. 78(5):1272–1276.
  • Wu GY. 2010. Recent advances in swine amino acid nutrition. J Anim Sci Biotechno. 1:118–130.
  • Yang F. 2002. Study on prediction models of body protein retention and amino acid requirement for Landrace × Rongchang growing-finishing pigs. Animal Nutrition Institute, Sichuan Agricultural University.
  • Yang X. 2009. Study on germplasm characteristics of Yacha pig. Swine Production. 5:36–38.
  • Yang YX, Jin Z, Yoon SY, Choi JY, Shinde PL, Piao XS, Kim BW, Ohh SJ, Chae BJ. 2008. Lysine restriction during grower phase on growth performance, blood metabolites, carcass traits and pork quality in grower finisher pigs. Acta Agr Scand. 58(1):14–22.
  • Yuan D, Jiang J, Han X, Yu G. 2015. Study on digestible lysine requirement of 15-30kg Yantai black pig. Chinese J Anim Sci. 51(7):59–65.
  • Zeng PL, Yan HC, Wang XQ, Zhang CM, Zhu C, Shu G, Jiang QY. 2013. Effects of dietary lysine levels on apparent nutrient digestibility and serum amino acid absorption mode in growing pigs. Asian Australas J Anim Sci. 26(7):1003–1011.
  • Zhang GH, Pomar C, Yang GS. 2011. Estimation of lysine requirement for growing-finishing pigs using a precision feeding technique. Scientia Agricultura Sinica. 44(18):3840–3849.
  • Zhang J, Yin J, Zhou X, Li F, Ni J, Dong B. 2008. Effects of lower dietary lysine and energy content on carcass characteristics and meat quality in growing-finishing pigs. Asian Australas J Anim Sci. 21(12):1785–1793.