Influence of chelates on pigs productivity and quality

O. Kuzmenko, Оксана Анатоліївна Кузьменко, V. Bomko, Віталій Семенович Бомко, A. Horchanok, A. Horchanok, A. Horchanok, Анна Володимирівна Горчанок, O. Cherniavskyi, Олександр Олександрович Чернявський, V. Malina, В. Маліна, L. Lytvyschenko, L. Litvischenko, L. Litvischenko, L. Lytvyschenko, L. Lytvyshchenko, Людмила Олександрівна Литвищенко, R. Umanets, Р. В. Уманець, L. Zlamaniuk, Л. Зламанюк, D. Umanets, Д. Уманець, I. Porotikova, I. Porotikova, Інна Ігорівна Поротікова
{"title":"Influence of chelates on pigs productivity and quality","authors":"O. Kuzmenko, Оксана Анатоліївна Кузьменко, V. Bomko, Віталій Семенович Бомко, A. Horchanok, A. Horchanok, A. Horchanok, Анна Володимирівна Горчанок, O. Cherniavskyi, Олександр Олександрович Чернявський, V. Malina, В. Маліна, L. Lytvyschenko, L. Litvischenko, L. Litvischenko, L. Lytvyschenko, L. Lytvyshchenko, Людмила Олександрівна Литвищенко, R. Umanets, Р. В. Уманець, L. Zlamaniuk, Л. Зламанюк, D. Umanets, Д. Уманець, I. Porotikova, I. Porotikova, Інна Ігорівна Поротікова","doi":"10.15421/2021_110","DOIUrl":null,"url":null,"abstract":"Feeding Zinc in the form of an organic chelate in the mixed feed for young Large White pigs in fattening causes improved metabolic processes in the organism, which positively affects the indices of pigs' laughter. The intervention of zinc chelate in mixed feed promotes an increase in the morphological composition of the carcass and an improvement in the chemical composition of meat and lard. It was established that in the process of fattening young Large White pigs with a zinc chelate dose of 83.2 g/t in mixed feed, a slaughter yield is higher by 1.2% compared with analogs of control. Pigs exceeded analogs by 6.6% in meat yield and by 0.9% in protein content in meat. Keywords: Pigs, Zinc chelate, Mixed feed, Slaughter weight, Slaughter yield, Morphological composition of carcasses, Chemical composition of meat, Lard, Internal organs   References   Bomko, V.S., Smetan?na, O.V., Kuzmenko, O.A. (2015). Influence of premix on based metalohelatov on digestibility of nutrients highly productive cows. Scientific Messenger of LNU of Veterinary Medicine and Biotechnologies, 17, 1 (61), 3, 17–22 (in Ukrainian). Borisevich, V., Borisevich, B., Petrenko, O. (2008). Vpliv nanoakvahelat?v metal?v na p?dsosnih porosjat. Tvarinnictvo Ukrajiny, 12, 33–34 (in Ukrainian). Dyachenko, L.S., Syvyc, T.L., Tytariova, O.M., Kuzmenko, O.A., Bilkevich, V.V. (2017). Natural detoxicants in pig rations and their impact on productivity and quality of slaughter products. Ukrainian Journal of Ecology, 7(2), 239–246, doi: 10.15421/2017_42 El Ashry, G.M., Hassan, A. M. and Soliman, S. M. (2012). Effect of feeding a combination of Zinc, Manganese and Copper Methionine chelates of early lactation high producing dairy cow. Food and Nutri. Sci., 3: 1084-1091. Hackbart, K.S., Ferreira, R.M., Dietsche, A.A., Socha, M.T Shaver, R. D., Wiltbank, M. C. and Fricke, P.M. (2010). Effect of dietary organic zinc, manganese, copper, and cobalt supplementation on milk production, follicular growth, embryo quality, and tissue mineral concentrations in dairy cows. J. Anim. Sci.,88(12):3856-3870. Horchanok, A., Kuzmenko, O. (2018). Bioavailability of microelements from different compounds in the body of cows and their effect on digestibility. Collection of scientific works international. Proceed. Int. Sc. Conf.  Kiyv. Horchanok, A. V., Kuzmenko, O.A., Khalak, V.I., Porotikova, I.I, Lunska, A.Yu. (2019). Efficiency of using of the organic mineral mixed ligand cuprum in the pig feeding. Annals of the Faculty of Engineering Hunedoara; Hunedoara, 17, 3, 145–148. Huntington, C.E., Bollinger, D.W., Veum, T.L. and Brommelsiek, W.A. (2002). Effect of lower dietary concentrations of zinc oxide on growth performance and zinc excretion by weanling pigs. J. Anim. Sci., 80, 162. Khalak, V., Horchanok, A., Kuzmenko, O., Lytvyshchenko, L., Lieshchova, M., ?alinichenko, A., Liskovich, V., Zagoruy, L. (2020). Protein metabolism, physicochemical properties and chemical composition of muscle tissue in Large White weaners. Ukrainian Journal of Ecology, 10(4), 127-131, doi: 10.15421/2020_179. Mavromichalis, I., Webel, D., Parr, E. (2001). Growth-promoting efficacy of pharmacological doses of tetrabasic zinc chloride in diets for nursery pigs. Anim. Sci, 81, 367–391. Mel’nychenko, O.P., Yakymenko, I.L., Shevchenko, R.L. (2006). Statystychna obrobka eksperymental'nykh danykh. Bila Tserkva (in Ukrainian). Merzlov, S.V. (2009). Konstrujuvannja m?neral'no-organ?chnih spoluk kobal'tu ta kontrol' procesu helatoutvorennja. Naukovij v?snik L'v?v. nac. un-tu. vet. medicini ta b?oteh. ?m. S.Z. Gzhitskogo, 2 (41),  172–175 (in Ukrainian). Nagalakshmi, D., Sridhar, K., Satyanarayana, M., Parashu Ramulu, S., Narwade, V.S. and Vikram, L. (2018) Effect of replacing inorganic zinc with a lower level of organic zinc (Zn propionate) on performance of biochemical constituents, antioxidant, immune and mineral status in buffaloe calves. Indian J. Anim. Res, 52(9), 1292-1297. Pal, D.T., Gowda, N.K. S., Prasad, C.S., Amarnath, R., Bharadwal, U., Suresh Babu, G. and Sampath, K.T. (2010). Effect of copperand zinc-methionine supplementation on bioavailability, rrtineral status and tissue concentrations of copper and zinc in ewes. J. Trace Elem. Med. Bio., 24, 89-94. Petukhova, E.A., Bessarabova, R.F., Khaleneva, L.D., Antonova, O.A. (2010). Zootekhnycheskyy analyz kormov. Saint Petersburg (in Russian) Podkhaliuzina, O.M., Bomko, V.S., Kuzmenko, O.A. (2020). Peretravnist kormu ta produktyvnist molodniaku svynei na vidhodivli za vykorystannia zmishanolihandnoho kompleksu Kuprumu. Zbirnyk naukovykh prats “Tekhnolohiia vyrobnytstva i pererobky produktsii tvarynnytstva”, 1, 118–124, doi: 10.33245/2310-9270-2020-157-1-118-124. Saripinar Aksu, D., Aksu, T. Ozsoy B. and Baytok. E. (2010). The effects of replacing inorganic with at lower level of organically complexed minerals (Cu, Zn and Mn) in broiler diets on lipid peroxidation and antioxidant defense systems. Asia.-Austr. J. Anim.Sci, 23, 1066-1072. Sethy, K., Behera, K., Mishra, S. K., Gupta, S.K., Sahoo, N., Parhi, S.S., Mahapatra, M. R. and Khadanga. S. (2018). Effect of organic zinc supplementation on growth, metabolic profile and antioxidant status of Ganjam Sheep. Indian J. Anim. Res. 52(6), 839-842. Smetanina, O.V., Ibatulin, I.I., Bomko, V.S., Bomko, L.G., Kuzmenko, O.A. (2017). Influence of mixed ligand complex of ?obalt on its metabolism in the organism of highly productive cows. Ukrainian Journal of Ecology, 7(4), 559–563, doi: 10.15421/2017_160. Wang, R. L., Liang, J. G., Lu, L., Zhang, L. Y. and Li, S. F. (2013). Effect of zinc source on performance, zinc status, immune response, and rumen fermentation of lactating cows. Biol. 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引用次数: 1

Abstract

Feeding Zinc in the form of an organic chelate in the mixed feed for young Large White pigs in fattening causes improved metabolic processes in the organism, which positively affects the indices of pigs' laughter. The intervention of zinc chelate in mixed feed promotes an increase in the morphological composition of the carcass and an improvement in the chemical composition of meat and lard. It was established that in the process of fattening young Large White pigs with a zinc chelate dose of 83.2 g/t in mixed feed, a slaughter yield is higher by 1.2% compared with analogs of control. Pigs exceeded analogs by 6.6% in meat yield and by 0.9% in protein content in meat. Keywords: Pigs, Zinc chelate, Mixed feed, Slaughter weight, Slaughter yield, Morphological composition of carcasses, Chemical composition of meat, Lard, Internal organs   References   Bomko, V.S., Smetan?na, O.V., Kuzmenko, O.A. (2015). Influence of premix on based metalohelatov on digestibility of nutrients highly productive cows. Scientific Messenger of LNU of Veterinary Medicine and Biotechnologies, 17, 1 (61), 3, 17–22 (in Ukrainian). Borisevich, V., Borisevich, B., Petrenko, O. (2008). Vpliv nanoakvahelat?v metal?v na p?dsosnih porosjat. Tvarinnictvo Ukrajiny, 12, 33–34 (in Ukrainian). Dyachenko, L.S., Syvyc, T.L., Tytariova, O.M., Kuzmenko, O.A., Bilkevich, V.V. (2017). Natural detoxicants in pig rations and their impact on productivity and quality of slaughter products. Ukrainian Journal of Ecology, 7(2), 239–246, doi: 10.15421/2017_42 El Ashry, G.M., Hassan, A. M. and Soliman, S. M. (2012). Effect of feeding a combination of Zinc, Manganese and Copper Methionine chelates of early lactation high producing dairy cow. Food and Nutri. Sci., 3: 1084-1091. Hackbart, K.S., Ferreira, R.M., Dietsche, A.A., Socha, M.T Shaver, R. D., Wiltbank, M. C. and Fricke, P.M. (2010). Effect of dietary organic zinc, manganese, copper, and cobalt supplementation on milk production, follicular growth, embryo quality, and tissue mineral concentrations in dairy cows. J. Anim. Sci.,88(12):3856-3870. Horchanok, A., Kuzmenko, O. (2018). Bioavailability of microelements from different compounds in the body of cows and their effect on digestibility. Collection of scientific works international. Proceed. Int. Sc. Conf.  Kiyv. Horchanok, A. V., Kuzmenko, O.A., Khalak, V.I., Porotikova, I.I, Lunska, A.Yu. (2019). Efficiency of using of the organic mineral mixed ligand cuprum in the pig feeding. Annals of the Faculty of Engineering Hunedoara; Hunedoara, 17, 3, 145–148. Huntington, C.E., Bollinger, D.W., Veum, T.L. and Brommelsiek, W.A. (2002). Effect of lower dietary concentrations of zinc oxide on growth performance and zinc excretion by weanling pigs. J. Anim. Sci., 80, 162. Khalak, V., Horchanok, A., Kuzmenko, O., Lytvyshchenko, L., Lieshchova, M., ?alinichenko, A., Liskovich, V., Zagoruy, L. (2020). Protein metabolism, physicochemical properties and chemical composition of muscle tissue in Large White weaners. Ukrainian Journal of Ecology, 10(4), 127-131, doi: 10.15421/2020_179. Mavromichalis, I., Webel, D., Parr, E. (2001). Growth-promoting efficacy of pharmacological doses of tetrabasic zinc chloride in diets for nursery pigs. Anim. Sci, 81, 367–391. Mel’nychenko, O.P., Yakymenko, I.L., Shevchenko, R.L. (2006). Statystychna obrobka eksperymental'nykh danykh. Bila Tserkva (in Ukrainian). Merzlov, S.V. (2009). Konstrujuvannja m?neral'no-organ?chnih spoluk kobal'tu ta kontrol' procesu helatoutvorennja. Naukovij v?snik L'v?v. nac. un-tu. vet. medicini ta b?oteh. ?m. S.Z. Gzhitskogo, 2 (41),  172–175 (in Ukrainian). Nagalakshmi, D., Sridhar, K., Satyanarayana, M., Parashu Ramulu, S., Narwade, V.S. and Vikram, L. (2018) Effect of replacing inorganic zinc with a lower level of organic zinc (Zn propionate) on performance of biochemical constituents, antioxidant, immune and mineral status in buffaloe calves. Indian J. Anim. Res, 52(9), 1292-1297. Pal, D.T., Gowda, N.K. S., Prasad, C.S., Amarnath, R., Bharadwal, U., Suresh Babu, G. and Sampath, K.T. (2010). Effect of copperand zinc-methionine supplementation on bioavailability, rrtineral status and tissue concentrations of copper and zinc in ewes. J. Trace Elem. Med. Bio., 24, 89-94. Petukhova, E.A., Bessarabova, R.F., Khaleneva, L.D., Antonova, O.A. (2010). Zootekhnycheskyy analyz kormov. Saint Petersburg (in Russian) Podkhaliuzina, O.M., Bomko, V.S., Kuzmenko, O.A. (2020). Peretravnist kormu ta produktyvnist molodniaku svynei na vidhodivli za vykorystannia zmishanolihandnoho kompleksu Kuprumu. Zbirnyk naukovykh prats “Tekhnolohiia vyrobnytstva i pererobky produktsii tvarynnytstva”, 1, 118–124, doi: 10.33245/2310-9270-2020-157-1-118-124. Saripinar Aksu, D., Aksu, T. Ozsoy B. and Baytok. E. (2010). The effects of replacing inorganic with at lower level of organically complexed minerals (Cu, Zn and Mn) in broiler diets on lipid peroxidation and antioxidant defense systems. Asia.-Austr. J. Anim.Sci, 23, 1066-1072. Sethy, K., Behera, K., Mishra, S. K., Gupta, S.K., Sahoo, N., Parhi, S.S., Mahapatra, M. R. and Khadanga. S. (2018). Effect of organic zinc supplementation on growth, metabolic profile and antioxidant status of Ganjam Sheep. Indian J. Anim. Res. 52(6), 839-842. Smetanina, O.V., Ibatulin, I.I., Bomko, V.S., Bomko, L.G., Kuzmenko, O.A. (2017). Influence of mixed ligand complex of ?obalt on its metabolism in the organism of highly productive cows. Ukrainian Journal of Ecology, 7(4), 559–563, doi: 10.15421/2017_160. Wang, R. L., Liang, J. G., Lu, L., Zhang, L. Y. and Li, S. F. (2013). Effect of zinc source on performance, zinc status, immune response, and rumen fermentation of lactating cows. Biol. Trace Elem.Res.,152(1), 16-24.
螯合剂对猪生产能力和品质的影响
在育肥过程中,在幼龄大白猪的混合饲料中以有机螯合物的形式喂食锌,可以改善机体的代谢过程,从而对猪的笑指数产生积极影响。锌螯合物在混合饲料中的干预促进了胴体形态组成的增加以及肉和猪油化学组成的改善。结果表明,在混合饲料中用83.2g/t的锌螯合物育肥幼龄大白猪的过程中,与对照类似物相比,屠宰产量提高了1.2%。猪的肉产量超过同类产品6.6%,肉中蛋白质含量超过同类产品0.9%。关键词:猪,锌螯合物,混合饲料,屠宰重量,屠宰产量,胴体形态组成,肉的化学组成,猪油,内脏参考文献Bomko,V.S.,Smetan?na,O.V.,Kuzmenko,O.A.(2015)。预混料对高产奶牛营养物质消化率的影响。LNU兽医和生物技术科学信使,17,1(61),3,17-22(乌克兰语)。Borisevich,V.,Borisevicch,B.,Petrenko,O.(2008)。Vpliv nanoakvahelat?v金属?v na p?dsosnih porosjat。Tvarinnictvo Ukrajini,12岁,33–34岁(乌克兰语)。Dyachenko,L.S.,Syvyc,T.L.,Tytariova,O.M.,Kuzmenko,O.A.,Bilkevich,V.V.(2017)。猪日粮中的天然解毒剂及其对屠宰产品生产力和质量的影响。《乌克兰生态学杂志》,7(2),239–246,doi:10.15421/2017_42 El Ashry,G.M.,Hassan,A.M.和Soliman,S.M.(2012)。锌、锰和蛋氨酸铜螯合物联合饲喂泌乳前期高产奶牛的效果。食物和营养。Sci。,3:1084-1091。Hackbart,K.S.、Ferreira,R.M.、Dietsche,A.A.、Socha,M.T Shaver,R.D.、Wiltbank,M.C.和Fricke,P.M.(2010)。日粮中添加有机锌、锰、铜和钴对奶牛产奶、卵泡生长、胚胎质量和组织矿物质浓度的影响。J.阿尼姆。Sci。,88(12):3856-3870。Horchanok,A.,Kuzmenko,O.(2018)。不同化合物中微量元素在奶牛体内的生物利用度及其对消化率的影响。国际科学著作集。继续国际科学会议。Horchanok,A.V.,Kuzmenko,O.A.,Khalak,V.I.,Porotikova,I.I,Lunska,A.Yu.(2019)。有机矿物混合配位体铜在养猪中的应用效果。Hunedoara工程学院年鉴;Hunedoara,17,3145-148。Huntington,C.E.、Bollinger,D.W.、Veum,T.L.和Brommelsiek,W.A.(2002)。日粮中较低浓度的氧化锌对断奶仔猪生长性能和锌排泄的影响。J.阿尼姆。Sci。,80、162。Khalak,V.,Horchanok,A.,Kuzmenko,O.,Lytvyshchenko,L.,Lieshchova,M?alinichenko,A.,Liskovich,V.,Zagoroy,L.(2020)。大白断奶仔猪肌肉组织的蛋白质代谢、理化性质和化学成分。乌克兰生态学杂志,10(4),127-131,doi:10.15421/2020_179。Mavromichalis,I.,Webel,D.,Parr,E.(2001)。四碱式氯化锌在育肥猪日粮中的促生长作用。阿尼姆。Sci,81367–391。Mel’nychenko,O.P.,Yakymenko,I.L.,Shevchenko,R.L.(2006)。Statystychna obrobka ekspermenttal'nyh danykh。Bila Tserkva(乌克兰语)。Merzlov,S.V.(2009)。Konstrujuvannja m?neral’no-organ?技术人员会控制这一过程。Naukovij v?snik L'v?v.nac。un-tu。兽医medicini ta b?哦?m.S.Z.Gzhitskogo,2(41),172–175(乌克兰语)。Nagalakshmi,D.、Sridhar,K.、Satyanarayana,M.、Parashu Ramulu,S.、Narwade,V.S.和Vikram,L.(2018)用较低水平的有机锌(丙酸锌)替代无机锌对水牛幼牛生化成分性能、抗氧化性、免疫性和矿物质状态的影响。印度人J.Anim。Res,52(9),1292-1297。Pal,D.T.、Gowda,N.K.S.、Prasad,C.S.、Amarnath,R.、Bharadwal,U.、Suresh Babu,G.和Sampath,K.T.(2010)。补充铜和锌蛋氨酸对母羊体内铜和锌的生物利用度、排泄状态和组织浓度的影响。J.Trace Elem。医学生物学,2489-94。Petukhova,E.A.,Besarabova,R.F.,Khaleneva,L.D.,Antonova,O.A.(2010)。Zootekhnycheskyy分析科尔莫夫。圣彼得堡(俄语)Podkhaluzina,O.M.,Bomko,V.S.,Kuzmenko,O.A.(2020)。这是一个生产过程,它是一个由Kuprumu居民组成的家庭。Zbirnyk naukovykh实践“Tekhnolohia vyrobnytstvva i pererobky produktsii tvarynnytstva”,118-124,doi:10.33245/2310-9270-2020-157-1-118-124。Saripinar Aksu,D.,Aksu,T.Ozsoy B.和Baytok。E.(2010)。在肉鸡日粮中用较低水平的有机复合矿物质(Cu、Zn和Mn)代替无机矿物质对脂质过氧化和抗氧化防御系统的影响。亚洲-澳大利亚。J.阿尼姆。
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