206
Views
0
CrossRef citations to date
0
Altmetric
Research Article

Effect of manganese amino acid complexes on growth performance, meat quality, breast muscle and bone development in broilers

, , , , , & show all
Received 26 Nov 2023, Accepted 14 Feb 2024, Published online: 12 Jul 2024

References

  • Alagawany, M., S. S. Elnesr, M. R. Farag, R. Tiwari, M. I. Yatoo, K. Karthik, I. Michalak, and K. Dhama. 2020. “Nutritional Significance of Amino Acids, Vitamins and Minerals as Nutraceuticals in Poultry Production and Health - a Comprehensive Review.” The Veterinary Quarterly 41 (1): 1–29. https://doi.org/10.1080/01652176.2020.1857887.
  • Amarilio, R., S. V. Viukov, A. Sharir, I. Eshkar-Oren, R. S. Johnson, and E. Zelzer. 2007. “HIF1alpha Regulation of Sox9 is Necessary to Maintain Differentiation of Hypoxic Prechondrogenic Cells during Early Skeletogenesis.” Development (Cambridge, England) 134 (21): 3917–3928. https://doi.org/10.1242/dev.008441.
  • Antwi, P., C. S. Hong, D. Duran, S. C. Jin, W. Dong, M. DiLuna, and K. T. Kahle. 2018. “A Novel Association of Campomelic Dysplasia and Hydrocephalus with an Unbalanced Chromosomal Translocation Upstream of SOX9.” Cold Spring Harbor Molecular Case Study 4 (3): a002766. https://doi.org/10.1101/mcs.a002766.
  • Baly, D. L., C. L. Keen, and L. S. Hurley. 1986. “Effects of Mn Deficiency on Pyruvate Carboxylase and Phosphoenolpyruvate Carboxykinase Activity and Carbohydrate Homeostasis in Adult Rats.” Biological trace element research 11 (1): 201–212. https://doi.org/10.1007/BF02795535.
  • Bao, Y. M., M. Choct, P. A. Iji, and K. Bruerton. 2007. “Effect of Organically Complexed Copper, Iron, Mn and Zinc on Broiler Performance, Mineral Excretion and Accumulation in Tissues.” Journal of Applied Poultry Research 16 (3): 448–455. https://doi.org/10.1093/japr/16.3.448.
  • Bao, Y. M., M. Choct, P. A. Iji, and K. Bruerton. 2010. “Trace Mineral Interactions in Broiler Chicken Diets.” British Poultry Science 51 (1): 109–117. https://doi.org/10.1080/00071660903571904.
  • Berta, E., E. Andrásofszky, A. Bersényi, R. Glávits, A. Gáspárdy, and S. G. Fekete. 2004. “Effect of Inorganic and Organic Mn Supplementation on the Performance and Tissue Mn Content of Broiler Chicks.” Acta Veterinaria Hungarica 52 (2): 199–209. https://doi.org/10.1556/AVet.52.2004.2.8.
  • Bosman, F. T., and I. Stamenkovic. 2003. “Functional Structure and Composition of the Extracellular Matrix.” The Journal Pathology 200 (4): 423–428. https://doi.org/10.1002/path.1437.
  • Bozkurt, Z., T. Bulbul, M. F. Bozkurt, A. Bulbul, G. Maralcan, and K. Celikeloglu. 2015. “Effects of Organic and Inorganic Mn Supplementation on Bone Characteristics, Immune Response to Vaccine and Oxidative Stress Status in Broiler Reared Under High Stocking Density.” Kafkas Universitesi Veteriner Fakultesi Dergisi 21 (5): 623–630. https://doi.org/10.9775/kvfd.2014.12655.
  • Brooks, M. A., J. L. Grimes, K. E. Lloyd, F. Valdez, and J. W. Spears. 2012. “Relative Bioavailability in Chicks of Mn from Mn Propionate.” Journal of Applied Poultry Research 21 (1): 126–130. https://doi.org/10.3382/japr.2011-00331.
  • Chan, W., Z. Tan, M. To, and D. Chan. 2021. “Regulation and Role of Transcription Factors in Osteogenesis.” International Journal of Molecular Sciences 22 (11): 5445. https://doi.org/10.3390/ijms22115445.
  • Charlier, E., B. Relic, C. Deroyer, O. Malaise, S. Neuville, J. Collée, M. G. Malaise, and D. de Seny. 12 2016. “Insights on Molecular Mechanisms of Chondrocytes Death in Osteoarthritis.” International Journal of Molecular Sciences 17 (12): 2146. https://doi.org/10.3390/ijms17122146.
  • Chegeni, M. M., M. Mottaghitalab, S. Moghaddam, and M. Golshekan. 2019. “Broiler Intestine DMT1 Gene Expression and Bone Characteristics, as Affected by in Ovo Injection of Different Forms of Mn.” Italian Journal of Animal Science 18 (1): 1215–1222. https://doi.org/10.1080/1828051X.2019.1646106.
  • Chen, S., Y. Zhou, Y. Chen, and J. Gu. 2018. “Fastp: an ultra-fast all-in-one FASTQ preprocessor.” Bioinformatics 34 (17): i884–i890. https://doi.org/10.1093/bioinformatics/bty560.
  • Crittenden, P. L., and N. M. Filipov. 2011. “Mn Modulation of MAPK Pathways: Effects on Upstream Mitogen Activated Protein Kinase Kinases and Mitogen Activated Kinase Phosphatase-1 in Microglial Cells.” Journal of Applied Toxicology 31 (1): 1–10. https://doi.org/10.1002/jat.1552.
  • dos Santos, E., E. R. Freitas, R. C. Nepomuceno, P. H. Watanabe, D. H. Souza, D. R. Fernandes, F. C. de Abreu, N. G. Do, G. C. Aguiar, and M. de Melo. 2021. “Organic Zinc and Mn and 25-Hydroxycholecalciferol Improves Eggshell Thickness in Late-Phase Laying Hens.” Tropical Animal Health and Production 53 (6): 529. https://doi.org/10.1007/s11250-021-02959-x.
  • Erikson, K. M., and M. Aschner. 2019. “Mn: Its Role in Disease and Health.” Metal Ions in Life Sciences 19. https://doi.org/10.1515/9783110527872-016.
  • Farquharson, C., and D. Jefferies. 2000. “Chondrocytes and Longitudinal Bone Growth: The Development of Tibial Dyschondroplasia.” Poultry Science 79 (7): 994–1004. https://doi.org/10.1093/ps/79.7.994.
  • Flores, K. R., A. Fahrenholz, P. R. Ferket, T. J. Biggs, and J. L. Grimes. 2021. “Effect of Methionine Chelated Zn and Mn and Corn Particle Size on Large White Male Turkey Live Performance and Carcass Yields.” Poultry Science 100 (11): 101444. https://doi.org/10.1016/j.psj.2021.101444.
  • Gao, T., F. Wang, S. Li, X. Luo, and K. Zhang. 2011. “Mn Regulates Mn-Containing Superoxide Dismutase (MnSOD) Expression in the Primary Broiler Myocardial Cells.” Biological trace element research 144 (1–3): 695–704. https://doi.org/10.1007/s12011-011-9093-y.
  • Hassan, S., F. U. Hassan, and M. S. Rehman. 2020. “Nano-Particles of Trace Minerals in Poultry Nutrition: Potential Applications and Future Prospects.” Biological Trace Element Research 195 (2): 591–612. https://doi.org/10.1007/s12011-019-01862-9.
  • Henry, P. R., C. B. Ammerman, and R. D. Miles. 1986. “Bioavailability of Mn Sulfate and Mn Monoxide in Chicks As Measured by Tissue Uptake of Mn from Conventional Dietary Levels.” Poultry Science 65 (5): 983–986. https://doi.org/10.3382/ps.0650983.
  • Henry, P. R., C. B. Ammerman, and R. D. Miles. 1989. “Relative Bioavailability of Mn in a Mn-Methionine Complex for Broiler Chicks.” Poultry Science 68 (1): 107–112. https://doi.org/10.3382/ps.0680107.
  • Huang, S. C., L. H. Zhang, J. L. Zhang, M. U. Rehman, X. L. Tong, G. Qiu, X. Jiang, et al. 2018. “Role and Regulation of Growth Plate Vascularisation During Coupling with Osteogenesis in Tibial Dyschondroplasia of Chickens.” Scientific Reports 8 (1): 3680. https://doi.org/10.1038/s41598-018-22109-y.
  • Ji, F., X. G. Luo, L. Lu, B. Liu, and S. X. Yu. 2006. “Effect of Mn Source on Mn Absorption by the Intestine of Broilers.” Poultry Science 85 (11): 1947–1952. https://doi.org/10.1093/ps/85.11.1947.
  • Kawakami, Y., J. rodriguez-león, and B. J. Izpisúa. 2006. “The Role of TGFbetas and Sox9 During Limb Chondrogenesis.” Current Opinion in Cell Biology 18 (6): 723–729. https://doi.org/10.1016/j.ceb.2006.10.007.
  • Kim, D., B. Langmead, and S. L. Salzberg. 2015. “HISAT: A Fast Spliced Aligner with Low Memory Requirements.” Nature Methods 12 (4): 357–360. https://doi.org/10.1038/nmeth.3317.
  • Kim, M. J., A. Hosseindoust, K. Y. Kim, J. Moturi, J. H. Lee, T. G. Kim, J. Y. Mun, and B. J. Chae. 2022. “Improving the Bioavailability of Mn and Meat Quality of Broilers by Using Hot-Melt Extrusion Nano Method.” British Poultry Science 63 (2): 211–217. https://doi.org/10.1080/00071668.2021.1955332.
  • Langmead, B., and S. L. Salzberg. 2012. “Fast Gapped-Read Alignment with Bowtie 2.” Nature Methods 9 (4): 357–359. https://doi.org/10.1038/nmeth.1923.
  • Laurie, L. E., H. Kokubo, M. Nakamura, Y. Saga, and N. Funato. 2016. “The Transcription Factor Hand1 Is Involved in Runx2-Ihh-Regulated Endochondral Ossification.” PLOS ONE 11 (2): e150263. https://doi.org/10.1371/journal.pone.0150263.
  • Lesiów, T., and Y. L. Xiong. 2013. “A Simple, Reliable and Reproductive Method to Obtain Experimental Pale, Soft and Exudative (PSE) Pork.” Meat Science 93 (3): 489–494. https://doi.org/10.1016/j.meatsci.2012.11.022.
  • Leung, V. Y., B. Gao, K. K. Leung, I. G. Melhado, S. L. Wynn, T. Y. Au, N. W. Dung, et al. 2011. “SOX9 Governs Differentiation Stage-Specific Gene Expression in Growth Plate Chondrocytes via Direct Concomitant Transactivation and Repression.” PLOS Genetics 7 (11): e1002356. https://doi.org/10.1371/journal.pgen.1002356.
  • Li, S., Y. Lin, L. Lu, L. Xi, Z. Wang, S. Hao, L. Zhang, K. Li, and X. Luo. 2011a. “An Estimation of the Mn Requirement for Broilers from 1 to 21 Days of Age.” Biological Trace Element Research 143 (2): 939–948. https://doi.org/10.1007/s12011-010-8931-7.
  • Li, S., L. Lu, S. Hao, Y. Wang, L. Zhang, S. Liu, B. Liu, K. Li, and X. Luo. 2011b. “Dietary Mn Modulates Expression of the Mn-Containing Superoxide Dismutase Gene in Chickens.” The Journal of Nutrition 141 (2): 189–194. https://doi.org/10.3945/jn.110.126680.
  • Li, S., X. Luo, B. Liu, T. D. Crenshaw, X. Kuang, G. Shao, and S. Yu. 2004. “Use of Chemical Characteristics to Predict the Relative Bioavailability of Supplemental Organic Mn Sources for Broilers.” Journal of Animal Science 82 (8): 2352–2363. https://doi.org/10.2527/2004.8282352x.
  • Liu, R., C. Jin, Z. Wang, Z. Wang, J. Wang, and L. Wang. 2015. “Effects of Mn Deficiency on the Microstructure of Proximal Tibia and OPG/RANKL Gene Expression in Chicks.” Veterinary Research Communications 39 (1): 31–37. https://doi.org/10.1007/s11259-015-9626-5.
  • Love, M. I., W. Huber, and S. Anders. 2014. “Moderated Estimation of Fold Change and Dispersion for RNA-Seq Data with DESeq2.” Genome Biology 15 (12): 550. https://doi.org/10.1186/s13059-014-0550-8.
  • Lu, L., B. Chang, X. Liao, R. Wang, L. Zhang, and X. Luo. 2016. “Use of Molecular Biomarkers to Estimate Mn Requirements for Broiler Chickens from 22 to 42 D of Age.” The British Journal of Nutrition 116 (9): 1512–1518. https://doi.org/10.1017/S0007114516003640.
  • Malthankar, G. V., B. K. White, A. Bhushan, C. K. Daniels, K. J. Rodnick, and J. C. Lai. 2004. “Differential Lowering by Mn Treatment of Activities of Glycolytic and Tricarboxylic Acid (TCA) Cycle Enzymes Investigated in Neuroblastoma and Astrocytoma Cells Is Associated with Mn-Induced Cell Death.” Neurochemical Research 29 (4): 709–717. https://doi.org/10.1023/b:nere.0000018841.98399.ce.
  • Meng, T., L. Gao, C. Xie, Y. Xiang, Y. Huang, Y. Zhang, and X. Wu. 2021. “Mn Methionine Hydroxy Analog Chelated Affects Growth Performance, Trace Element Deposition and Expression of Related Transporters of Broilers.” Animal Nutrition 7 (2): 481–487. https://doi.org/10.1016/j.aninu.2020.09.005.
  • Mwangi, S., J. Timmons, T. Ao, M. Paul, L. Macalintal, A. Pescatore, A. Cantor, and K. A. Dawson. 2019. “Effect of Mn Preconditioning and Replacing Inorganic Mn with Organic Mn on Performance of Male Broiler Chicks.” Poultry Science 98 (5): 2105–2113. https://doi.org/10.3382/ps/pey564.
  • Nollet, M., S. Santucci-Darmanin, V. Breuil, R. al-Sahlanee, C. Cros, M. Topi, D. Momier, et al. 2014. “Autophagy in Osteoblasts Is Involved in Mineralisation and Bone Homeostasis.” Autophagy 10 (11): 1965–1977. https://doi.org/10.4161/auto.36182.
  • NRC (National Research Council). 1994. Nutrient Requirements of Poultry. 9th ed. Washington, DC: National Academy Press.
  • Peng, G., H. Sun, H. Jiang, Q. Wang, L. Gan, Y. Tian, J. Sun, D. Wen, and J. Deng. 2022. “Exogenous Growth Hormone Functionally Alleviates Glucocorticoid-Induced Longitudinal Bone Growth Retardation in Male Rats by Activating the Ihh/PthrP Signaling Pathway.” Molecular and Cellular Endocrinology 545:111571. https://doi.org/10.1016/j.mce.2022.111571.
  • Qi, S. S., M. L. Shao, Z. Sun, S. M. Chen, Y. J. Hu, X. S. Li, J. Chen, H. X. Zheng, and T. L. Yue. 2021. “Chondroitin Sulfate Alleviates Diabetic Osteoporosis and Repairs Bone Microstructure via Anti-Oxidation, Anti-Inflammation and Regulating Bone Metabolism.” Frontiers in Endocrinology (Lausanne) 12:759843. https://doi.org/10.3389/fendo.2021.759843.
  • Sabaghi, S., J. Razmyar, and M. Heidarpour. 2021. “Effects of Nano-Mn on Humoral Immune Response and Oxidative Stress in Broilers.” Veterinary Research Forum 12 (4): 487–491. https://doi.org/10.30466/vrf.2020.114233.2716.
  • Saldanha, M. M., I. Araújo, M. V. Triguineli, D. P. Vaz, F. Ferreira, J. Albergaria, D. O. Fontes, and L. Lara. 2020. “Relative Bioavailability of Mn in Relation to Proteinate and Sulfate Sources for Broiler Chickens from One to 20 D of Age.” Poultry Science 99 (11): 5647–5652. https://doi.org/10.1016/j.psj.2020.05.006.
  • Sandbo, N., and N. Dulin. 2011. “Actin Cytoskeleton in Myofibroblast Differentiation: Ultrastructure Defining Form and Driving Function.” Translational Research 158 (4): 181–196. https://doi.org/10.1016/j.trsl.2011.05.004.
  • Singh, A. K., T. K. Ghosh, and S. Haldar. 2015. “Effects of Methionine Chelate- or Yeast Proteinate-Based Supplement of Copper, Iron, Mn and Zinc on Broiler Growth Performance, their Distribution in the Tibia and Excretion into the Environment.” Biological trace element research 164 (2): 253–260. https://doi.org/10.1007/s12011-014-0222-2.
  • Sun, Y., S. Geng, T. Yuan, Y. Liu, Y. Zhang, Y. di, J. Li, and L. Zhang. 2021. “Effects of Mn Hydroxychloride on Growth Performance, Antioxidant Capacity, Tibia Parameters and Mn Deposition of Broilers.” Animals (Basel) 11 (12): 3470. https://doi.org/10.3390/ani11123470.
  • Sun, Y., W. Z. Liu, T. Liu, X. Feng, N. Yang, and H. F. Zhou. 2015. “Signaling Pathway of MAPK/ERK in Cell Proliferation, Differentiation, Migration, Senescence and Apoptosis.” Journal of Receptor and Signal Transduction Research 35 (6): 600–604. https://doi.org/10.3109/10799893.2015.1030412.
  • Velleman, S. G. 2007. “Muscle Development in the Embryo and Hatchling.” Poultry Science 86 (5): 1050–1054. https://doi.org/10.1093/ps/86.5.1050.
  • Wang, F., L. Lu, S. Li, S. Liu, L. Zhang, J. Yao, and X. Luo. 2012. “Relative Bioavailability of Mn Proteinate for Broilers Fed a Conventional Corn-Soybean Meal Diet.” Biological Trace Element Research 146 (2): 181–186. https://doi.org/10.1007/s12011-011-9238-z.
  • Wang, J., Z. Y. Wang, Z. J. Wang, R. Liu, S. Q. Liu, and L. Wang. 2015. “Effects of Mn Deficiency on Chondrocyte Development in Tibia Growth Plate of Arbor Acres Chicks.” Journal of Bone and Mineral Metabolism 33 (1): 23–29. https://doi.org/10.1007/s00774-014-0563-0.
  • Wang, R., Z. Shi, J. Li, D. Tang, S. Qin, and Y. Guo. 2022. “Protective Effect of Mn on Apoptosis and Mitochondrial Function of Heat-Stressed Primary Chick Embryonic Myocardial Cells.” Biological trace element research 200 (10): 4419–4429. https://doi.org/10.1007/s12011-021-03016-2.
  • Wołonciej, M., E. Milewska, and W. Roszkowska-Jakimiec. 2016. “Trace Elements As an Activator of Antioxidant Enzymes.” Postepy higieny i medycyny doswiadczalnej (Online) 70 (): 1483–1498. https://doi.org/10.5604/17322693.1229074.
  • Xia, W. H., L. Tang, Z. Y. Wang, and L. Wang. 2022. “Effects of Inorganic and Organic Mn Supplementation on Growth Performance, Tibia Development and Oxidative Stress in Broiler Chickens.” Biological Trace Element Research 200 (10): 4453–4464. https://doi.org/10.1007/s12011-021-03041-1.
  • Xie, Q., K. Xie, J. Yi, Z. Song, H. Zhang, and X. He. 2022. “The Effects of Magnolol Supplementation on Growth Performance, Meat Quality, Oxidative Capacity and Intestinal Microbiota in Broilers.” Poultry Science 101 (4): 101722. https://doi.org/10.1016/j.psj.2022.101722.
  • Yang, T., X. Wang, M. Wen, H. Zhao, G. Liu, X. Chen, G. Tian, J. Cai, and G. Jia. 2021. “Effect of Mn Supplementation on the Carcass Traits, Meat Quality, Intramuscular Fat and Tissue Mn Accumulation of Pekin Duck.” Poultry Science 100 (5): 101064. https://doi.org/10.1016/j.psj.2021.101064.
  • Yang, X. J., X. X. Sun, C. Y. Li, X. H. Wu, and J. H. Yao. 2011. “Effects of Copper, Iron, Zinc and Mn Supplementation in a Corn and Soybean Meal Diet on the Growth Performance, Meat Quality and Immune Responses of Broiler Chickens.” Journal of Applied Poultry Research 20 (3): 263–271. https://doi.org/10.3382/japr.2010-00204.
  • Zarghi, H., A. Hassanabadi, and N. Barzegar. 2023. “Effect of Organic and Inorganic Mn Supplementation on Performance and Eggshell Quality in Aged Laying Hens.” Veterinary Medicine and Science 9 (3): 1256–1268. https://doi.org/10.1002/vms3.1116.
  • Zhang, H., K. Mehmood, X. Jiang, W. Yao, M. Iqbal, K. Li, X. Tong, et al. 2018. “Effect of Icariin on Tibial Dyschondroplasia Incidence and Tibial Characteristics by Regulating P2RX7 in Chickens.” BioMed Research International 2018:1–11. https://doi.org/10.1155/2018/6796271.
  • Zhang, J., S. Huang, X. Tong, L. Zhang, X. Jiang, H. Zhang, K. Mehmood, and J. Li. 13 2019. “Chlorogenic Acid Alleviates Thiram-Induced Tibial Dyschondroplasia by Modulating Caspases, BECN1 Expression and ECM Degradation.” International Journal of Molecular Sciences 20 (13): 3160. https://doi.org/10.3390/ijms20133160.
  • Zhao, F., C. He, H. Peng, K. Zhang, X. Ding, J. Wang, Q. Zeng, Y. Xuan, S. Bai, and C. Yu. 2019. “Relative Bioavailability of Humate-Mn Complex for Broilers Fed a Corn-Soya Bean Meal Diet.” Journal of Animal Physiology and Animal Nutrition 103 (1): 108–115. https://doi.org/10.1111/jpn.13009.
  • Zhaojun, W., W. Lin, W. Zhenyong, W. Jian, and L. Ran. 2013. “Effects of Mn Deficiency on Serum Hormones and Biochemical Markers of Bone Metabolism in Chicks.” Journal of Bone and Mineral Metabolism 31 (3): 285–292. https://doi.org/10.1007/s00774-012-0417-6.
  • Zhu, M. J., S. P. Ford, P. W. Nathanielsz, and M. du. 2004. “Effect of Maternal Nutrient Restriction in Sheep on the Development of Fetal Skeletal Muscle.” Biology of Reproduction 71 (6): 1968–1973. https://doi.org/10.1095/biolreprod.104.034561.
  • Zofková, I., P. Nemcikova, and P. Matucha. 2013. “Trace Elements and Bone Health.” Clinocal Chemistry and Laboratory Medicine 51 (8): 1555–1561. https://doi.org/10.1515/cclm-2012-0868.