- Abdulla, N. R., Mohd Zamri, A. N., Sabow, A. B., Kareem, K. Y., Nurhazirah, S., Ling, F. H., ... and Loh, T. C. (2017). Physico-chemical properties of breast muscle in broiler chickens fed probiotics, antibiotics or antibiotic–probiotic mix. Journal of Applied Animal Research, 45(1): 64-70. https://doi.org/10.1080/09712119.2015.1124330.
- Abdulwahid, A. S., Mohammed, A. B., & Al-Mjbel, A. A. (2022). Onion (Allium cepa) and sumac (Rhus coriaria) powder as dietary supplements for Japanese quail (Coturnix japonica): effect on egg production, blood parameters and antioxidant activity. https://doi.org/10.17957/IJAB/15.1964
- Abdelqader, A. ., Obeidat, M. D. ., Al-Rawashdeh, M. S. ., & Alhaj , A. A. . (2023). The Role Of Vitamin E As An Antioxidant And Preventing Damage Caused By Free Radicals. Journal of Life Science and Applied Research, 4(2), 88–95. https://doi.org/10.59807/jlsar.v4i2.89
- Aboelfadl, M. M., Nassif, F., Elghalid, O., El-Hady, A., and Mohamed, A. (2020). Influence of supplementary red beetroots or betaine dietary on productive performance, blood profiles and economic efficiency of growing rabbits. Egyptian Poultry Science Journal, 40(3): 613-629. https://dx.doi.org/10.21608/epsj.2020.114318.
- Abubakar, K., Mailafiya, M. M., Chiroma, S. M., Danmaigoro, A., Zyoud, T. Y., Abdul Rahim, E., and Abu Bakar Zakaria, M. Z. (2020). Ameliorative effect of curcumin on lead‐induced hematological and hepatorenal toxicity in a rat model. Journal of biochemical and molecular toxicology, 34(6): e22483. https://doi.org/10.1002/jbt.22483.
- Adeyemi, K. D., and Sazili, A. Q. (2014). Efficacy of carcass electrical stimulation in meat quality enhancement: A review. Asian-Australasian journal of animal sciences, 27(3): 447. https://doi.org/10.5713%2Fajas.2013.13463.
- Altinterim, B. (2013). Effects of willow bark salix alba and its salicylates on blood coagulant. Karaelmas Fen ve Mühendislik Dergisi, 3(1): 37-39. DOI: 7212/zkufbd.v3i1.101.
- (2012). AMSA Meat Color Measurement Guidelines. American Meat Science Association, Illinois, USA.
- Anadon, H. L. S. (2002). Biological, nutritional, and processing factors affecting breast meat quality of broilers. Ph.D. Thesis, Virginia Polytechnic Institute and State University.
- (2005). Official Methods of Analysis. 18th edition. Association of Official Analytical Chemists. Arlington, VA, USA.
- (2012). Official Methods of Analysis of AOAC INTERNATIONAL .19th Ed., AOAC 50 INTERNATIONAL, Gaithersburg, MD, USA.
- Arain, M. A., Mei, Z., Hassan, F. U., Saeed, M., Alagawany, M., Shar, A. H., and Rajput, I. R. (2018). Lycopene: a natural antioxidant for prevention of heat-induced oxidative stress in poultry. World's Poultry Science Journal, 74(1): 89-100. https://doi.org/10.1017/S0043933917001040.
- Aziz, S. R., & A. Rashid, S. (2023). Impact Of Using Sunflower Seed Meal In Broiler Male Diets On Performance Traits And Carcass Characteristics. Anbar Journal Of Agricultural Sciences, 21(1), 148-157. doi: 10.32649/ajas.2023.179726.
- Baéza, E., Guillier, L., and Petracci, M. (2022). Production factors affecting poultry carcass and meat quality attributes. Animal, 16: 100331. https://doi.org/10.1016/j.animal.2021.100331.
- Bernardi, D. M., Bertol, T. M., Pflanzer, S. B., Sgarbieri, V. C., and Pollonio, M. A. R. (2016). ω‐3 in meat products: benefits and effects on lipid oxidative stability. Journal of the Science of Food and Agriculture, 96(8): 2620-2634. https://doi.org/10.1002/jsfa.7559.
- Brenes A., Viveros A., Chamorro S., and Arija I. (2016). Use of polyphenol-rich grape by-products in monogastric nutrition. A review. Animal Feed Science Technology, 211: 1-17. DOI: 1016/j.anifeedsci.2015.09.016.
- Brzezińska-Rojek, J., Sagatovych, S., Malinowska, P., Gadaj, K., Prokopowicz, M., and Grembecka, M. (2023). Antioxidant capacity, nitrite and nitrate content in beetroot-based dietary supplements. Foods, 12(5): 1017. DOI: 10.3390/foods12051017.
- Cai, K., Shao, W., Chen, X., Campbell, Y. L., Nair, M. N., Suman, S. P., and Schilling, M. W. (2018). Meat quality traits and proteome profile of woody broiler breast (pectoralis major) meat. Poultry Science, 97(1): 337-346. DOI: 10.3382/ps/pex284.
- Caponio, G. R., Noviello, M., Calabrese, F. M., Gambacorta, G., Giannelli, G., and De Angelis, M. (2022). Effects of grape pomace polyphenols and in vitro gastrointestinal digestion on antimicrobial activity: Recovery of bioactive compounds. Antioxidants, 11(3): 567. DOI: 10.3390/antiox11030567.
- Chaleshtori, R. S., Chaleshtori, F. S., and Rafieian-Kopaei, M. (2011). Biological characterization of Iranian walnut (Juglans regia) leaves. Turkish Journal of Biology, 35(5): 635-639. DOI: 10.3906/biy-1005-1.
- Duncan, D. B. (1955). Multiple range and multiple F tests. Biometrics, 11(1): 1-42. https://doi.org/10.2307/3001478.
- Emami, N. K., Jung, U., Voy, B., and Dridi, S. (2020). Radical response: effects of heat stress-induced oxidative stress on lipid metabolism in the avian liver. Antioxidants, 10(1): 35. https://doi.org/10.3390/antiox10010035.
- (2022). Data from: Crops and livestock products dataset. License: CC BYNC-SA 3.0 igo. Available at: http://www.fao.org/faostat/en/#data/QC.
- (2021). Meat Market Review. Available online: https://www.fao.org/3/cb3700en/cb3700en.
- Ghasemi-Sadabadi, M., Veldkamp, T., van Krimpen, M., Ebrahimnezhad, Y., Ghalehkandi, J. G., Salehi, A., Didehvar, M., Khodaei, M., and Mehdizadeh, A. (2020). Determining tolerance of Japanese quail to different dietary fat peroxidation values by supplementation with Rosemary and Aloe Vera on performance and meat quality. Animal Feed Science and Technology, 267: 114574. DOI: 1016/j.anifeedsci.2020.114574.
- Gligorić, E., Igić, R., Suvajdžić, L., and Grujić-Letić, N. (2019). Species of the genus Salix L.: Biochemical screening and molecular docking approach to potential acetylcholinesterase inhibitors. Applied Sciences, 9(9): 1842. DOI: 3390/app9091842.
- Gopi, M., Dutta, N., Pattanaik, A. K., Jadhav, S. E., Madhupriya, V., Tyagi, P. K., and Mohan, J. (2020). Effect of polyphenol extract on performance, serum biochemistry, skin pigmentation and carcass characteristics in broiler chickens fed with different cereal sources under hot-humid conditions. Saudi Journal of Biological Sciences, 27(10): 2719- 2726. DOI: 1016/j.sjbs.2020.06.021.
- Greene, E. S., Maynard, C., Owens, C. M., Meullenet, J. F., and Dridi, S. (2021). Effects of herbal adaptogen feed-additive on growth performance, carcass parameters, and muscle amino acid profile in heat-stressed modern broilers. Frontiers in Physiology, 12: 784952. DOI: 3389/fphys.2021.784952.
- He, Y., Zhou, M., Xia, C., Xia, Q., He, J., Cao, J., Pan, D., and Sun, Y. (2020). Volatile flavor changes responding to heat stress‐induced lipid oxidation in duck meat. Animal Science Journal, 91(1): e13461. DOI: 1111/asj.13461.
- Hopkins, D. L., Shaw, F. D., Baud, S., and Walker, P. J. (2006). Electrical currents applied to lamb carcasses- Effects on blood release and meat quality. Australian Journal of Experimental Agriculture, 46(7): 885-889. DOI: 10.1071/EA05310.
- Juskiewicz, J., Jankowski, J., Zielinski, H., Zdunczyk, Z., Mikulski, D., Antoszkiewicz, Z., Kosmala, M., and Zdunczyk, P. (2017). The fatty acid profile and oxidative stability of meat from turkeys fed diets enriched with n-3 polyunsaturated fatty acids and dried fruit pomaces as a source of polyphenols. PLoS One, 12(1): e0170074. DOI: 10.1371/journal.pone.0170074.
- Kikusato, M. (2021). Phytobiotics to improve health and production of broiler chickens: functions beyond the antioxidant activity. Animal Bioscience, 34(3): 345- 353. DOI: 10.5713/ab.20.0842.
- Lee, J. H., Son, C. W., Kim, M. Y., Kim, M. H., Kim, H. R., Kwak, E. S., Kim, S., and Kim, M. R. (2009). Red beet (Beta vulgaris) leaf supplementation improves antioxidant status in C57BL/6J mice fed high fat high cholesterol diet. Nutrition Research and Practice, 3(2): 114-121. DOI: 10.4162/nrp.2009.3.2.114.
- Martel, J., Ojcius, D. M., Ko, Y. F., and Young, J. D. (2020). Phytochemicals as prebiotics and biological stress inducers. Trends in Biochemical Sciences, 45(6): 462-471. DOI: 1016/j.tibs.2020.02.008.
- Mohammadi Gheisar, M., and Kim, I. H. (2018). Phytobiotics in poultry and swine nutrition–a review. Italian Journal of Animal Science, 17(1): 92-99. DOI: 1080/1828051X.2017.1350120.
- Mustafa, H. A. (2020). A comparative study of producing organic meat and eggs from commercial and local chicken in Kurdistan Region of Iraq. Ph.D. Thesis, University of Salahaddin-Erbil, Iraq.
- Muzolf-Panek, M., and Kaczmarek, A. (2021). Chemometric analysis of fatty acid composition of raw chicken, beef, and pork meat with plant extract addition during refrigerated storage. Molecules, 26(16): 4952. DOI: 3390/molecules26164952.
- Nisar, A. (2022). Medicinal plants and phenolic compounds. Phenolic Compounds: Chemistry, Synthesis, Diversity, Non-Conventional Industrial, Pharmaceutical and Therapeutic Applications, 131.
- Northcutt, J. K. (2009). Factors affecting poultry meat quality. Bulletin 1157. The University of Georgia, Cooperative Extension, College of Agriculture Science and Environmental Science and Family and Consumer Sciences. Cited by: Mogotlane, P. M., Ng’ambi, J. W., Nyazema, N. Z., and Chitura, T. (2023). Effect of feed supplementation with probiotics and antimicrobial agents on meat quality of broiler chickens. Agri Sci Digest. doi, 10: 1-6. DOI: 10.18805/ag.DF-492.
- National Research Council, and Subcommittee on Poultry Nutrition. (1994). Nutrient requirements of poultry: 1994. National Academies Press.
- Qu, H., and Ajuwon, K. M. (2018). Metabolomics of heat stress response in pig adipose tissue reveals alteration of phospholipid and fatty acid composition during heat stress. Journal of Animal Science, 96(8): 3184-3195. DOI: 10.1093/jas/sky127.
- (2018). Guidelines of Aviagen's Ross Broiler Pocket Guide 2018. https://aviagen.com/assets/Tech_Center/Ross_Broiler/Ross-BroilerHandbook2018-EN.pdf.
- Sabow, A.B., Haddad, H.S., and Nakyinsige, K. (2020). Carcass characteristics and meat quality assessment in different quail lines fed on canola seed supplemented diets. Indian Journal of Animal Sciences, 90(1): 67-73. DOI: 56093/ijans.v90i1.98938.
- Salami, S. A., Majoka, M. A., Saha, S., Garber, A., and Gabarrou, J. F. (2015). Efficacy of dietary antioxidants on broiler oxidative stress, performance and meat quality: science and market. Avian Biology Research, 8(2): 65-78. DOI: 3184/175815515X14291701859483.
- Sałek, P., Przybylski, W., Jaworska, D., Adamczak, L., Zielińska, D., and Głuchowski, A. (2020). The effects on the quality of poultry meat of supplementing feed with zinc-methionine complex. Acta Scientiarum Polonorum Technologia Alimentaria, 19(1): 73-82. DOI: 10.17306/J.AFS.0756.
- Sami, R., Li, Y., Qi, B., Wang, S., Zhang, Q., Han, F., ... and Jiang, L. (2014). HPLC analysis of water-soluble vitamins (B2, B3, B6, B12, and C) and fat-soluble vitamins (E, K, D, A, and β-carotene) of okra (Abelmoschus esculentus). Journal of chemistry, 2014. https://doi.org/10.1155/2014/831357.
- SAS, Institute. (2005). SAS User's Guide: Version 8.2 review ed. SAS Institute Inc, Cary, NC.
- Selim, N. A., Nada, S. A., Abdel-Salam, A. F., and Youssef, S. F. (2013). Evaluation of some natural antioxidant sources in broiler diets: 2-effect on chemical and microbiological quality of chilled and frozen broiler meat. International Journal of Poultry Science, 12(10): 572- 581. DOI: 3923/ijps.2013.572.581.
- Shakeri, M., Cottrell, J. J., Wilkinson, S., Le, H. H., Suleria, H. A., Warner, R. D., and Dunshea, F. R. (2019). Growth performance and characterization of meat quality of broiler chickens supplemented with betaine and antioxidants under cyclic heat stress. Antioxidants, 8(9): 336. DOI: 10.3390/antiox8090336.
- Sharafati-chaleshtori, R., Rafieian-kopaei, M., Mortezaei, S., Sharafati-chaleshtori, A., and Amini, E. (2012). Antioxidant and antibacterial activity of the extracts of Echinophora platyloba African Journal of Pharmacy and Pharmacology, 6(37): 2692-2695. DOI: 10.5897/AJPP12.931.
- Shirahigue, L. D., and Ceccato-Antonini, S. R. (2020). Agro-industrial wastes as sources of bioactive compounds for food and fermentation industries. Ciência Rural, 50(4): e20190857. DOI: 1590/0103-8478cr20190857.
- Turcu, R. P., Panaite, T. D., Untea, A. E., Șoica, C., Iuga, M., and Mironeasa, S. (2020). Effects of supplementing grape pomace to broilers fed polyunsaturated fatty acids enriched diets on meat quality. Animals (Basel), 10(6): 947. DOI: 10.3390/ani10060947.
- Valenzuela-Grijalva, N., Jiménez-Estrada, I., Mariscal-Tovar, S., López-García, K., Pinelli-Saavedra, A., Peña-Ramos, E. A., Muhlia-Almazán, A., Zamorano-García, L., Valenzuela-Melendres, M., and González-Ríos, H. (2021). Effects of ferulic acid supplementation on growth performance, carcass traits and histochemical characteristics of muscle fibers in finishing pigs. Animals (Basel), 11(8): 2455. DOI: 3390/ani11082455.
- Yesilbag, D., Eren, M., Agel, H., Kovanlikaya, A., and Balci, F. (2011). Effects of dietary rosemary, rosemary volatile oil and vitamin E on broiler performance, meat quality and serum SOD activity. British Poultry Science, 52(4): 472-482. DOI: 10.1080/00071668.2011.599026.
- Zhang, M., Dunshea, F. R., Warner, R. D., DiGiacomo, K., Osei-Amponsah, R., and Chauhan, S. S. (2020). Impacts of heat stress on meat quality and strategies for amelioration: A review. International Journal of Biometeorology, 64: 1613-1628. DOI: 10.1007/s00484-020-01929-6.
- Zhang, W., Xiao, S., Lee, E. J., and Ahn, D. U. (2011). Consumption of oxidized oil increases oxidative stress in broilers and affects the quality of breast meat. Journal of Agricultural and Food Chemistry, 59(3): 969-974. DOI: 10.1021/jf102918z.
- Zhao, J. S., Deng, W., and Liu, H. W. (2019). Effects of chlorogenic acid-enriched extract from Eucommia ulmoides leaf on performance, meat quality, oxidative stability, and fatty acid profile of meat in heat-stressed broilers. Poultry Science, 98(7): 3040-3049. DOI: 3382/ps/pez081.
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