ASSESSMENT OF HISTO-PHYSIOLOGICAL AND BIOCHEMICAL CHANGES IN QUAILS (COTURNIX COTURNIX) SUPPLEMENTED BY ZINC AND PROTEXIN REARED UNDER HEAT STRESS

Main Article Content

Aysha Maqsood
Saira Parveen
Sadaf Gulzar
Maria Gulzar
Muhammad Usman Saleem
Sheraz Ahmed Bhatti
Abdul Asim Farooq
Muhammad Arshad Javid
Muhammad Abdul Basit
Murtaz ul Hasan
Muhammad Nawaz

Keywords

Heat stress, Zinc, growth, performance, biochemical analysiS, histo-physiology.

Abstract

 


Abstract


This study examined the effects of zinc and protexin supplementation on quails exposed to heat stress (HS). It was revealed that protexin and zinc positively influenced the metabolic parameters of heat-stressed quails, enhancing their overall health and immunity. A total number of one hundred thirty-five (n=135) quails were selected and equally divided into nine groups with each group having 3 replicates (n=5). These groups were designated as T0, T1, T2, T3, T4, T5, T6, T7 and T8 in which T0 was set as control receiving only basal diet. T1 and T2 groups were supplemented with 100mg/kg of zinc+protexin and 150mg/kg of zinc+protexin respectively, without HS. The groups T3, T4, T5 and T6 were exposed to HS and supplemented 100mg/kg zinc, 150mg/kg zinc, 100mg/kg zinc+protexin and 150mg/kg zinc+protexin respectively. While T7 was supplemented with protexin only and T8 was kept only under HS without any supplementation. Results revealed that the birds of HS group had a reduced spleen weight 33.33%, bursa of fabricius 1.56%, liver weight 3.51%, villus width of the jejunum 0.11%, villus length of the jejunum 0.44%, villus length of the ileum 0.35%, Aspartate Aminotransferase (AST) 4.12%, glucose 3.26%, total protein 2.44% and albumin 0.30% concentrations compared to control. Whereas, total cholesterol 1.95%, triglyceride 2.67%, Alanine Aminotransferase (ALT) 10.45%, goblet cell of duodenum 6.75%, goblet cell of jejunum 4.47%, goblet cell of ileum 8.78%, villus width of the duodenum 2.24%, villus length of the duodenum 0.18%, villus width of the ileum 0.22%, intestinal length 10.29% were increased in heat stressed birds as compared to control. Zinc and protexin supplementation reduced the negative effects of heat stress (HS) by increasing spleen weight, glucose, albumin and total protein AST concentrations. The ALT, intestinal length, triglyceride and cholesterol level came back to the normal level with supplementation of zinc and protexin. It was observed that zinc either alone or in combination with protexin mitigated the effects of heat stress on the histo-physiological and biochemical parameters of quails.

Abstract 102 | pdf Downloads 53

References

1. Abdulkadir, A., Reddy, D. 2023. A scoping review of the impact of heat stress on the organs of the Japanese quail (Coturnix japonica). JOBAZ, 84(1): 8.
2. Abou-Elkhair, R., Abdo Basha, H., Slouma Hamouda Abd El Naby, W., Ajarem, J. S., Maodaa, S. N., Allam, A. A., & Naiel, M. A.2020. Effect of a diet supplemented with the Moringa oleifera seed powder on the performance, egg quality, and gene expression in Japanese laying quail under heat-stress. Animals, 10(5): 809.
3. Ahmad, R., Yu, Y. H., Hsiao, F. S. H., Su, C. H., Liu, H. C., Tobin, I., ... & Cheng, Y. H. 2022. Influence of heat stress on poultry growth performance, intestinal inflammation, and immune function and potential mitigation by protexins. Animals, 12(17): 2297.
4. Ajakaiye JJ., Perez-Bello A., Mollineda-Trujillo A. 2010. Impact of vitamins C and E dietary supplementation on leukocyte profile of layer hens exposed to high ambient temperature and humidity. Acta Vet. Brno, 79: 377-383.
5. Akbarian, A., Michiels, J., Golian, A., Buyse, J., Wang, Y., & De Smet, S. 2014. Gene expression of heat shock protein 70 and antioxidant enzymes, oxidative status, and meat oxidative stability of cyclically heat-challenged finishing broilers fedOriganum compactum andCurcuma xanthorrhiza essential oils. Poult. Sci, 93(8): 1930-1941.
6. Alagawany, M., Elnesr, S. S., Farag, M. R., Tiwari, R., Yatoo, M. I., Karthik, K., ... & Dhama, K. 2021. Nutritional significance of amino acids, vitamins and minerals as nutraceuticals in poultry production and health–a comprehensive review. Vet. Q, 41(1): 1-29.
7. Alagawany, M., Lestingi, A., Abdelzaher, H. A., Elnesr, S. S., Madkour, M., El-Baz, F. K., ... & Abd El Hack, M. E. 2024. Dietary supplementation with Dunaliella salina microalga promotes quail growth by altering lipid profile and immunity. Poult. Sci, 103591.
8. Batool, F., Bilal, R. M., Hassan, F. U., Nasir, T. A., Rafeeque, M., Elnesr, S. S., ... & Alagawany, M. 2023. An updated review on behavior of domestic quail with reference to the negative effect of heat stress. Anim. Biotechnol, 34(2): 424-437.
9. Bobek S., Niezgoda J., Pietras M., Kacińska M., Ewy Z 1980. The effect of acute cold and warm ambient temperatures on the thyroid hormone concentration in blood plasma, blood supply, and oxygen consumption in Japanese quail. Gen. Comp. http://www.ncbi.nlm.nih. gov/pubmed/7364210 PMID: 7364210 53(40): 201–210.
10. Cakir, S., Midilli, M., Erol, H., Simsek, N., Cinar, M., Altintas, A., ... & Antalyali, A. 2008. Use of combined protexin-prebiotic, organic acid and avilamycin in diets of Japanese quails. Rev. Med. Vet, 11, 565-569.
11. Ciftc¸i M., Ertas ON., Gu¨ler T 2005. Effects of vitamin E and vitamin C dietary sup- plementation on egg production and egg quality. Rev Med Vet (Toulouse), 156: 107–111.
12. Cruvinel, J. M., Urayama, P. M. G., Dos Santos, T. S., Denadai, J. C., Muro, E. M., Dornelas, L. C., ... & Pezzato, A. C 2021. Different dietary electrolyte balance values on performance, egg, and bone quality of Japanese quail (Coturnix Coturnix Japonica) under heat stress. Trop. Anim. Sci. J.
13. El-Damrawy, S. Z., Khalifah, M. M., & Fares, W. A. 2013. Dietary olive leaf and antioxidative status in chickens “performance, some physiological traits and immunological responses of Mandarah chicks supplemented olive leaves powder in their diets EPSJ, 33(1): 279-287.
14. Hajati, H., Zaghari, M., & Oliveira, H. C. 2020. Arthrospira (Spirulina) Platensis can be considered as a protexin alternative to reduce heat stress in laying Japanese quails. Braz. J. Poultry Sci, 22.
15. Hazrati, S., Rezaeipour, V., & Asadzadeh, S. 2020. Effects of phytogenic feed additives, protexin and mannan-oligosaccharides on performance, blood metabolites, meat quality, intestinal morphology, and microbial population of Japanese quail. Br. Poult. Sci, 61(2): 132-139.
16. Hosseini-Mansoub, N., Chekani-Azar, S., Tehrani, A., Lotfi, A., & Manesh, M. 2010. Influence of dietary vitamin E and zinc on performance, oxidative stability and some blood measures of broiler chickens reared under heat stress (35 C). J. Agrobiol, 27(2): 103.
17. Kinyua, M. 2022. Factors influencing Quail Farming A critical literature review. J. Anim, 3(1): 38-53.
18. LEIPER K., CAMPBELL B.J., JENKINSON M.D., MILTON J., YU L., DEMOCRATIS J., RHODES J.M 2001. Interaction between bacterial peptides, neutrophils and goblet cells a possible mechanism for neutrophil recruitment and goblet cell depletion in colitis. Clin.Sci, 101, 395-402.
19. Nawaz, A., H., Amoah, K., Leng, Q. Y., Zheng, J. H., Zhang, W. L., & Zhang, L. 2021. Poultry response to heat stress and Its physiological, metabolic, and genetic implications on meat production and quality including strategies to improve broiler production in a warming world. Front. vet. sci, 8, 699081.
20. Ofori, M. 2020. Growth, reproductive performance, egg quality and blood profile of quails (coturnix coturnix japonica) fed diets containing graded levels of moringa oleifera leaf meal (Doctoral dissertation, University of Education Winneba).
21. Ojediran, T., Ganiyu, B., Muhammed, A., & Emiola, A. 2022. Egg production, economic indices, and external and internal egg quality parameters of laying Japanese quails (Coturnix japonica) fed palm (Elaeis guineensis) kernel cake. Anim. Genet, 18(2).
22. Patra K., Puspamitra S., Das A., Mallik B. K., Mohanty P. K. 2019. Serum biochemical profiling in different varieties of Japanese quail, Coturnix coturnix japonica (Temminck and Schlegel, 1849). Comp. Clin. Path., 28, 1599-1607.
23. Qin, Q., Ma, B., Li, Z., Wu, H., Zhu, J., Li, X., Yi, X. 2024. Effects of Heat Stress on Production Indices, Antioxidant Function, Heat Shock Protein and Intestinal Microflora in Quails. Braz. J. Poultry Sci, 25, eRBCA-2023.
24. Reda, F. M., El-Saadony, M. T., El-Rayes, T. K., Attia, A. I., El-Sayed, S. A., Ahmed, S. Y., Alagawany, M. 2021. Use of biological nano zinc as a feed additive in quail nutrition: biosynthesis, antimicrobial activity and its effect on growth, feed utilisation, blood metabolites and intestinal microbiota. Ital. J. Anim. Sci, 20(1): 324-335.
25. Sahin K., Kucuk O. 2001. Effects of vitamin E and selenium on performance, digestibility of nutrients and carcass characteristics of Japanese quails reared under heat stress (340C). J Anim. Physiol. Anim. Nutr., 85 (11-12): 342-348.
26. Sahin, T., Kaya, I., Unal, Y., Elmali, D. A., 2008. Dietary supplementation of protexin and prebiotic combination (Combiotics) on performance, carcass quality and blood parameters in growing quails. J. Vet. Adv, 7(11): 1370-1373.
27. Saleem M. U., Masood S., Zaneb H., Durrani A. Z., Aslam A., Ashraf K., Shaheen M. S. 2018. Histophysiological Changes in Broilers Fed on Diet Supplemented with Mannanoligosaccharide and Organic Acid Blend. Pak. J. Zool., 50(2). 473-480.
28. Sandikci M., Eren U., Onol AG., Kum S, 2004. The effect of heat stress and the use of Saccharomyces cerevisiae and bacitracin zinc against heat stress on the intestinal mucosa in quails. Rev Med Vet ,11, 552–556.
29. Santana, T. P., Gasparino, E., de Souza Khatlab, A., Brito, C. O., Barbosa, L. T., Lamont, S. J., Del Vesco, A. P, 2021. Effect of prenatal ambient temperature on the performance physiological parameters, and oxidative metabolism of Japanese quail (Coturnix coturnix japonica) layers exposed to heat stress during growth. Scientific Reports, 11(1): 9809.
30. Sarıca, S., Aydın, H., Ciftci, G. 2017. Effects of Dietary Supplementation of Some Antioxidants on Liver Antioxidant Status and Plasma Biochemistry Parameters of Heat-Stressed Quail. Turkish JAF Sci. Tech,5(7): 773–779. https://doi.org/10.24925/turjaf.v5i7.773-779.1182
31. SHAMOTO K., YAMAUCHI K, 2000. Recovery responses of chick intestinal villus morphology to different refeeding procedures. Poult. Sci., 79, 718-723.
32. Tawfeek SS., Hosseinia KMA., Youssef IMI. 2014. The effect of dietary supplementation of some antioxidants on performance, oxidative stress and blood parameters in broilers under natural summer conditions. J World’s Poult. Res., 4(1): 10-19.
33. Truong, L., Miller, M. R., Sainz, R. D., & King, A. J. 2023. Changes in Japanese quail (Coturnix coturnix japonica blood gases and electrolytes in response to multigenerational heat stress. PLOS Climate, 2(4): 0-144.
34. Yardibi H., Oztabak K., Turkay G. 2009. The metabolic effect of vitamin E supplementation to the diets of laying hens. J Anim. Vet. Adv., 8 (5): 912-916.

Most read articles by the same author(s)