test Seasonal Variations and Dietary Protein-Energy Levels: Effects on Laying Quails under Subtropical Conditions|Journal of the Hellenic Veterinary Medical Society

Seasonal Variations and Dietary Protein-Energy Levels: Effects on Laying Quails under Subtropical Conditions


Опубликован: Nov 7, 2025
EA Ashour
AK Aldhalmi
IM Youssef
AI Elsherbeni
YA Attia
F Bovera
NF Addeo
RA Alhotan
ME Abd El-Hack
Аннотация

Optimizing the diet of laying Japanese quail (Coturnix japonica) is essential to enhance their productivity. The experiment evaluated the efficiency, digestive parameters, and nutrient composition of laying Japanese quail during warm and cold months under subtropical conditions, in relation to the amounts of crude protein (CP) and metabolizable energy (ME). A randomized experimental design was used, involving 360 laying Japanese quail assigned to nine treatment groups, each with five replications of eight hens each across two independent experiments conducted during cold and warm seasons. Variations in protein and energy concentrations significantly impacted multiple production performance metrics, such as egg mass (EM), cost-effectiveness and feed conversion ratio (FCR). Quails showed the highest FCR and EM measurements when fed a diet with 2900 kcal/kg and 22% CP during the cold season, and 3000 kcal/kg with 20% CP during the warm season. Protein and energy levels significantly impacted egg quality and digestion ratios of dry matter (DM) and ether extract (EE). For optimal growth and overall health, Japanese quail should be fed a summer diet containing approximately 20% crude protein and 3000 kcal ME/kg. Adjusting the protein and energy content in the feed can enhance the performance and nutrient efficiency of laying Japanese quail, particularly in seasonal conditions, thereby informing feeding strategies for better production outcomes.

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Библиографические ссылки
Abou-Raya AK, Galal AG (1971) Evaluation of poultry feeds in digestion
trials with reference to some factors involved. Egypt J Anim
Agboola AF, Omidiwura BRO, Ologbosere DY, Iyayi EA (2016) Determination
of crude protein and metabolisable energy of Japanese
quail (Coturnix coturnix japonica) during laying period. J World
Poult Res 6:131-138.
Alagawany M, Farag MR, Abd El-Hack ME, Patra A (2017) Heat
stress: effects on productive and reproductive performance of
quail. World’s Poult Sci J 73:747-756. https://doi.org/10.1017/
S0043933917000782
AOAC. Official Methods of Analysis Association (2006) 18th ed. Association
of Official Analytical Chemists, Washington, DC.
Arulnathan V, Turner I, Bamber N, Ferdous J, Grassauer F, Doyon M,
Pelletier N (2024) A systematic review of potential productivity, egg
quality, and animal welfare implications of extended lay cycles in
commercial laying hens in Canada. J Poult Sci 103:103475. https://
doi.org/10.1016/j.psj.2024.103475
Ashour EA, Kamal M, Altaie HA, Swelum AA, Suliman GM, Tellez-
Isaias G, Abd El-Hack ME (2024) Effect of different energy,
protein levels and their interaction on productive performance, egg
quality, digestibility coefficient of laying Japanese quails. J Poult
Baião NC, Lara LJC (2005) Oil and fat in broiler nutrition. Braz J Poult
Barszcz M, Tuśnio A, Taciak M (2024) Poultry nutrition. Phys Sci Rev
Da Silva Fonseca T, Ton APS, Corassa A, Sbardella M, Rodrigues CP,
de Andrade EA, do Amaral AG, Domiciano IR, de Oliveira Grieser
D (2021) Metabolizable energy and digestible lysine for Japanese
quails reared in a hot climate. Livest Sci 245:104427. https://doi.
org/10.1016/j.livsci.2021.104427
Dänicke S, Halle I, Jeroch H, Böttcher W, Ahrens P, Zachmann R,
Götze S (2000) Effect of soy oil supplementation and protein
level in laying hen diets on praecaecal nutrient digestibility,
performance, reproductive performance, fatty acid composition
of yolk fat, and on other egg quality parameters. Eur J Lipid
Sci Technol 102:218-232. https://doi.org/10.1002/(sici)1438-
(200003)102:3%3C218::aid-ejlt218%3E3.3.co;2-6
Day L, Cakebread JA, Loveday SM (2022) Food proteins from animals
and plants: Differences in the nutritional and functional properties.
Trends Food Sci Technol 119:428-442. https://doi.org/10.1016/j.
tifs.2021.12.020
Duncan DB (1955) Multiple range and multiple F-test, Biometrics 11:1-
El-Hindawy MM, Alagawany M, Mohamed LA, Soomro J, Ayasan T
(2021) Influence of dietary protein levels and some cold pressed
oil supplementations on productive and reproductive performance
and egg quality of laying Japanese quail. J Hellenic Vet Med Soc
El-Kelawy M, Refaie MS (2024) Effect of Olive Pomace and Enzymes
on Productive Performance, Nutrients Digestibility and Some Blood
Parameters in Japanese Quail. Egypt J Nutr Feed 27:107-118.
El-Sabry MI, Zaki MM, Elgohary FA, Helal MM (2021) Sustainable
rabbit production under the global warming conditions in Southern
Mediterranean region. Worlds J Vet Sci 11:543-548. https://doi.
org/10.54203/scil.2021.wvj69
Gao Z, Zhang J, Li F, Zheng J, Xu G (2021) Effect of oils in feed on the
production performance and egg quality of laying hens. Animals
Gomaa AA, Rashwan AA, Tewfik MI, Abou-Kassem DE, Youssef IM,
Salah AS, Alfassam HE, Rudayni HA, Allam AA, Taha AE, Moustafa
M, Alshaharni MO, Abd El-Hack ME, El-Mekkawy MM (2024)
Effects of immersing Japanese quail eggs in various doses of riboflavin
on reproductive, growth performance traits, blood indices
and economics. J Poult Sci 103:103858. https://doi.org/10.1016/j.
psj.2024.103858
Gunawardana P, Roland Sr DA, Bryant MM (2008) Effect of energy and
protein on performance, egg components, egg solids, egg quality,
and profits in molted Hy-Line W-36 hens. J Appl Poult Res 17:432-
Hijab ON, Albaddy MA (2022) Effect of using different energy and
protein contain in diet on some production performance characters
of local brown quail breed. Tikrit J Agric Sci 22:105-111. https://
doi.org/10.25130/tjas.22.1.10
Jesuyon OMA, Aganga AA, Orunmuyi M, Falade GT (2021) Effect
of dietary protein level on egg production and egg-quality charstress acteristics of Japanese quail (Coturnix coturnix japonica) in the
tropical environment. Anim Prod Sci 62:1430-1438. https://doi.
org/10.1071/an20399
Korver DR (2023) Current challenges in poultry nutrition, health,
and welfare. Animal 17:100755. https://doi.org/10.1016/j.animal.
100755
Lansford R, Cheng KM (2024) The Japanese quail. The UFAW Handbook
on the Care and Management of Laboratory and Other Research.
ch41
Mangan M, Siwek M (2024) Strategies to combat heat stress in poultry
production—A review. J Anim Physiol Anim Nutr 108:576-595.
Mashaly MM, Hendricks GL, Kalama MA (2004) Effect of heat stress on
production parameters and immune responses of commercial laying
hens. J Poult Sci 83: 889-894. https://doi.org/10.1093/ps/83.6.889
Mottet A, Assouma MH (2024) The feed balances sheet: a tool for planning
the use of resources and enhancing resilience in tropical grazing
livestock. Front Anim Sci 5:1354728. https://doi.org/10.3389/
fanim.2024.1354728
NRC. Nutrient Requirements of Poultry (1994) 9th Rev. National Academy
Press, Washington, DC., USA. https://doi.org/10.17226/2114
Pinto R, Ferreira AS, Albino LFT, Gomes PC, Vargas Júnior JGD
(2002) Protein and energy levels for laying Japanese quails.
Rev Bras Zootec 31:1761-1770. https://doi.org/10.1590/S1516-
Rao SV, Paul SS, Raju MVLN, Nagalakshmi D, Prakash B, Phani P
(2024) Requirements of metabolisable energy, crude protein and methionine
for growing white leghorn chicken under tropical condition.
Anim Nutr Feed Technol 24:1-13. https://doi.org/10.5958/0974-
x.2024.00001.5
Ratriyanto A, Indreswari R, Nuhriawangsa AMP, Arifin AA (2017) Dietary
metabolizable energy and methionine affect performance of
quails. In Proceeding of the 1st International Conference on Tropical
Agriculture (pp. 329-335). Springer International Publishing.
Renaudeau D, Collin A, Yahav S, De Basilio V, Gourdine JL, Collier
RJ (2012) Adaptation to hot climate and strategies to alleviate
heat stress in livestock production. Animal 6:707-728. https://doi.
org/10.1017/S1751731111002448
Ribeiro AG, Silva RdS, Silva DAd, Nascimento JCdS, Souza LFAd,
Silva EGd, Ribeiro JES, Campos DB, Alves CVB, Saraiva EP, Costa
FGP, Guerra RR. (2024). Heat stress in Japanese quail (Coturnix japonica):
benefits of phytase supplementation. Animals 14(24):3599.
Salih JH, Mohammed DA, Hussen SH (2021) Impact of protein source
and its levels on egg production and egg quality of Japanese quail
(Coturnix coturnix japonica). Sci J Univ Zaho 9:138-143. https://
doi.org/10.25271/sjuoz.2021.9.3.829
Saliu LA, Abdulrazaq SA, Eleke PN (2016) Production efficiency of
poultry egg (layer) production in Chikun and Igabi local government
areas of Kaduna State, Nigeria. Niger J Agric Econ 6: 40-52. http://
dx.doi.org/10.22004/ag.econ.267989
Santana TP, Gasparino E, de Souza Khatlab A, Brito CO, Barbosa LT,
Lamont SJ, Del Vesco AP (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. Sci Rep 11:9809. https://doi.
org/10.1038/s41598-021-89306-0
Singh AK, Kim WK (2021) Effects of dietary fiber on nutrients utilization
and gut health of poultry: a review of challenges and opportunities.
SPSS (2019) Statistics for Windows, Version 26.0. SPSS Inc., USA.
Titus HW, Fritz JC (1971) The scientific feeding of chickens. The scientific
feeding of chickens. (Ed. 5).
Vakili R, Ebrahimnezhad Y. (2023). Impact of dietary supplementation
of unsaturated and saturated fatty acids on bone strength, fatty acids
profile of thigh muscle and immune responses in broiler chickens
under heat stress. Vet Med Sci 9:252–262. https://doi.org/10.1002/
vms3.1035
Varis Md. (2024). A study on the impact of global warming on
wildlife. SJVPA, 5(4). https://doi.org/10.29121/shodhkosh.
v5.i4.2024.2840
Videla EA, Giayetto O, Fernández ME, Chacana PA, Marin RH Nazar
FN (2020) Immediate and transgenerational effects of thymol
supplementation, inactivated Salmonella and chronic heat stress
on representative immune variables of Japanese quail. Sci Rep
Youssef IM, Aldhalmi AK, Felemban SG, Elsherbeni AI, Khalil HA,
Hassan MS, Abd El Halim HS, Abd El-Hack ME, Youssef KM,
Swelum AA, Tufarelli V, Abo-Samra MA (2024) Mannan Oligosaccharides
as a Prebiotic for Laying Hens: Effects on Fertility,
Hatchability, Productive Performance, and Immunity. Trans Anim
Youssef IM, Khalil HA, Swelum AA, Al Garadi MA, Balasubramanian
B, Hassan MS, Abd El Halim HS, Abd El-Hack ME, Youssef KM,
Abo-Samra MA (2023) Influence of dietary chitosan. Oligosaccharides
supplementation on productive and reproductive performance
of laying hens. Ann Anim Sci 24:491-20 https://doi.org/10.2478/
aoas-2023-0082
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