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동충하초 첨가 사료가 달걀의 품질 및 조성에 미치는 영향

Quality and composition of eggs laid by hens fed with Cordyceps militaris-supplemented feed

  • Ayman, Turk (College of Pharmacy, Chungbuk National University) ;
  • Min Hee, Kim (College of Pharmacy, Chungbuk National University) ;
  • So Yeong, Jeong (College of Pharmacy, Chungbuk National University) ;
  • Beom Seok, Kim (College of Pharmacy, Chungbuk National University) ;
  • Sung-I, Woo (Wando Agricultural Technology Center) ;
  • Won Ho, Lee (Forest Mushroom Research Institute) ;
  • Mi Kyeong, Lee (College of Pharmacy, Chungbuk National University)
  • 투고 : 2022.11.08
  • 심사 : 2022.12.21
  • 발행 : 2022.12.31

초록

Owing to its excellent nutritional value, eggs are among the most important components of the human diet. Gender and environmental factors, such as feed composition, may alter the nutritional profile and quality of eggs. Feed additives have recently been used to enhance the health and productivity of hens, which has resulted in the production of higher-quality eggs. The fungus Cordyceps militaris, a well-established source of traditional medicines, contains potential bioactive metabolites, which prompted us to examine the effects of C. militaris-supplemented diets on the quality of hens' eggs. The hens of two species (Gallus gallus domesticus and Araucana) were fed with one of three different diets: a control diet and diets supplemented with 2% or 5% of C. militaris. Egg quality was determined by measuring the Haugh Unit, yolk color, and shell thickness. In addition, egg and shell densities together with the ratio of yolk to albumen were calculated. Eggshell thickness and yolk color were both enhanced by the addition of C. militaris, whereas Haugh Unit values were somewhat reduced. Egg size, eggshell weight, and yolk and albumen production were all enhanced by C. militaris supplementation. Notably, in hens fed the 2% C. militaris-supplemented diet, enhancement was more evident in the yolk than in the albumen. The overall quality of the egg yolk was enhanced when 2% C. militaris was added to the hens' diet, which led to increases in both yolk color and quantity. Eggshell thickness and weight were also higher among eggs laid by hens fed the supplemented diets. Although these effects differed depending on the chicken species, we established that, in general, C. militaris contributes to improving egg quality.

키워드

과제정보

본 연구는 산림청(한국임업진흥원) 산림과학기술 연구개발사업'(FTIS 2022448A00-2222-0101)'의 지원에 의하여 진행됨.

참고문헌

  1. Amevor FK, Cui Z, Ning Z, Du X, Jin N, Shu G, Deng X, Zhu Q, Tian Y, Li D, Wang Y, Zhang Z, Zhao X. 2021. Synergistic effects of quercetin and vitamin E on egg production, egg quality, and immunity in aging breeder hens. Poult Sci 100:101481.
  2. Dahmani J, Nicklaus S, Grenier JM, Marty L. 2022. Nutritional quality and greenhouse gas emissions of vegetarian and nonvegetarian primary school meals: A case study in Dijon, France. Front Nutr 9:997144.
  3. Das SK, Masuda M, Sakurai A, Sakakibara M. 2010. Medicinal uses of the mushroom Cordyceps militaris: Current state and prospects. Fitoterapia 81:961-968. https://doi.org/10.1016/j.fitote.2010.07.010
  4. Das G, Shin HS, Leyva-Gomez G, Prado-Audelo MLD, Cortes H, Singh YD, Panda MK, Mishra AP, Nigam M, Saklani S, Chaturi PK, Martorell M, Cruz-Martins N, Sharma V, Garg N, Sharma R, Patra JK. 2021. Cordyceps spp.: A review on its immune-stimulatory and other biological potentials. Front Pharmacol 11:602364.
  5. Entezari A, Roshanak S, Shakeri G, Sedaghat N. 2022. Effect of zein and zein-Peganum harmala extract coatings of eggshell on the internal quality of eggs and control of Salmonella enteritidis. J Food Sci 87:4665-4673. https://doi.org/10.1111/1750-3841.16306
  6. Kim SB, Hwang BY, Lee MK. 2013. Diketopiperazines from Cordyceps militaris. Kor J Pharmacog 44:336-343.
  7. Kim SB, Ahn B, Kim M, Ji HJ, Shin SK, Hong IP, Kim CY, Hwang BY, Lee MK. 2014. Effect of Cordyceps militaris extract and active constituents on metabolic parameters of obesity induced by high-fat diet in C58BL/6J mice. J Ethnopharmacol 151:478-484. https://doi.org/10.1016/j.jep.2013.10.064
  8. Leung PH, Zhao S, Ho KP, Wu JY. 2009. Chemical properties and antioxidant activity of exopolysaccharides from mycelial culture of Cordyceps sinensis fungus Cs-HK1. Food Chem 114:1251-1256. https://doi.org/10.1016/j.foodchem.2008.10.081
  9. Loria-Kohen V, Gonzalez-Rodriguez LG, Bermejo LM, Aparicio A, Lopez-Sobaler AM. 2022. Recommended egg intake in children: past, present, and future. Nutr Hosp 39:44-51.
  10. Miao M, Yu WQ, Li Y, Sun YL, Guo SD. 2022. Structural elucidation and activities of Cordyceps militaris-derived polysaccharides: A review. Front Nutr 9:898674.
  11. Quy TN, Xuan TD. 2019. Xanthine oxidase inhibitory potential, antioxidant and antibacterial activities of Cordyceps militaris (L.) Link fruiting body. Medicines (Basel) 6:20.
  12. Ruxton C, Derbyshire E, Gibson SA. 2010. The nutritional properties and health benefits of eggs. Nutr Food Sci 40:263-279. https://doi.org/10.1108/00346651011032963
  13. Silversides FG, Twizeyimana F, Villeneuve P. 1993. Research note: a study relating to the validity of the haugh unit correction for egg weight in fresh eggs. Poult Sci 72:760-764. https://doi.org/10.3382/ps.0720760
  14. Tang SG, Sieo CC, Kalavathy R, Saad WZ, Yong ST, Wong HK, Ho YW. 2015. Chemical compositions of egg yolks and egg quality of laying hens fed prebiotic, probiotic, and synbiotic diets. J Food Sci 80:C1686-C1695. https://doi.org/10.1111/1750-3841.12947
  15. Turk A, Kim BS, Ko SM, Yeon SW, Ryu SH, Kim YG, Hwang BY, Lee MK. 2021. Optimization of cultivation and extraction conditions of Pupae-Cordyceps for cordycepin production. Nat Prod Sci 27:187-192. https://doi.org/10.20307/nps.2021.27.3.187
  16. Turk A, Abdelhamid MAA, Yeon SW, Ryu SH, Lee S, Ko SM, Kim BS, Pack SP, Hwang BY, Lee MK. 2022. Cordyceps mushroom with increased cordycepin content by the cultivation on edible insects. Front Microbiol 13:1017576.
  17. Wang X, Wu S, Zhang H, Yue H, Qi G, Li J. 2015. Effect of dietary protein sources and storage temperatures on egg internal quality of stored shell eggs. Anim Nutr 1:299-304. https://doi.org/10.1016/j.aninu.2015.12.003
  18. Wei F, Yang X, Zhang M, Xu C, Hu Y, Liu D. 2022. Akkermansia muciniphila enhances egg quality and the lipid profile of egg yolk by improving lipid metabolism. Front Microbiol 13:927245.
  19. Yuceer M, Caner C. 2014. Antimicrobial lysozyme-chitosan coatings affect functional properties and shelf life of chicken eggs during storage. J Sci Food Agric 94:153-162. https://doi.org/10.1002/jsfa.6322
  20. Zhang T, Bai S, Ding X, Zeng Q, Zhang K, Lv L, Li J, Peng H, Xuan Y, Wang J. 2022. Dietary theabrownin supplementation improves production performance and egg quality by promoting intestinal health and antioxidant capacity in laying hens. Animals (Basel) 12:2856.
  21. Zhang J, Wen C, Duan Y, Zhang H, Ma H. 2019. Advance in Cordyceps militaris (Linn) Link polysaccharides: Isolation, structure, and bioactivities: A review. Int J Biol Macromol 132:906-914. https://doi.org/10.1016/j.ijbiomac.2019.04.020