CTCBIO Animal Bioscience Blog

References 본문

CTCZYME

References

CTCBIO 2021. 2. 4. 15:34

AzevedoM. L.C.B., T. Tewoldebrhan, R. Appuhamy, G. C. Reyes, K. J. Bolek, S. Seo, J. J. Lee, and E. Kebreab. 2016. Supplementation of β—mannanese(CTCZYME) tends to improve immune traits in early lactating dairy cows. J. Anim. Sci. 94:677. 

 

Bass, J. W., C. V. Maxwell, Z. B. Johnson, and J. H. Lee. 2009. Mannanase Addition to Nursery Pig Diets Improves Growth Performance. Animal Science Arkansas Animal Science. ResearchSeries 574: Arkansas Animal Science Department Report 2009. p.101-105. 

 

Cai H., P. Shi, H. Luo, Y. Bai, H. Huang, P. Yang, B. Yao. 2011. Acidic β-mannanase from Penicillium pinophilum C1: Cloning, characterization and assessment of its potential for animal feed ap plication. J. Biosci. Bioeng.112:551-557. 

 

Castillo,M., S.M.Martin-Orue, J.A.Taylor-Pickard, J. F.Perez, andJ.Gasa.2008.Use of mannano ligosaccharides and zinc chelate as growth promoters and diarrhea preventative in weaning pigs: effects on microbiota and gutfunction. J. Anim. Sci. 86:94-101. 

 

Chacher,M. F. A., Z. Kamran,U. Ahsan, S. Ahmad, K. C. Koutoulis,H.Q.U.Din, and ö. Cengiz. 2017. Use of mannanoligosaccharide in broiler diets: anoverviewofunderlyingmechanisms. Worlds Poult. Sci. J. 73:831-844. 

 

Chauhan, P. S.,N. Puri, P. Sharma, and N. Gupta. 2012.Mannanases: microbial sources, production, properties and potential biotechnological applications. Appl. Microbiol. Biot. 93:1817-1830. 

 

Chen, H., I. Park, S. Zhang, and S. W. Kim. 2015. Supplemental effects of ß-mannanase on growth performance, ileal nutrient digestibility, and gut health of nursery pigs. J. Anim. Sci. 93:226. 

 

Correa-Oliveira, R., J. L. Fachi, A. Vieira, F. T. Sato, and M. A. R. Vinolo. 2016. Regulation of immune cell function by short-chain fatty acids. Clin. Transl. Immunology 5:e73. 

 

Dierick,N. A., Enzymes in farm animal nutrition. CABI Publishing. 

 

Dimitroglou, A.,D. L.Merrifield, P. Spring, J. Sweetman, R.Moate, and S. J.Davies. 2010. Effects of mannanoligosaccharide(MOS) supplementation on growth performance, feedutilisation, in testinal histology and gut microbiota of gilthead sea bream (Sparus aurata). Aquaculture 300:182-188. 

 

Duncan, C. J. G., N. Pugh, D. S. Pasco, and S. A. Ross. 2002. Isolation of a galactomannan that en hances macrophage activation from the edible fungus Morchella esculenta. J. Agric. Food Chem. 50:5683-5685. 

 

Düsterhöft, E. M., M. A. Posthumus, and A. G. J. Voragen.1992.Non-starch polysaccharides from sunflower(Helianthus annuus) meal and palm-kernel (Elaeis guineensis) meal investigation ofthe structure of major polysaccharides. J. Sci. Food Agric. 59:151-160. 

 

Ferreira Jr,H.C.,M. I.Hannas, L. F.T.Albino,H. S.Rostagno,R.Neme,B.D. Faria,M. L.Xavier Jr, and ,

L.N. Renno. 2016. Effect of the addition of β-mannanase on the performance, metabolizable energy, amino acid digestibility coefficients, and immune functions of broilers fed different nutritional levels. Poult. Sci. 95:1848-1857. 

 

Frank, J. W., C. V.Maxwell, Z. B. Johnson, and J.H. Lee. 2009. Mannanase Addition toNursery Pig Diets Improves Growth Performance. Animal Science Arkansas Animal Science. Research Series 574: Arkansas Animal Science Department Report 2009. p.101-105. 

 

Hsiao, H.-Y., D. M. Anderson, and N. M. Dale. 2006. Levels of β-mannan in soybean meal. Poult. Sci. 85:1430-1432. 

Iji, P.A.,A.A. Saki, andD. R. Tivey. 2001.

 

Intestinal development and body growth of broiler chicks ondiets supplementedwithnon-starchpolysaccharides.Anim.FeedSci.Technol.89:175-188. 

 

Jackson, M. E., K. Geronian, A. Knox, J. McNab, and E. McCartney. 2004. A dose-response study with the feed enzyme beta-mannanase in broilers provided with corn-soybean meal based diets in the absence of antibiotic growth promoters. Poult. Sci. 83:1992-1996. 

 

Jang, K., K. Kim, S. Kim, J. Kim, B. Kim, S. Park, J. J. Lee, J. H. Lee, S. W. Kim, M. Song. 2017. Effects of dietary supplementation of β-mannanase on immune responses in nursery pigs. J. Anim. Sci. 95:32. 

 

Jeon, S. M. A. Hosseindoust, Y. H. Choi, M. J. Kim, K. Y. Kim, J. H. Lee, D. Y. Kil, B. G. Kim, and B. J. Chae. 2019. Comparative standardized ileal amino acid digestibility and metabolizable energy contents of main feed ingredients for growing pigs when adding dietary β-mannanase. Anim. Nutr. 5:359-365. 

 

Jeong S. Y., J. Lee, J. J. Lee, J. H. Lee, D. K. Kam, J. Seo, J. Kim, and S. Seo. 2013. Effects of bacteriophage (BacterPhage C) and β-mannanase (CTCZYME) supplementation on survival rate and growth performances of Holstein calves. (Abstr.). 

 

Jo, J. K., S. L. Ingale, J. S. Kim,Y. W. Kim, K.H. Kim, J.D. Lohakare, J.H. Lee, B. J. Chae. 2012. Effects of exogenous enzyme supplementation to corn-soybean meal based or complex diets on growth performance, nutrient digestibility, and blood metabolites in growing pigs. J. Anim. Sci. 90:3041-3048. 

 

Kebreab E., T. Tewoldebrhan, R. Appuhamy, M. Niu, S. Seo, S. Jeong, and J. J. Lee. 2016. Supple mentationofb-mannanase(CTCZYME) to lactating dairy cattle diets improves feed conversion efficiency and somatic cell count. J. Anim. Sci. 94:658-659. 

 

Kim, J. S., S. L. Ingale, A. R. Hosseindoust, S. H. Lee, J. H. Lee, B. J. Chae. 2013. Effects of energy levels of diet and ß-mannanase supplementation on growth performance, apparent total tract digestibility and blood metabolites in growing pigs. Anim. Feed Sci. Technol.186:64-70. 

 

Kim, J.S.,S.L.Ingale,A.R.Hosseindoust,S.H.Lee, J.H.Lee, andB. J.Chae.2017a. Effects of mannan level and β-mannanase supplementation on growth performance, apparent total tract di gestibility and blood metabolites of growing pigs. Animal11:202-208. 

 

Kim, M. C., J. H. Kim, F. M. Pitargue, D. Y. Koo, H. S. Choi, and D. Y. Kil. 2017b. Effect of dietary β mannanase on productive performance, egg quality, and utilization of dietary energy and nutrients in aged laying hens raised under hot climatic conditions. Asian-Australas. J. Anim. Sci. 30:1450-1455. 

 

Kim,H. J., S.O.Nam, J.H. Jeong, L.H. Fang,H. B. Yoo, S.H. Yoo, J. S.Hong, S. W. Son, S.H.Ha, and Y. Y.Kim. 2017c. Various levels of copra meal supplementationwith β-Mannanase on growth performance, blood profile, nutrient digestibility, pork quality and economical analysis in growing-finishing pigs. J. Anim. Sci. Technol. 59:19. 

 

Kim, J. S., A. Hosseindoust, I. K. Ju, X. Yang, S. H. Lee, H. S. Noh, J. H. Lee, and B. J. Chae. 2018. Effects of dietary energy levels and β-mannanase supplementation in a high mannan-based diet during lactation on reproductive performance, apparent total tract digestibility and milk composition in multiparous sows. Ital. J. Anim. Sci.17:128-134. 

 

Kong, C., J. H. Lee, and O. Adeola. 2011. Supplementation of β-mannanase to starter and grower diets for broilers. Can. J. Anim. Sci. 91:389-397. 

 

Kratzer, F. H., R. W. A. S. B. Rajaguru, and P. Vohra. 1967. The effect of polysaccharides on energy utilization, nitrogen retention and fat absorption in chickens. Poult. Sci. 46:1489-1493. 

 

Kwon, W. B., and B. G. Kim. 2015. Effects of Supplemental Beta-mannanase on Digestible Energy and Metabolizable Energy Contents of Copra Expellers and Palm Kernel Expellers Fed to Pigs. Asian-Australas. J. Anim. Sci. 28:1014-1019. 

 

Lee,B.B.,T. S.Yang,D.Goo,H. S.Choi, F.M.Pitargue,H. Jung, andD.Y.Kil. 2018.Effects ofdietary β-mannanase supplementation on the additivity of true metabolizable energy values for broiler diets. Asian-Australas. J. Anim. Sci. 31:564-568. 

 

LeeJ. J., J.Seo, J.K. Jung, J.Lee, J.H.Lee,andS.Seo.2014.Effectsofβ-mannanasesupplementation on growth performance, nutrient digestibility, and nitrogen utilization of Korean native goat (Capra hircus coreanae). Livest. Sci.169:83-87. 

 

Lee, J. T., S. Connor-Appleton, A. U. Haq, C. A. Bailey, and A. L. Cartwright. 2004. Quantitative measurement of negligible trypsin inhibitor activity and nutrient analysis of guar meal fractions. J. Agric. Food Chem. 52:6492-6495. 

 

Lee, J. Y., B. J. Chae, S. Y. Kim, J. H. Lee, J. H. Lee, S. Yoon, J. Choi, S. H. Lee, and S. J. Ohh. 2008. Effect of dietary DDGS and mannanase supplementation on the growth performances, nutrient sutilizability and immune response of broilers fed either high or low energy diet.In: Proceedings of1 2th AAAP Anim. Sci. Congress. (abstr.). 

 

Lee, J. Y., S. Y. Kim, J.H. Lee, J.H. Lee, and S. J.Ohh. 2013. Effect of dietary β-mannanase supple mentation and palm kernel meal inclusion on laying performance and egg quality in 73weeks old hens. J. Anim. Sci. Technol. 55:115-122. 

 

Lee S.,M. Lee, J. Kim, K. Ki,H. Kim,D. K. Kam, J.H. Lee, J. J. Lee,G. Bae, and S. Seo. 2010. Effect of β-Mannanase (CTCZYME) on the growth of young calf. Korean J. Agric. Sci. 37: 239-243. 

 

Mok, C. H., J. H. Lee, and B. G. Kim. 2012. Effects of Supplemental Phytase and β-Mannanase on Energy and Nutrient Digestibility in Diets Containing Palm Kernel Expeller Fed to Pigs. In proceeding of 15th AAAP Animal Science Congress: p. 3262-3267. 

 

Mok, C.H., J.H. Lee, and B. G. Kim. 2013. Effects of exogenous phytase and β-mannanase on ileal and total tract digestibility of energy and nutrientin palm kernel expeller-containing diets fed to growing pigs. Anim. Feed. Sci. Technol.186:209-213. 

 

Mussini, F., C. A. Coto, S. D. Goodgame, C. Lu, A. J. Karimi, J. H. Lee, and P. W. Waldroup. 2011a. Effect of ß-mannanase on broiler performance and Dry matter output using corn-soybean meal based diets. Int. J. Poult. Sci.10:778-781. 

 

Mussini, F. J., C. A. Coto, S. D. Goodgame, C. Lu, A. J. Karimi, J. H. Lee, and P. W. Waldroup. 2011b. Effectof a ß-Mannanase on nutrient digestibility in corn-soybean meal diets for broiler chicks. Int. J. Poult. Sci.10:774-777. 

 

Navarro, D. M. D. L., J. J. Abelilla, and H. H. Stein. 2019. Structures and characteristics of carbohy drates in diets fed to pigs: a review. J. Anim. Sci. Biotechno.10:39. 

 

Nunes, C. S., and K. Malmlöf. 1992. Effects of guar gum and cellulose on glucose absorption, hor monalrelease and hepatic metabolism in the pig. Br. J.Nutr. 68:693-700. 

 

Ofek, I., D. Mirelman, and N. Sharon. 1977. Adherence of Escherichia coli to human mucosal cells mediated by mannose receptors.Nature 265:623-625. 

 

Pettey, L.A., S.D. Carter, B. W. Senne, and J.A. Shriver. 2002. Effects of beta-mannanase addition to corn-soybean meal diets on growth performance, carcass traits, and nutrient digestibility of weanling and growing-finishing pigs. J. Anim. Sci. 80:1012-1019. 

 

Pond, W. G., D. B. Church, K. R. Pond, P. A. Schoknecht. 2005. Chapter 7. Carbohydrates. In: Basic Animal Nutrition and Feeding, fifth edition, John Wiley & Sons,New York. p. 78. 

 

RoqueB.M.,G.C.Reyes,T.A.Tewoldebrhan, J.A.D.R.N.Apphuamy, J.-J.Lee,S.Seo,andEKebreab. 2019. Exogenous β-mannanase supplementation improved immunological andmetabolic responses in lactating dairy cows. J. Dairy Sci.102:1-7. 

 

Ryu,M.H.,A.Hosseindoust, J. S. Kim, Y.H. Choi, S.H. Lee,M. J. Kim, J.H. Lee, and B. J. Chae. 2017. β-mannanase derived from Bacillus subtilis WL-7 improves the performance of commercial laying hens fed low or high mannan-based diets. J. Poult. Sci. 54:212-217. 

 

Seo J., J.Park, J. Lee, J.H. Lee, J. J. Lee,D.K.Kam, and S. Seo. 2016. Enhancement of daily gain and feed efficiency of growing heifers by dietary supplementation of β-mannanase in Hanwoo (Bos taurus coreanae). Livest. Sci.188:21-24. 

 

Sundu, B., A. Kumar, and J. Dingle. 2006. Response of broiler chicks fed increasing levels of copra meal and enzymes. Int. J. Poult. Sci 5:13-18. 

 

Upadhaya, S. D., J. W. Park, J. H. Lee, and I. H. Kim. 2016. Ileal digestibility of nutrients and amino acids in low quality soybean meal sources treated with β-mannanase for growing pigs. Animal. 10:1148-1154. 

 

White, L. A., M. C.Newman, G. L. Cromwell, and M.D. Lindemann. 2002. Brewers dried yeast as a source of mannan oligosaccharides for weanling pigs. J. Anim. Sci. 80:2619-2628. 

 

Yang,Y.,P.A.Iji,A.Kocher,L.L.Mikkelsen, andM.Choct.2008. Effects of dietary mannanoligosac charide on growth performance, nutrient digestibility and gut development of broilers given different cereal-based diets. J. Anim. Physiol. Anim.Nutr. 92:650-659. 

 

Yang,T. S.,M.C.Kim,F.Martinez-Pitargue,H. S.Choi, andD.Y.Kil.2019. Dietary β-mannanasede creases cloacal temperature of broiler chickens under hot conditions without affecting growth performance. Rev. Colomb. Cienc. Pec. 32:184-191. 

 

Yoon, S.Y.,Y.X.Yang,P. L. Shinde, J.Y.Choi, J. S.Kim,Y.W.Kim,K.Yun, J.K. Jo, J.H. Lee, S. J.Ohh, I. K. Kwon, and B. J. Chae. 2010. Effects of mannanase and distillers dried grain with solubles on growth performance, nutrient digestibility, and carcass characteristics of grower-finisher pigs. J. Anim. Sci. 88:181-191. 

 

Sundu, B., A. Kumar, and J. Dingle. 2006. Response of broiler chicks fed increasing levels of copra meal and enzymes. Int. J. Poult. Sci 5:13-18. 

 

White, L. A., M. C.Newman, G. L. Cromwell, and M.D. Lindemann. 2002. Brewers dried yeast as a source of mannan oligosaccharides for weanling pigs. J. Anim. Sci. 80:2619-2628. 

 

Zhang, L., and I. R. Tizard. 1996. Activation of a mouse macrophage cell line by acemannan: the major carbohydrate fraction from Aloe vera gel. Immunopharmacology 35:119-128. 

 

Comments