박사

항염 효과 식물 추출물과 은행잎 추출물 첨가 수준이 in vitro 반추위 발효성상, 미생물 성장 및 메탄 생성에 미치는 영향

손창준 2016년
논문상세정보
' 항염 효과 식물 추출물과 은행잎 추출물 첨가 수준이 in vitro 반추위 발효성상, 미생물 성장 및 메탄 생성에 미치는 영향' 의 주제별 논문영향력
논문영향력 선정 방법
논문영향력 요약
주제
  • Dry matter digestibility
  • Plant extracts
  • Rumen microbial population
  • Total gas production
  • methane emission
동일주제 총논문수 논문피인용 총횟수 주제별 논문영향력의 평균
61 0

0.0%

' 항염 효과 식물 추출물과 은행잎 추출물 첨가 수준이 in vitro 반추위 발효성상, 미생물 성장 및 메탄 생성에 미치는 영향' 의 참고문헌

  • 은행나무(Gingko biloba L.)잎 추출물의 일부 식중독균에 대한 항 균효과. 석사논문
    성기옥 성신여자대학교 [2005]
  • 메탄 배출원과 배출량 감축 기술에 대한 고찰
    한영지 한국공업화학회. 12: 14-20 [2009]
  • rskov, E. R. and Frasr, C. 1975. The effects of processing of barley-based supplements on rumen pH, rate of digestion and boluntary intake of dried grass in sheep. BR. J. Butr. 34: 493-500.
  • Yook, C. S. 1990 Coloured medicinal Plants of Korea, Academy Book Co., Seoul. korea. pp. 576.
  • Wilson, J. R., and Kennedy, P. M. 1996. Plant and animal constraints to voluntary feed intake associated with fibre characteristics and particle breakdown and passage in ruminants. Crop and Pasture Science, 47: 199-225.
  • Whitman, W. B., Bowen, T. L. and Boone, D. R. 1992. The methanogenic bacteria. In The Prokaryotes, 2nd ed A handbook on the biology of bacteria. Springer-Verlag, New Yokr, USA. pp. 719-767.
  • Wenk, C. 2003. Herb and botanicals as feed additives in monogastric animals. Asian-Aust. J. Anim. Sci. 16: 282-289.
  • Wenk, C. 2003. Herb and botanicals as feed additives in monogastric animails. Asian-Aust. J. Anim. Sci. 16: 282-289.
  • Wallace, R. J., McEwan, N. R., McIntosh, F. M., Teferedegne, B., and Newbold, C. J. 2002. Natural products as manipulators of rumen fermentation. Asian-Aust. j. Anim. Sci. 15: 1371-1522.
  • Wallace, J. R., McEwan, N. R., McIntosh, F. M., Trferedegne, B. and Newbold, C. J. 2002. Natural products as manipulators of rumen fermentation. Asian-Aust. J. Anim. Sci. 15: 1371-1522.
  • Vogels, G. D., Hoppe, W. F. and Stumm, C. K. 1980. Association of methanogenic bacteria with rumen ciliates. Appl. Environ. Microbiol. 40: 608-612.
  • Tyler S. C. 1991. The global methane budget. In Microbial Production and Consumption of Greenhouse Gases: Methane, Nitrogen Oxides, and Halomethane(J. E. Rogers and W. B. Whitman, eds). 7-38. Amer. Soc. Microbiol., Washington, DC.
  • Theodorou, M. K., Williams, B. A., Dhanoa, M. S., McAllan, A. B., and France, J. 1994. A simple gas production method using a pressure trasducer to determine the fermentation kinetics of ruminant feeds. Anim. Feed Sci. Technol. 48: 185-197.
  • Theodorou, M. K., Williams, B. A. Dhanoa, M. S. McAllan, A. B. and France, J. 1994. A simple gas production method using a pressure transducer to determine the fermentation kinetics of ruminant feeds. Anim. Feed Sci. Technol. 48: 185-197.
  • Theodorou, M. K., Lowman, R. S., Davies, Z. S., Cuddeford, D., and Owen, E. 1998. Principles of techniques that rely on gas measurement in ruminant nutrition. In: In vitro techniques for measuring nutrient supply to ruminants. British Society of Animal Science Occassional Publication
  • Tedesco, D., Tava, A., Galletti, S., Tameni, M., Varisco, G., Costa, A. and Steidler, S. 2004. Effects of silymarin, a natural hepatoprotector, in periparturient dairy cows. J. Dairy. Sci. 87: 2239-2247.
  • Tamminga, S. 2006. The effect of the supply of rumen degradable protein and metabolisable protein on negative energy balance and fertility in dairy cows. Animal reproduction science, 96: 227-239.
  • Stumm, C. K., Gijzen, H. J. and Vogels, G. D. 1982. Association of methanogenic bacteria with ovine rumen ciliates. Br. J. Nutr. 47: 95-99.
  • Stewart, C. S. 1997. Factors affecting the celluloytic activitiy of rumen contents. Appl. Environ. Microbiol. 33: 497-502.
  • Smith, P., Martino, D., Cai, Z., Gwary, D., Janzen, H., Kumar, P., McCarl, B., Ogle, S., O'Mara, F. and Rice, C. 2007. Policy and technological constraints to implementation of green-house gas mitigation options in agriculture. Agric. Ecosyst. Environ. 118: 6-28.
  • Smith, H. W. 1975. Persistence of tetracycline resistance in pig E. coli. Nature. 258: 628-630.
  • Smith, H. W. 1962. The effects of the use of antibiotics on the emergence of antibiotic-resistant, disease-producing organisms in animals. Antibiotics in Agriculture. In Proceedings of the University of Nottingham Ninth Easter School in Agriculture Science. Butterworth, London. pp.374.
  • Skillman, L. C., Evans, P. N., Str mpl, C. and Joblin, K. N. 2006. 16S rDNA directed PCR primers and detection of methanogens in the bovine rumen. Lett. Appl. Microbiol. 42: 222-228.
  • Satter, L. D., and Slyter, L. L. 1974. Effect of ammonia concentration on rumen microbial protein production in vitro. British journal of nutrition, 32: 199-208.
  • Saijo, R., Nonaka, G. I. and Nishioka, I. 1990. Gallic acid esters of bergenin and norbergenin from Mallotus Japonicus. Phytochem. 29: 267-270.
  • Sa, J. H., Shin, I. C., Shim, T. H., Wang, M. H., and Kim, Y. S. 2004. Photoprotective effect and antioxidative activity from different organs of Morus bombycis Koidzumi. Korean J. Pharmacogn 35: 207-214.
  • SAS. 1996. SAS User Guide. Release 6.12 Edition. SAS Inst. Inc. Cary NC. USA
  • Russell, J. B., O'Connor, J. D., Fox, D. G., Van Soest, P. J. and Sniffen, C. J. 1992. Anet carbohydrate and protein system for evaluating cattle diets : Ⅰ. Ruminal fermentation. J. Anim. Sci. 70: 3551-3561.
  • Patra, A. K. and Saxena, J. 2010. A new perspective on the use of plant secondary metabolites to inhibit methanogenesis in the rumen. Phytochemistry. 71: 1198-1222.
  • Park, J. S., Kim, J. B., Kim, K. H., Ha, S. H., Han, B. S. and Kim, Y., H. 2002. Flavonoid Biosynthesis: Biochemistry and metabolic engineering. Korean J. Plant Biotechnology. 29: 179-269.
  • Oskoueian, E., Abdullah, N. and Oskoueian, A. 2013. Effects of Flavonoids on Rumen Fermentation Activity, Methane Production, and Microbial Population. Biomed Res. Int. 1-8.
  • Olmos Colmenero, J. J., and Broderick, G. A. 2003. Effect of dietary crude protein level on milk yield and ruminal metabolism of lactating dairy cows. J. Dairy Sci, 86: 273.
  • Okuda, T., Hatano, T., Agata, I. and Nishibe, S. 1986. The components of tannic activities in Labiatae plants. I. Rosmarinic acid from Labiatae plant. Japan Yakugaku Zasshi. 106: 1108-1111.
  • Ntaikou, I., Gavala, H. N., Kornaros, M. and Lyberatos, G. 2008. Hydrogen production from sugars and sweet sorghum biomass using Ruminococcus albus. Int. J. Hydrogen. Energy. 33: 1153-1163.
  • Mould, F. L., rskov, E. R. and Mann, S. O. 1984. Associative effects of mixed feeds. I. effects of type and level of supplementation and the influence of the rumen fluid pH on cellulolysis in vivo and dry matter digestion of various roughages. Anim. Feed Sci. Technol. 10: 15.
  • Miura H, Kihara T, Kawano N. 1969. Studies on bisflavones in the leaves of Podocarpus macrophylla and P. nagi. Chem Pharm Bul.l 17: 150-154.
  • Mitsubashi, S., Harada, K. and Kameda, M. 1961. On the drug resistance of enteric bacteria. 6. Spontaneous and artificial elimination of transferable drug resistance factors. Japan. J. Microbiol. 31: 119-123.
  • Mehrez, A. Z., rskov, E. R., and McDonald, I. 1977. Rates of rumen fermentation in relation to ammonia concentration. British Journal of Nutrition, 38: 437-443.
  • Mehrez, A. Z., rskov, E. R. and Mcdonald, I. 1977. Rates of rumen fermentation in relation to ammonia concentration. Brit. J. Nutr. 38: 437-443.
  • McDougall, E. I. 1948. The composition and output of sleep's saliva. Biochem. J. 43: 99.
  • McDougall, E. I. 1948. Studies on ruminant saliva. 1. The composition and output of sheep's saliva. Biochem. J. 43: 99.
  • McCullough, T. A. 1969. A study of factors affecting the voluntary intake of food by cattle. Anim. Prod. 11: 145-153.
  • Mazzanti, G., Mascellino, M. T., Battinelli, L., Coluccia, D., Manganaro, M., and Saso, L. 2000. Antimicrobial investigation of semipu rified fractons of Gingo biloba leaves. J. Enthnopharmacology. 71: 83-88.
  • Matsumoto, T. and Sei, T. 1987. Antifeedant activities of Ginkgo biloba L. components against the larva of Pieris rapae crucivora. Agric. Biol. Chem. 51: 249-250.
  • Leslie Grady, C. P., Daigger, G. T. and Lim, H. C. 1999. Biological Wastewater Treatment (2nd ed). p. 599-604. Marcel Dekker, Inc., NY, USA
  • Lee, S. Y. and Ha, J. K. 2009. Mitigation strategies for enteric methane emission. Proceedings of 2009 Annual Congress of KSAST, KOREA. 1: 103-121.
  • Lawrence, A. W. and McCarty, P. L. 1967. Kinetics of methane fermentation in anaerobic waste treatment. J Water Pollut Control Fed. 41: 1-17.
  • Latham, M. J. and Wolin, M. J. 1977. Fermentation of cellulose by Ruminococcus flavefaciens in the presence and absence of Methanobacterium ruminantium. Appl. Environ. Microbiol. 34: 297-301.
  • Koike, S. and Kobayashi, Y. 2001. Development and use of competitive PCR assay for the rumen cellulolytic bacteria: Fibrobacter succinogenes, Ruminococcus albus and Ruminococcus flavefaciens. FEMS Microbiology Letters. 204: 361-366.
  • Kim, E. T., Min, K. S., Kim, C. H., Moon, Y. H., Kim, S. C., and Lee, S. S. 2013. The effect of plant extracts on in-vitro ruminal fermentation, methanogenesis and methane-related microbes in the rumen. Asian-Aust. J. Anim. Sci. 26: 517-522.
  • Kang, S. S., Kim, J. S., Kwak, W. J., and Kim, K. H. 1990. Flavonoids from the leaves of Ginkgo biloba. Kor. J., Pharmacogn. 21: 111-120.
  • Kamra, D. N., Agarwal, N. and Chaudhary, L. C. 2006. Inhibition of ruminal methanogenesis by tropical plants containing secondary compounds. Anim, Feed, Sci, Technol. 145: 351-363.
  • Jouany, J. P. and Morgavi, D. P. 2007. Use of 'natural' products as alternatives to antibiotic feed additives in ruminant production. Animal. 1: 1443-1466.
  • Iwu, M. W., Duncan, A. R., and Okunji, C. O. 1999. New antimicrobials of plant origin. Perspectives on new crops and new uses. ASHS Press. Alexandria. VA., 457-462.
  • Irmgard, I. 1996. The rumen and hindgut as source of ruminant methanogenesis. Enviromental Monitoring and Assessmant. 42: 57-72.
  • IPCC(Intergovernmental panel on climate change). 2007. IPCC Fourth assessment report.
  • IPCC(Intergovernmental panel on climate change). 1992. Climate change 1992. The supplementary report to the IPCC Scientific Assessment. Cambridge University Press, New York.
  • Hwang, H. S., Ha, D. W., Lee, S. K., Lee, I. D., Lee, S. J., and Lee, S. S. 2013. Effects of terpenoids-rich plant extracts on rumimal-fermentation and methane production. Korean J. Organtic Agri. 4: 629-646.
  • Hungate, R. E., Smith, W., Bauchop, T., Yu, I. and Rabinowitz, J. C. 1970. Formate as an intermediate in the bobine rumen fermentation. J. Bacteriol. 102: 389-397.
  • Hungate, R. E. 1966. The rumen and it's microbes. Academic press, NY. pp. 92-446.
  • Hungate, R. E. 1963. Polysaccharide storage and growth efficiency in Ruminococcus albus. J. Bacteriol. 86: 848-854.
  • Huh, H., Staba, E. J. and Singh, J. 1992. Supercritical fluid chromatographic analysis of polyphenols in Gingo biloba. J. Chromatogr. 600: 364-369.
  • Huang, X., Xie, W. J., and Gong, Z. Z. 2000. Characteristics and antifungal activity of a chitin binding protein from ginkgo biloba. FEBS Letters 478: 123-126.
  • Hiltner, P. and Dehority, B. 1983. Effect of soluble carbohydrates on digestion of cellulose by pure cultures of rumen bacteria. Appl. Environ. microbiol. 46: 642-648.
  • Ha, J. K., Lee, S. S., Moon, Y. S., Kim, C. H., Seo, S. W., Baek, M. K., Lee, S. S., Lee, S. Y., Lee, W. S., Jang, J. S. and Choi, N. J. 2013. Ruminant nutrition and physiology. Seoul National University press. pp. 207-228.
  • Ha, J. K., Lee, S. S., Moon, Y. S. and Kim, C. H. 2005. Ruminant nutrition and physiology. Seoul National university press. Seoul, Korea.
  • Greenhouse Gas Inventory and Research center of Korea. 2005. http://www.gir.go.kr
  • Feng, X., Zhang, L. and Zhu, H. 2009. Comparative anticancer and antioxidant activities of different ingredients of Ginkgo biloba extract (EGb 761). Planta Med. 75: 792-796.
  • Erasmus, L. J., Botha, P. M., Cruywagen, C. W., and Meissner, H. H. 1994. Amino acid profile and intestinal digestibility in dairy cows of rumen-undegradable protein from various feedstuffs. Journal of Dairy Science, 77: 541-551.
  • Duncan, D. B. 1995. Multiple range and multiple F test. Biometrics. 11: 1-6.
  • Duncan, D. B. 1955. Multiple range and multiple F test. Biometrics. 11: 1-6.
  • Desjardins, R. L., Kulshreshtha, S. N., Junkins, B., Smith, W., Grant, B. and Boehm, M. 2001. Canadian greenhouse gas mitigation options in agriculture. Nutrient Cycling in Agroecoisystems. 60: 317-326.
  • Denman, S. E., Tomkins, N. W. and McSweeney, C. S. 2007. Quantitation and diversity analysis of ruminal methanogenic populations in response to the antimethanogenic compound bromochloromethane. FEMS Microbiol. Ecol. 62: 313-322.
  • Denman, S. E. and McSweeney, C. S. 2006. Development of a real-time PCR assay for monitoring anaerobic fungal and cellulolytic bacterial populations within the rumen. FEMS Microbiol. Ecol. 58: 572-582.
  • Demeyer, D. I. and Van Nevel, C. J. 1975. Methanogenesis, an intergrated part of carbohydrate fermentation, and its control. In digestion and metabolism in the ruminant (Ed. McDonald, I. W. and Warner A. C. I.) pp.366-382. The University of New England Publishing Unit. Armidale, N.S.W., Australia.
  • Dehority, B. A. 2003. Rumen microbiology. Nottingham University Press, Nottingham, UK.
  • Day, A. J., Canada, F. J., Diaz, J. C., Kroon, P. A., Mclauchlan, R., Faulds, C. B., Plumb, G. W., Morgan, M. R. and Williamson, G. 2000. Dietary flavonoid and isoflavone glycosides are hydrolysed by the lactase site of lactase phlorizin hydrolase. FEBS. Lett. 468: 166-170.
  • Cushnie, T. P. T. and Lamb, A. J. 2005. Antimicrobial activity of flavonoids. Int. J. Antimicrob. Agents. 26: 343-356.
  • Chaney, A. L. and Marbach, E. P. 1962. Modified reagents for determination of urea and ammonia. Clin Chem. 8:130-132.
  • Bryant, M. P., Small, N., Bouma, C. and Robinson, I. M. 1958. Studies on the composition of the ruminal flora and fauna of young calves. J. Dairy Sci. 41: 1747-1767.
  • Broudiscou, L. P., Papon, Y. and Broudiscou A. F. 2000. Effects of dry plant extracts on fermentation and methanogenesis in continuous culture of rumen microbes. Anim. Feed. Sci. Technol. 87: 263-277.
  • Bradford, M. M. 1976. A rapid and sensitive method for the quantitation of microogram quantities of protein utilizing the principle of protein-dye binding. Anal. Biochem. 72: 248-254.
  • Bodas, R., Prieto, N., Garcia-Gonzalez, R., Andres, S., Giraldez, F. J. and Lopez, S. 2012. Manipulation of rumen fermentation and methane production with plant secondary metabolites. Anim. Feed. Sci. Technol. 176: 78-93.
  • Bodas, R., Lopez, S., Fernandez, M., Garcia-Gonzalez, R., Rodrıguez, A. B., Wallace, R. J. and Gonzalez, J. S. 2008. In vitro screening of the potential of numerous plant species as antimethanogenic feed additives for ruminants. Anim. Feed. Sci. Technol. 145: 245-258.
  • Beuvink, J. M., Spoelstra, S. F. and Hogendorp, R. J. 1992. An automated method of measuring the time course of gas production of feedstuffs incubated with buffered rumen fluid. Neth. J. Agri. Sci. 40: 401-407.
  • Beuvink, J. M., Spoelstra, S. F. and Hogendorp, R. J. 1992. An automated method for measuring the time course of gas production of feedstuffs incubated with buffered rumen fluid. Neth. J. Agri. Sci. 40: 401-407.
  • Becker, P. M., Van Wikselaar, P. G., Franssen, M. C. R., de Vos, R. C. H., Hall, R. D. and Beekwilder, J. 2013. Evidence for a hydrogen-sink mechanism of (+) catechin-mediated emission reduction of the ruminant greenhouse gas methane. Metabolomics. 10: 179-189.
  • Balcells, J., Aris, A., Serrano, A., Seradj, A. R., Crespo, J. and Devant, M. 2012. Effects of an extract of plant flavonoids (Bioflavex) on rumen fermentation and performance in heifers fed high-concentrate diets. J. Ami. Sci. 90: 4975-4984.
  • Armentano, L. E., Bertics, S. J. and Riesterer, J. 1993. Lack of response to degradable protein to a low protein diet fed to midlactation dirly cows. J. Dairy Sci. 76: 3755-3762.
  • Alcaraz, L. E., Blanco, S. E., Puig, O. N., Tomas, F. and Ferretti, F. H. 2000. Antibacterial activity of flavonoids against methicillin-resistant Staphylococcus aureus strains. J. Theor. Biol. 205: 231-240.
  • AOAC. 2012. Official methods of analysis of AOAC INTERNATIONAL, 19th Edition.
  • 21세기 소비자 중심의 축산식품 개발. 항산화물과 기능성식품개 발
    이창용 축산과학원. pp 11-28 [2003]