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1994 | 41 | 4 |

Tytuł artykułu

Enzymy drobnoustrojow zwaczowych katalizujace rozklad wielkoczasteczkowych skladnikow paszy w zwaczu. Czesc VI. Lipidy

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Warianty tytułu

Języki publikacji

PL

Abstrakty

Wydawca

-

Rocznik

Tom

41

Numer

4

Opis fizyczny

s.87-95,rys.,bliogr.

Twórcy

  • Instytut Fizjologii i Zywienia Zwierzat im.J. Kielanowskiego PAN, Jablonna k.Warszawy

Bibliografia

  • [1] Abaza M. A., Abou-Akkada A.R., El-Shazly K. 1975. Effect of rumen protozoa on dietary lipid in sheep. J. Agric. Sci., Camb. 85: 135-143.
  • [2] Aliew A.A. 1980. Obmen lipidow w przedżeludkach, lipidnyj obmen i produktywnost źvačych źivutnych. Izdat. "Kolos" Moskwa 35-36.
  • [3] Bailey R. W. 1962. α-galactosidase activity of rumen bacteria. Nature, London 195: 79-80.
  • [4] Bailey R. W., Howard B. R. 1963. Biochemistry of rumen protozoa. The maltases of Dasytricha ruminantium, Epidinium caudatum (Crawley) and Entodinium Caudatum. Biochem. J. 86: 446-452.
  • [5] Bailey R. W., Howard B. H. 1963. Carbohydrases in the rumen ciliate Epidinium ecaudatum (Crawley) ß-galaclosidase and isomaltase. Biochem. J. 87: 146-151.
  • [6] Ciebierina L. D., Baškatova H. A. 1981. Lipazy gramootricalnych bakterii. Prik. Biochem. Mikrobiol. 17: 191.
  • [7] Clarke D. G., Hawke J. C. 1970. Studies on rumen metabolism. VI. In vitro hydrolysis of trigliceryde and isolation of a lipolytic fraction. J. Sci. Food Agric. 21: 446-452.
  • [8] Coleman G. S., Kemp P., Dawson R. M. C. 199L. The catabolism of phosphatidylethanolamine by the rumen protozoa Entodinium caudatum and its conversion into N (carboxylethyl) derivative. Biochem. J. 23: 97-100.
  • [9] Czerkawski J. W. 1967. Metabolism of long chain fatty acids in the rumen. EAAP 4th Symposium on Energy Metabolism. Jabłonna 17th-24th September.
  • [10] Czerkawski J. W., Blaxter K. L., Wainman F. W. 1966. The metabolic of oleic linoleic and linolenic acids by sheep with reference to their effects on methane production. Br. J. Nutr. 20: 349-362.
  • [11] Dawson R. M. C. 1963. On the mechanism of action of phospholipase A. Biochem. J. 88: 414-423.
  • [12] Dawson R. M. C., Hemington N. 1974. Digestion of grass lipids and pigments in the sheep rumen. Br. J. Nutr. 32: 327-340.
  • [13] Dawson R. M. C., Hemington N. 1974. An inhibitor of phospholipase D in saliva. Biochem. J. 143: 423-430.
  • [14] Dawson R. M. C., Hemington N., Hazlewood G. P. 1977. On the role of higher plant and microbial lipases in the ruminal hydrolysis of grass lipids. Br. J. Nutr. 38: 225-232.
  • [15] Dolgov I. A. 1979. Vydielenije, kultivirovanije i predielenije aktivnosti lipolitičeskich bakterii rubca žvačnych źivotnych. Biul. WNII Fizjol. Biochem. Pitania S-ch. Źiv. 153: 75-77.
  • [16] Dolgov I. A. 1980. Izučenije lipolitičeskich mikroorganizmov predžełudkov u žvačnych životnych, w: Izučenije lipidnogo obmena u selskochoziajslvennych źivotnych. s. 53. Wyd. UNII Fizjol. Biochem. Pitania S-ch Źiv. Borowsk.
  • [17] Faruque A. J. M. C., Jarvis B. D. V., Hawke J. C., 1974. Studies on rumen metabolism VIII. Characteristics of lipase in rumen contents, and in the rumen bacteria. J. Sci. Food Agric. 25: 439-449.
  • [18] Faruque A. J. M. C., Jarvis B. D. V., Hawke J. C. 1974. Studies on rumen metabolism. IX. Contribution of plant lipases to the release of free fatty acids in the rumen. J. Sci. Food Agric. 25: 1313-1328.
  • [19] Garton G. A., Hobson P. N., Lough A. K. 1958. Lypolysis in the rumen. Nature, London 182: 1511-1512.
  • [20] Garton G. A., Lough A. K., Vioque E. 1961. Glycerid hydrolysis and glicerol fermentation by sheep rumen contents. J. Gen. Microbiol. 25: 215-225.
  • [21] Gutierrez J., Willams P.P., Davis R. E., Warwick E. J. 1962. Lipid metabolism of rumen ciliates and bacteria. Uptake of fatty acids by Isotricha prostoma and Entodinium simplex. Appl. Microbiol. 10: 548-551.
  • [22] Harfoot C. H., Crouchman M. L., Noble R. C., Moore J. H. 1974. Composition between food particles and rumen bacteria in the uptake of long-chain fatty acids and triglicerydes. J. Appl. Bacteriol. 37: 300-341.
  • [23] Hawke J. C. 1973. Lipids. w: Chemistry and Biochemistry of Herbage. 213-363, ed. Butler G. W. Bailey R. W. V. I. Acad. Press, London, New York.
  • [24] Hazlewood G. P., Cho K. Y., Dawson R. M. C., Munn E. A. 1983. Subcellular fractionation of the gram negative rumen bacterium Butyrivibrio S2 by protoplast formation and localisation of lipolytic enzymes in the plasma membrane. J. Appl. Bacteriol. 55: 337-347.
  • [25] Hazlewood G. P., Dawson R. M. C. 1975. Isolation and properties of a phospholipids hydrolysing bacterium from ovine rumen fluid. J. Gen. Microbiol. 89: 163-175.
  • [26] Hazlewood G. P., Dawson R. M. C. 1979. Characteristic of a lipolytic and fatty acid requiring Butyrivibrio sp. isolated from the ovine rumen J. Gen. Microbiol. 112: 15-27.
  • [27] Henderson C. 1971. A study of the lipase produced by Anaerovibrio lipolytica a rumen bacterium. J. Gen. Microbiol. 65: 81-89.
  • [28] Henderson C., Hobson P. N. 1968. The lipase of a rumen bacterium. J. Gen. Microbiol. 53, VIII.
  • [29] Henderson C., Hodgiss W. 1973. An electromicroscopic study of Anaerovibrio lipolytica (strain 5S) and its lipolytic enzyme. J. Gen. Microbiol. 76: 389-303.
  • [30] Hill F. D:, Saylor J. H., Allen R. S., Jacobson N. L. 1960. In vitro lipolysis by rumen ingesta. J. Anim. Sc,. 19: 1266-1270.
  • [31] Hobson P. N., Mann S.O. 1961. The isolation of glicerol fermenting and lipolytic bacteria from the rumen of the sheep. J. Gen. Microbiol. 25: 227-240.
  • [32] Hobson P. N., Summers R. 1966. Effectof the growth rate on the lipase activity of a rumen bacterium. Nature, London. 209: 736-737.
  • [33] Karlson P. 1971. Zarys Biochemii. 269-284, PWN, Warszawa.
  • [34] Kates M. 1970. Plant phospholipids and glycolipids. Adv. Lipid Res. 8: 225-255.
  • [35] Kolenko E. I., Shishov W. P., Gusin H. H., Dolgov T. A , 1974. Lipidnij obmen u sielsko-choziajstvennych životnych. Borovsk, 218.
  • [36] Lanz W. W., Williams P. P. 1973. Characterisation of esterases produced by a ruminal bacterium identitied as Butyrivibrio fibrisolvens (strain 53). J. Bacteriol. 113: 1170-1176.
  • [37] Latham M. J., Storry J. E., Sharpe M. E. 1972. Effect of the low roughage diets on the microflora and lipid metabolism in the rumen. Appl. Microbiol. 24: 871-877.
  • [38] Mangan J. L. 1972. Quantitative studies on nitrogen metabolism in the bovine rumen. Br. J. Nutr. 27: 261-283.
  • [39] Prins R. A., Lankhorst A., van der Meer P., van Nevel C. J. 1975. Same characteristic of Anaerovibrio lipolytica a rumen lipolytic organism. Antonie van Loewenhoek J. Microbiol. Ser. 41: 1-11.
  • [40] Robertson J. A., Hawke J. C. 1966. Effect of lipids on in vitro and in vivo microbial activity. J. Sci. Food Agric. 17: 241.
  • [41] Sastry P. S., Kates M. 1964. Hydrolysis of monogalactosyl and digalactosyl diglicerydes by specific enzymes in runner-bean leaves. Biochemistry, 3: 1280-1287.
  • [42] Willams P. P., Gutierrez J., Davis R. E. 1963. Lipid metabolism of rumen ciliates and bacteria. II. Uptake of fatty acids and lipid analysis of Isotricha intestinalis and rumen bacteria with further information on Entodinium simplex. Appl. Microbiol. 11: 260-264.
  • [43] Wright D. E. 1961. Bloat in cattle. XX. Lipase activity of rumen microorganisms. N-Z. J. Agric. Res. 4: 215-223.
  • [44] Ziołecka A., Kużdowicz M., Kielanowski J. 1985. Tabele składu chemicznego i wartości pokarmowej pasz krajowych. PWN, Warszawa.

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Bibliografia

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