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Tytuł artykułu

Potencjalne mozliwosci wykorzystania surowcow ligninocelulozowych

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PL

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-

Rocznik

Tom

41

Numer

1

Opis fizyczny

s.3-14,rys.,bibliogr.

Twórcy

autor
  • Uniwersytet Marii Curie-Sklodowskiej, Lublin
autor

Bibliografia

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  • [2] Bujak S., Targoński Z. 1990. Mikrobiologiczna degradacja hemiceluloz. Post. Mikrobiol. 29: 77-90.
  • [3] Crawford D.L, Crawford R.L 1976. Microbial degradation of lignocellulose: the lignin component. Appl. Environ. Microbiol. 21: 714-717.
  • [4] Crawford D.L, Crawford R.L, Pometto III A.L 1977: Preparation of specifically labelled ¹⁴C-[lignin]-and ¹⁴C-[glucan]-lignocelluloses and their decomposition by the microfora of soil. Appl. Environ. Microbiol. 33: 1247-1251.
  • [5] Deschamps F., Hunet M.C. 1984. ß-Glucosidase production by Aspergillus fuoenicis in solid state fermentation. Biot. Letters 1: 55-60.
  • [6] Eriksson K.E. 1978. Enzyme mechanisms involved in cellulose hydrolysis by the rot fungus Sporotrichum pulverulentum. Biotech. Bioeng. 20: 317-332.
  • [7] Eriksson K.E. 1985. Potential use of microorganisms in wood bioconversion. The Marcus Wallenberg Foundation Symposia Proceedings "New horizons for biotechnological utilization of the forest resource, Falun, Sweden, September 12: 9-26.
  • [8] Eriksson K.E. 1985. Swedish developments in biotechnology related to the pulp and paper industry. Tappi 68: 46-55.
  • [9] Eriksson K.E., Blanchette R.A., Ander P. 1990. Biodegradation of hemicelluloses. W: Microbial and enzymatic degradation of wood and wood components, Timell T.E. (red.), Springer-Verlag, Berlin, Heidelberg, New York, London, Paris, Tokyo, Hong Kong: 181-224.
  • [10] Eriksson K.E., Wood T.M. 1985 Biodegradation of cellulose. W: Biodegradation of Cellulose in Biosynthesis and Biodegradation of Wood Components, Higuchi T. (red.), Academic Press, New York: 469-503.
  • [11] Fan L.T., Gharpuray M.M., Lee Y.H. 1986. Enzymatic Hydrolysis. W: Cellulose Hydrolysis, Fan L.T., Gharpuray M.M., Lee Y.H. (red.), Springer-Verlag, Berlin: 21-120.
  • [12] Fengel D. 1971. Ultrastructural organization of the cell wall components. J. Polym. Sci. C 36: 383-392.
  • [13] Foody B. 1988. Technical and Economics Potential for Large Scale Production from Cellulose. Materiały z Konferencji "Bioconversion of Ligninocellulosics”, czerwiec 1988: 83.
  • [14] Gilkes N.R., Kilburn D.G., Miller Jr. R.C., Warren R.A.J. 1991. Bacterial Cellulases. Bioresource Technology 36: 21-35.
  • [15] Haider K., Trojanowski J. 1975. Decomposition of specifically ¹⁴C-labelled phenols and dehydropolymers of coniferyl alcohol as models for lignin degradation by soft and white rot fungi. Arch. Microbiol. 105: 33-41.
  • [16] Harvey P.J., Schoemaker H.E., Palmer J.M. 1986. Veratryl alcohol as a mediator and the rote of radical cations in lignin biodegradation by Phanerochaete chrysosporium. FEBS Letter 195: 242-246.
  • [17] Hidalgo M., Steiner J., Eyzaguirre J. 1992. ß-Glucosidase from Penicillium purpurogenum: Purification and Properties. Biotechnol. And Appl. Biochem. 15: 185-191.
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  • [22] Jarosz K. 1991. Niektóre uwagi o możliwości wykorzystania spirytusu jako paliwa do pojazdów w Polsce. Przem. Ferm. Owoc.-Warzyw. 4: 8.
  • [23] Katayeva I.A., Golovchenko N.P., Chuvilskaya N.A., Akimenko V.K., 1992. Clostridium thermocellum ß-glucosidases Aand B: Purification, properties, licalization, and regulation of biosynthesis. Enzyme Microb. Technol. 14: 407-412.
  • [24] Kin Z. 1980. Hemicelulozy - chemia i wykorzystanie. Lesiak T., Surewicz W. (red.), PWRiL Warszawa: 1-226.
  • [25] Kirk T.K. 1983. Degradation and Conversion of Lignocelluloses. W: The Filamentous Fungi, Smith J.E., Berry D.R., Kristianses B. (red.), Edward Arnold, London: 266-295.
  • [26] Kirk T.K. 1985. The discovery and promise of lignin-degrading enzymes. The Marcus Wallenberg Foundation Symposia Proceedings "New horizons for biotechnological utilization of the forest resource, Falun, Sweden, September 12: 27-42.
  • [271 Kirk T.K., Connors W.J., Bleam R.D., Hackett W.F., Zeikus J.G. 1975. Preparation and microbial decomposition of synthetic ¹⁴C-lignins. Proc. Nat. Acad. Sci. USA 72: 2515-2519.
  • [28] Kirk T.K., Farell R.L. 1987. Enzymatic "Combustion": The microbial degradation of lignin. Ann. Rev. Microbiol. 41: 465-505.
  • [29] Kirk T.K., Tien M., Croan S., McDonagh T., Farell R.L. 1986. Production of ligninases by Phanerochaete chrysosporium. W: Proc. Botechnology in the Pulp and Paper Industry, The 3rd International Conference, Stockholm, June 16-19: 5-6.
  • [30] Kuwahara M., Glenn J.K., Morgan M.A., Gold M.H. 1984. Separation and characterization of two extracellular H₂O₂-dependent oxidases from ligninolytic cultures of Phanerochaete chrysosporium. FEBS Lett. 169: 247-250.
  • [31] Leonowicz A., Wojtaś-Wasilewska M., Rogalski J., Luterek J. 1988. Biological decomposition of lignocellulose. W: Progress in Biotechnology 4, Blazej A., Zemek J. (red.), Elsevier, Amsterdam, Oxford, New York, Tokyo: 415-451.
  • [32] Leonowicz A., Wojtaś-Wasolewska M., Rogalski J., Luterek J. 1991. Higher fungi as a potential feed and food source from lignocellulosic wastes. W: Environmental Biotechnology, Blazej A., Privarova V. (red.), Elsevier, Amsterdam, Oxford, New York, Tokyo: 229-255.
  • [33] Paszczyński A., Huyhn V.B., Crawford R. 1985. Enzymatic activities of an extracellular manganese-dependent peroxidase from Phanerochaete chrysosporium. FEMS Microbiol. Lett. 29: 37-41.
  • [34] Paszczyński A., Huynh V.B., Crawford R. 1986. Comparision of ligninase-I and peroxidase-M2 from the white rot fungus Phanerochaete chrysosporium. Arck Biochem. Biophys. 244: 750-765.
  • [35] Penttila M.E. 1987. Construction and characterisation of cellulolytic yeasts. Ph. D. Disertation, Technical Research Centre of Finland, 39, Espoo.
  • [36] Penttila M.E., Andre L., Lehtovaara P., Bailey M., Teeri T.T., Knowles J.K.C. 1988. Efficient secretion of two fungal cellobiohydrolases by Saccharomyces cerevisiae. Gene 63: 103-112.
  • [37] Penttila M.E., Nevalainen K.M.H., Raynal A., Knowles J.K.C. 1984. Cloning of Aspergillus niger genes in yeast. Expression of the gene coding Aspergillus ß-glucosidase. Mol. Gen Genet. 194: 494-499.
  • [38] Rogalski J. 1992. Badania nad biotransformacją ligninocelulozy u grzybów biatej zgnilizny drewna na przykładzie Phlebia radiata. Rozprawa habilitacyjna UMCS, ISBN 0860-7702, Lublin.
  • [39] Rzędowski W., Sroka W. 1986. Wykorzystanie celulozy jako źródeł energii. Przemysł Spożywczy 40: 200-204.
  • [40] Schwarz W., Bronnenmeier K., Staudenbauer W.L. 1985. Molecular cloning of Clostridium thermocellum genes involved in ß-glucan degradation in bactephage lambda. Biotechnol. Lett. 7: 859-864.
  • [41] Slininger P J., Bothost R.J., Olws H., Ladish M.R., Sernce A.R. 1985. Comparative evaluation of ethanol production by xylose-fermenting yeasts presented high xylose concentration. Biot. Letters 6: 431-436.
  • [42] Szczodrak J. 1989. The use of cellulases from a ß-glucosidase-hyperproducing mutant of Trichoderma reesei in simultaneous saccharification and fermentation of wheat straw. Biotech. Bioeng. 33: 1112-1116.
  • [43] Szczodrak J., Rogalski J., Ilczuk Z. 1984. Cellulolytic Activity of Moulds.III. Enzymatic Hydrolysis of Cellulase Preparation from Aspergillus terreus F-413. Acta Microbiol. Polon. 33: 207-216.
  • [44] Szczodrak J., Ilczuk Z., Rogalski J., Leonowicz A. 1986. Intensification of Oak Sawdust Enzymatic Hydrolysis by Chemical or Hydrothermal Pretreatment. Biotech. Bioeng. 28: 504-510.
  • [45] Tien M. 1987. Properties of ligninase from Phanerochaete chrysosporium and their possible applications. CRC Crit. Rev. Microbiol. 15: 141-168.
  • [46] Tien M., Kirk T.K. 1983. Lignin-degrading enzyme from the hymenomycete Phanerochaete chrysosporium Burds. Science 221: 661-663.
  • [47] Tien M., Kirk T.K. 1984. Lignin-degrading enzyme from Phanerochaete chrysosporium: purification, characterization, and catalytic properties of a unique H₂O₂-requiring oxygenase. Proc. Nat. Acad. Sci. USA 81: 2280-2284.
  • [48] Trojanowski J., Huttermann A., Haider K., Wessels J. 1985. Degradation of lignin and lignin related compounds by protoplasts isolated from Fomes annosus. Arch. Microbiol. 40: 326-330.
  • [49] Ueng P.P., Volpp K.J., Tucker J.V., Gong C.S., Chen L.F. 1985. Molecular cloning of the Esclrerichia coli gene encoding xylose isomerase. Biotechnol Lett. 7: 153-158.
  • [50] Westermark U., Eriksson K.E. 1974. Cellobiose: quinone oxidoreductase, a new wood-degrading enzyme from white-rot fungi. Acta. Chem. Scand. B 28: 209-214.
  • [51] Whittle D.J., Kilburn D.G., Warren R.AJ., Miller R.C., 1982. Molecular cloning of a Cellulomonas firni cellulase gene in Escherichia coli. Gene 17: 139-145.
  • [52] Wilson D.B., Collmer A. 1983. Cloning and expression of a Trermomonospora YX endocellulase gene in E. coli. Biotechnol. 1: 594-601.
  • [53] Wood T.M., McCrae SJ. 1975. W: Symposium on Enzymatic Hydrolysis of Cellulose. Bailay M., Linko T.M. (red.), The Finish National Fund for Research and Development, Helsinki.

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Bibliografia

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