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Food composition and analysis

Utilization of chicken feather hydrolysate as a novel fermentation substrate for production of exopolysaccharide and mycelial biomass from edible mushroom Morchella esculenta

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Pages 597-602 | Published online: 05 Dec 2011

References

  • Bridson EY. 1995. The oxoid manual. Wade Rood, Basingstoke Hampshire, England: Unipath Limited.
  • Confortin FG, Marchetto R, Bettin F, Camassola M, Salvador M, Dillon AJP. 2008. Production of Pleurotus sajor-caju strain PS-2001 biomass in submerged culture. J Ind Microbiol Biotechnol. 35:1149–1155.
  • Dong CH, Yao YJ. 2005. Nutritional requirements of mycelial growth of Cordyceps sinensis in submerged culture. J Appl Microbiol. 99:483–492.
  • Dufosse L, De La Broisse D, Guerard F. 1997. Fish protein hydrolysates as nitrogen sources for microbial growth and metabolite production. Recent Res Dev Microbiol. 1:365–381.
  • El-Boushy AR, Van der Poel AFB, Walraven OED. 1990. Feather meal-A biological waste: its processing and utilization as a feedstuff for poultry. Biol Wastes. 32:39–74.
  • Gessesse A, Kaul RH, Gashe BA, Mattiasson B. 2003. Novel alkaline proteases from alkalophilic bacteria grown on chicken feather. Enzyme Microb Tech. 32:519–524.
  • Grazziotin A, Pimentel FA, de Jong EV, Brandelli A. 2006. Nutritional improvement of feather protein by treatment with microbial keratinase. Anim Feed Sci Technol. 126:135–144.
  • Hwang HJ, Kim SW, Choi JW, Yun JW. 2003. Production and characterization of exopolysaccharides from submerged culture of Phellinus linteus KCTC 6190. Enzyme Microb Tech. 33:309–319.
  • Jonathan SG, Fasidi IO. 2001. Effect of carbon, nitrogen and mineral sources on growth of Psathyerella atroumbonata (Pegler), a Nigeria edible mushroom. Food Chem. 72:479–483.
  • Kim JM, Lim WJ, Suh HJ. 2001. Feather-degrading Bacillus species from poultry waste. Process Biochem. 37:287–291.
  • Kim SW, Hwang HJ, Xu CP, Na YS, Song SK, Yun JW. 2002. Influence of nutritional conditions on the mycelial growth and exopolysaccharide production in Paecilomyces sinclairii. Lett Appl Microbiol. 34:389–393.
  • Kim SW, Hwang HJ, Xu CP, Sung JM, Choi JW, Yun JW. 2003. Optimization of submerged culture process for the production of mycelial biomass and exo-polysaccharides by Cordyceps militaris C738. J Appl Microbiol. 94:120–126.
  • Kim HO, Lim JM, Joo JH, Kim SW, Hwang HJ, Choi JW, Yun JW. 2005. Optimization of submerged culture condition for the production ofmycelial biomass and exopolysaccharides by Agrocybe cylindracea. Bioresour Technol. 96:1175–1182.
  • Kim SS, Lee JS, Cho JY, Kim YE, Hong EK. 2010. Effects of C/N ratio and trace elements on mycelial growth and exo-polysaccharide production of Tricholoma matsutake. Biotech Bioproc Eng. 15:293–298.
  • Lee H, Song M, Yu Y, Hwang S. 2003. Production of Ganoderma lucidum mycelium using cheese whey as an alternative substrate: response surface analysis and biokinetics. Biochem Eng J. 15:93–99.
  • Lee BC, Bae JT, Pyo HB, Choe TB, Kim SW, Hwang HJ, Yun JW. 2004. Submerged culture conditions for the production of mycelial biomass and exopolysaccharides by the edible basidiomycete Grifola frondosa. Enzyme Microb Tech. 35:369–376.
  • Liao W, Liu Y, Frear C, Chen S. 2007. A new approach of pellet formation of a flamentous fungus – Rhizopus oryzae. Bioresour Technol. 98:3415–3423.
  • Liu GQ, Wang XL. 2007. Optimization of critical medium components using response surface methodology for biomass and extracellular polysaccharide production by Agaricus blazei. Appl Microbiol Biotechnol. 74:78–83.
  • Miller GL. 1959. Use of dinitrosalicylic acid reagent for determination of reducing sugar. Anal Chem. 31:426–428.
  • Parrado J, Millan F, Hernandes-Pinzon I, Bautista J, Machado A. 1993. Sunflower peptones: use as nitrogen source for the formulation of fermentation media. Process Biochem. 28:109–113.
  • Taskin M, Erdal S. Production of carotenoids by Rhodotorula glutinis MT-5 in submerged fermentation using the extract from waste loquat kernels as substrate. J Sci Food Agric. 2011a; 91:1440–1445.
  • Taskin M, Erdal S. Utilization of waste loquat (Eriobotrya japonica Lindl.) kernel extract for a new cheap substrate for fungal fermentations. Rom Biotechnol Lett. 2011b; 16:5872–5880.
  • Taskin M, Kurbanoglu EB. 2011. Evaluation of waste chicken feathers as peptone source for bacterial growth. J Appl Microbiol. 111:826–834.
  • Taskin M, Erdal S, Canli O. 2010. Utilization of waste loquat (Eriobotrya japonica Lindley) kernels as substrate for scleroglucan production by locally isolated Sclerotium rolfsii. Food Sci Biotechnol. 19:1069–1075.
  • Taskin M, Erdal S, Genisel M. Biomass and exopolysaccharide production by Morchella esculenta in submerged culture usingthe extract from waste loquat (Eriobotrya japonica L.) kernels. J Food Process Preserv. 2011a; 35:623–630.
  • Taskin M, Sisman T, Erdal S, Kurbanoglu EB. Use of waste chicken feathers as peptone for production of carotenoids in submerged culture of Rhodotorula glutinis MT-5. Eur Food Res Technol. 2011b; 233:657–665.
  • Webster AB, Fletcher DL, Savage SI. 1996. Feather removal from spent hens up to 24 hr post-mortem. J Appl Poult Res. 5:337–346.
  • Van sjijdam JC, Kossen NWF, Paul PG. 1980. An inoculum technique for the production of fungal pellets. Eur J Appl Microbiol Biotechnol. 10:211–221.
  • Vasileva-Tonkova E, Nustorova M, Gushterova A. 2007. New protein hydrolysates from collagen wastes used as peptone for bacterial growth. Curr Microbiol. 54:54–57.
  • Zhang ZY, Jin B, Kelly JM. 2007. Production of lactic acid from renewable materials by Rhizopus fungi. Biochem Eng J. 35:251–263.

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