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2011 | 20 | 1 |

Tytuł artykułu

Evaluation of microalgae as sources of digestible nutrients for monogastric animals

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
The study was carried out to evaluate three microalgae as potential nutrient sources in diets for monogastric animals. In a digestibility experiment with adult mink (Mustela vison), the microalgae Nannochloropsis oceanica, Phaeodactylum tricornutum and Isochrysis galbana were fed at 60, 120 and 240 g kg-1 as is, replacing fish meal. The N. oceanica and P. tricornutum had similar crude protein (CP) content (47.7 and 49.0% of DM, respectively), amino acid composition and lipid content (8.4 and 7.4%, respectively), whereas I. galbana contained 20.1% CP and 16.2% lipids. There was a significant linear reduction in CP digestibility with increasing dietary inclusion of all algae products. The apparent CP digestibility determined by linear regression for N. oceanica, P. tricornutum and I. galbana was 35.5, 79.9 and 18.8%, respectively. The individual amino acid digestibilities showed acceptable values for P. tricornutum, but low and highly variable values for N. oceanica and I. galbana. Although the algae contributed a minor proportion of dietary lipids, lipid digestibility declined with increasing inclusion of all algae and especially with the highest level of N. oceanica. It was concluded from the mink study that among the investigated algae, P. tricornutum was the preferable source of digestible nutrients.

Słowa kluczowe

Wydawca

-

Rocznik

Tom

20

Numer

1

Opis fizyczny

p.131-142,fig.,ref.

Twórcy

autor
  • Department of Animal and Aquacultural Sciences, Aquaculture Protein Centre, CoE, Norwegian University of Life Sciences, P.O.Box 5003, N-1432, As, Norway
autor
autor
autor
autor

Bibliografia

  • Albentosa M., Pèrez-Chamacho A., Labarta U., Fernàndez-Reiriz, M.J., 1997. Evaluation of freeze-dried microalgal diets for the seed culture of Ruditapes decussatus using physiological and biochemical parameters. Aquaculture 154, 305-321
  • Alonso D.L., Belarbi E.-H., Fernàndez-Sevilla J.M., Rodriguez-Ruiz J.R., Grima E.M., 2000. Acyl lipid composition variation related to culture age and nitrogen concentration in continuous culture of the microalga Phaeodactylum tricornutum. Phytochem. 54, 461-471
  • Becker E.W., 2007. Micro-algae as a source of protein. Biotechnol. Adv. 25, 207-210
  • Bitou N., Ninomiya M., Tsujita T., Okuda H., 1999. Screening of lipase inhibitors from marine microalgae. Lipid 34, 441-445
  • Brown M.R., 1991. The amino-acid and sugar composition of 16 species of microalgae used in mariculture. J. Exp. Mar. Biol. Ecol. 145, 79-99
  • Brown M.R., 2002. Nutritional value of microalgae for aquaculture. In: L.E. Cruz-Suàrez, D. Ricque-Marie, M. Tapia-Salazar, M.G. Gaxiola-Cortès, N. Simoes (Editors). Avances en Nutriciòn Acuicola VI. Memorias del VI Simposium Internacional de Nutriciòn Acuicola. 3 al 6 de Septiembre del 2002. Cancùn, Quintana Roo, Mèxico
  • Brown M.R., Garland C.D., Jeffrey S.W., Jameson I.D., Leroi J.M., 1993. The gross and amino acid compositions of batch and semi-continuous cultures of Isochrysis sp. (clone T.ISO), Pavlova lutheri and Nannochloropsis oculata. J. Appl. Phycol. 5, 285-296
  • Brown M.R., Jeffrey S.W., Volkman J.K., Dunstan G.A., 1997. Nutritional properties of microalgae for mariculture. Aquaculture 151, 315-331
  • Epifanio C.E., 1979. Growth in bivalve molluscs: Nutritional effects of two or more species of algae in diets fed to the American oyster Crassostrea Virginica (Gmelin) and the hard clam Mercenaria mercenaria (L.). Aquaculture 18, 1-12
  • Fàbregas J., Otero A., Morales E.D., Arredondo-Vega B.O., Patino M., 1998. Modification of the nutritive value of Phaeodactylum tricornutum for Artemia sp. in semicontinuous cultures. Aquaculture 169, 167-176
  • Janczyk P., Wolf C., Souffrant W.B., 2005. Evaluation of nutritional value and safety of the green microalgae Chlorella vulgaris treated with novel processing methods. Arch. Zootech. 8, 132-147
  • Marshall R., McKinley S., Pearce C.M., 2010. Effects of nutrition on larval growth and survival in bivalves. Rev. Aquacult. 2, 33-55
  • McCleary B.V., Solah V., Gibson T.S., 1984. Quantitative measurements of total starch in cereal flours and products. J. Cereal Sci. 20, 51-58
  • Miròn A.S., Garcia M.C.C., Gòmez A.C., Camacho F.G., Grima E.M., Chisti Y., 2003. Shear stress tolerance and biochemical characterization of Phaeodactylum tricornutum in quasi steady-state continuous culture in outdoor photobioreactors. Biochem. Eng. J. 16, 287-297
  • Pettersen A.K., Turchini G.M., Jahangard S., Ingram B.A., Sherman C.D.H., 2010. Effects of different dietary microalgae on survival. Growth, settlement and fatty acid composition of blue mussel (Mytilus galloprovincialis) larvae. Aquaculture 309, 115-124
  • Rebolloso-Fuentes M.M., Navarro-Pèrez A., Garcia-Camacho F., Ramos-Miras J.J., Guil-Guerro J.L., 2001. Biomass nutrient profiles of the microalga Nannochloropsis. J. Agr. Food Chem. 49, 2966-2972
  • Reitan K.I., Rainuzzo J.R., Olsen Y., 1994. Effect of nutrient limitation on fatty acid and lipid content of marine microalgae. J. Phycol. 30, 972-979
  • Saleh A.M., Hussein L.A., Abdalla F.E., El-Fouly M.M., Shaheen A.B., 1985. The nutritional quality of drum-dried algae produced in open door mass culture. Z. Ernährungswiss. 24, 256-263
  • Sandnes J.M., Källqvist T., Wenner D., Gislerød H.R., 2005. Combined influence of light and temperature on growth rates of Nannochloropsis oceanica: linking cellular responses to large-scale biomass production. J. Appl. Phycol. 17, 515-525
  • Sànchez S., Martinez E., Espinola F., 2000. Biomass production and biochemical variability of the marine microalga Isochrysis galbana in relation to culture medium. Biochem. Eng. J. 6, 13-16
  • Skrede A., 1979. Utilization of fish and animal byproducts in mink nutrition. IV. Fecal excretion and digestibility of nitrogen and amino acids by mink fed cod (Gadus morhua) fillet or meat-and-bone meal. Acta Agr. Scand. 29, 241-257
  • Skrede A., Berge G.M., Storebakken T., Herstad O., Aarstad K.G., Sundstøl F., 1998. Digestibility of bacterial protein grown on natural gas in mink, pigs, chicken and Atlantic salmon. Anim. Feed Sci. Tech. 76, 103-116
  • Spolaore P., Joannis-Cassan C., Duran E., Isambert A., 2006. Review. Commercial application of microalgae. J. Biosci. Bioeng. 101, 87-96
  • Szymeczko R., Skrede A., 1990. Protein digestion in mink. Acta Agr. Scand. 40, 189-200
  • Yamaguchi K., 1997. Recent advances in microalgal bioscience in Japan, with special reference to utilization of biomass and metabolites: a review. J. Appl. Phycol. 8, 487-502

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Bibliografia

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