121
Views
0
CrossRef citations to date
0
Altmetric
Articles

Egg- and seashell waste as a calcium source in snail (Cornu aspersum Müller, 1774) feed: I. Growth, mineral distribution in meat, shell and faeces, and environmental effects

, &
Pages 90-97 | Received 07 Sep 2023, Published online: 11 Dec 2023

References

  • Abiona, J.A., Olaoye, T.G., Abioja, M.O. & Onagbesan, O.M. (2018) Effect of zinc oxide on liveweight, reproductive organ dimensions and spermatozoa production of Archachatina marginata during dry season. Agricultura Tropica et Subtropica 51, 147–154.
  • Adeyeye, E. (2009) Comparative study on the characteristics of egg shells of some bird species. Bulletin of the Chemical Society of Ethiopia 23, 159–166.
  • Agrawal, S.B., Singh, A., Sharma, R.K. & Agrawal, M. (2007) Bioaccumulation of heavy metals in vegetables: A threat to human health. Aquatic Environmental Toxicology 1, 14–23.
  • Ahmed, T.A.E., Wu, L., Younes, M. & Hincke, M. (2021) Biotechnological applications of eggshell: Recent advances. Frontiers in Bioengineering and Biotechnology 6, 1–19.
  • AOAC. (1990) Official Methods of Analysis of the Association of Official Analytical Chemists. 15th ed. Heldrich K. (Ed.). Association of Official Analytical Chemists, Arlington, Texas.
  • Arias, J.L. & Fernandez, M.S. (2001) Role of extracellular matrix molecule in shell formation and structure. World’s Poultry Science Journal 57, 349–357.
  • Augspurger, N.R. & Baker, D.H. (2004) Phytase improves dietary calcium utilization in chicks, and oyster shell, carbonate, citrate, and citrate-malate forms of calcium are equally bioavailable. Nutrition Research 24, 293–301.
  • Barros, M.C., Bello, P.M., Bao, M. & Torrado, J.J. (2009) From waste to commodity: Transforming shells into high purity calcium carbonate. Journal of Cleaner Production 17, 400–407.
  • Beeby, A. & Richmond, L. (1988) Calcium metabolism in two populations of the snail Helix aspersa on a high lead diet. Archives of Environmental Contamination and Toxicology 17, 507–511.
  • Benjakul, S., Mad-Ali, S. & Sookchoo, P. (2017) Characteristics of biocalcium powders from pre-cooked tongol (Thunnus tonggol) and yellowfin (Thunnus albacores) tuna bones. Food Biophysics 12, 412–421.
  • Bires, J., Bartko, P. & Huska, M. (1997) Distribution of risk elements in the organism of sheep after industrial intoxication with zinc. Spectroscopy Letters 30, 1263–1277.
  • Blair, R. (Ed.). (2008) Nutrition and Feeding of Organic Poultry. CAB International, Wallingford, Oxford, UK.
  • Brun, L.R., Lupo, M., Delorenzi, D.A., Loreto, V.E.D. & Rigalli, A. (2013) Chicken eggshell as suitable calcium source at home. International Journal of Food Sciences and Nutrition 64, 740–743.
  • Burley, R.W. & Vedehra, D.V. (Eds.). (1989) The Avian Egg: Chemistry and Biology. Wiley, New York.
  • Çelik, M.Y., Duman, M.B., Sariipek, M., Uzun Gören, G., Kaya Öztürk, D. & Kocatepe, D. (2019) Comparison of fatty acids and some mineral matter profiles of wild and farmed snails, Cornu aspersum Müller, 1774. Molluscan Research 39, 234–240.
  • Dallinger, R., Berger, B., Triebskorn-Kohler, R. & Kohler, H. (2001). Soil biology and ecotoxicology. In: Barker, G.C. (Ed.), The Biology of Terrestrial Molluscs. CABI, Wallingford, UK, pp. 489–525.
  • Fagbuaro, O., Oso, J.A., Edward, J.B. & Ogunleye, R.F. (2006) Nutritional status of four species of giant land snails in Nigeria. The Journal of Zhejiang University Science B: Biomedicine & Biotechnology 7, 686–689.
  • Fairweather-Tait, S. & Hurrell, S.F. (1996) Bioavailability of minerals and trace elements. Nutrition Research Reviews 9, 295–324.
  • Gillikin, D., Lorrain, A., Navez, J., Taylor, J.W., André, L. & Keppens, E. (2005) Strong biological controls on Sr/Ca ratios in aragonitic marine bivalve shells. Geochemistry, Geophysics, Geosystems 6(5), 1–16.
  • Gongruttananun, N. (2011) Effects of eggshell calcium on productive performance, plasma calcium, bone mineralization, and gonadal characteristics in laying hens. Poultry Science 90, 524–529.
  • Ireland, M.P. (1988) A comparative study of the uptake and distribution of silver in a slug Arion ater and a snail Achatina fulica. Comparative Biochemistry and Physiology Part C: Toxicology & Pharmacology 90, 198–194.
  • Jatto, O.E., Asia, I.O. & Medjor, W.E. (2010) Proximate and mineral composition of different species of snail shell. The Pacific Journal of Science and Technology 11, 416–419.
  • Jovic, M., Mandic, M., Sljivic-Ivanovic, M. & Smičiklas, I. (2019) Recent trends in application of shell waste from mariculture. Bilateral Project Serbia-Montenegro 32, 47–62.
  • Kim, S.W., Li, W., Angel, R. & Proszkowiec-Weglarz, M. (2018) Effects of limestone particle size and dietary Ca concentration on apparent P and Ca digestibility in the presence or absence of phytase. Poultry Science 97, 4306–4314.
  • Kismiati, S., Yuwanta, T., Zuprizal, Z. & Supadmo, S. (2016) The performance of layıng hens fed dıfferent calcıum source. Journal of the Indonesian Tropical Animal Agriculture 37, 263–270.
  • Laonapakul, T., Sutthi, R., Chaikool, P., Mutoh, Y. & Chindaprasirt, P. (2019) Optimum conditions for preparation of bio-calcium from blood cockle and golden apple snail shells and characterization. ScienceAsia 45, 10–20.
  • Laskowski, R. & Hopkin, S.P. (1996) Effect of Zn, Cu, Pb, and Cd on fitness in snails (Helix aspersa). Ecotoxicology and Environmental Safety 34, 59–69.
  • Liu, Y., Ma, Y.L., Zhao, J.M., Vazquez-anon, M. & Stein, H. (2014) Digestibility and retention of zinc, copper, manganese, iron, calcium, and phosphorus in pigs fed diets containing inorganic or organic minerals. Journal of Animal Science 92, 3407–3415.
  • Muller, H.G. (Ed.). (1988) An Introduction to Tropical Food Science. 1st ed. Cambridge University Press, Cambridge, England.
  • Neiman, M. & Krist, A. (2016) Sensitivity to dietary phosphorus limitation in native vs. invasive lineages of a New Zealand freshwater snail. Ecological Applications 26, 2218–2224.
  • Nkansah, M.A., Agyei, E.A. & Opoku, F. (2021) Mineral and proximate composition of the meat and shell of three snail species. Heliyon 7, 1–8.
  • Olgun, O., Yildiz, AÖ & Cufadar, Y. (2015) The effects of eggshell and oyster shell supplemental as calcium sources on performance, eggshell quality and mineral excretion in laying hens. Indian Journal of Animal Research 49, 205–209.
  • Özogul, Y., Özogul, F. & Olgunoglu, A.I. (2005) Fatty acid profile and mineral content of the wild snail (Helix pomatia) from the region of the south of Turkey. European Food Research and Technology 221, 547–549.
  • Posilovic, H. & Bajraktarevic, Z. (2001) Functional morphological analysis of evolution of ribbing in Pliocene viviparid shells from Croatia. Lethaia 43, 457–464.
  • Quina, M.J., Soares, M.A.R. & Quinta-Ferreira, R. (2017) Applications of industrial eggshell as a valuable anthropogenic resource. Resources, Conservation and Recycling 123, 176–186.
  • Roland, D.A., Ahmad, H.A., Yadalam, S.S. & Sefton, T. (2003) Effect of nongenetically modified phytase supplementation on commercial leghorns. Journal of Applied Poultry Research 12, 257–263.
  • Scott, M.L., Hull, S.L. & Mullenhoff, P.A. (1971) The calcium requirements of laying hens and effects of dietary oyster shell upon egg shell quality. Poultry Science 50, 1055–1063.
  • Sundalian, M. (2021) Review: Analysis and benefit of shells content of freshwater and land snails from gastropods class. Biointerface Research in Applied Chemistry 12, 508–517.
  • Sunday, E.A. & Magu, T.O. (2017) Determination of some metal contents in ashed and unashed snail shell powders. World News of Natural Sciences 7, 37–41.
  • Svihus, B., Juvik, E., Hetland, H. & Krogdahl, Å. (2004) Causes for improvement in nutritive value of broiler chicken diets with whole wheat instead of ground wheat. British Poultry Science 45, 55–60.
  • Tamminga, S. (2003) Pollution due to nutrient losses and its control in European animal production. Livestock Production Science 84, 101–111.
  • Waheed, M., Masood, S.B., Shehzad, A., Adzahan, N.M., Shabbir, M.A. & Suleria, H.A.R. (2019) Eggshell calcium: A cheap alternative to expensive supplements. Trends in Food Science & Technology 91, 219–230.
  • Zhao, M., Luo, J., Zhou, Q., Yuan, Y., Shi, B. & Zhu, T. (2021) Influence of dietary phosphorus on growth performance, phosphorus accumulation in tissue and energy metabolism of juvenile swimming crab (Portunus trituberculatus). Aquaculture Reports 20, 100654

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.