COMPARISON OF PROXIMATE AND FATTY ACID COMPOSITION OF SHELL OF MARINE EDIBLE SHRIMPS, HETEROCARPUS GIBBOSUS (BATE, 1888) AND ARISTEUS ALCOCKI (RAMADAN, 1938)

Autor: D. Vigneshpriya
Rok vydání: 2019
Předmět:
DOI: 10.5281/zenodo.2640749
Popis: The present study was carried out to assess the proximate and fatty acid compositions of two edible marine shrimp’s shell, Aristeus alcocki and Heterocarpus gibbosus collected from Mandapam coast, Tamil Nadu, India. The results of proximate composition showed the percentage of protein (3.12 mg/g), moisture (50.92 %), carbohydrate (1.29 mg/g), lipid (3.66 mg/g) and ash (19.56 %) contents were higher in shell of H. gibbosus compared to A. alcock (protein (2.14 mg/g), moisture (41.49 %), carbohydrate (1 mg/g), lipids (2.76 mg/g) and ash (16.10 %)). Likewise H. gibbosus contains fifteen fatty acids whereas A. alcocki contains twenty one fatty acids. The present study revealed that H. gibbosus and A. alcocki are having high saturated fatty acids and proximate composition which contribute to a good nutritional status.
{"references":["APHA, A. (2005). WEF, 2005. Standard Methods for the Examination of Water and Wastewater, 21, 258-259.","Bell, J.G., & Sargent, J.R. (2003). Arachidonic acid in aquaculture feeds: current status and future opportunities. Aquaculture, 218(1-4), 491-499.","Bhavan, P. (2009). Concentrations of total protein, lipid, carbohydrate, DNA and ATPase in tissues of the freshwater prawn Macrobrachium malcolmsonii. Fishing Chimes, 29, 44-46.","Bhavan, P.S., Yuvaraj, C., Leena, M., & Sangeetha, M. (2008). Concentrations of total protein, lipid and carbohydrate in juveniles and sub adults of the prawn Macrobrachium malcolmsonii collected from the Cauvery river. Indian Journal of Fisheries, 55(4), 323- 325.","Dinakaran, G., Soundarapandian, P., & Chandra, S.K. (2009). Proximate Composition of Edible Palaemonid Prawn Macrobrachium idae (Heller, 1862). Current Research Journal of Biological Sciences, 1(3), 78-82.","Dubois, M., Gilles, K.A., Hamilton, J.K., Rebers, P.A & Smith, F., (1956), Colorimetric method for determination of sugar and related substances. AnnalChem 28: 350.","El Shehawy, S.M., Gab-Alla, A.A., & Mutwally, H.M. (2016). Proximate and elemental composition of important fish species in Makkah central fish market, Saudi Arabia. Food and Nutrition Sciences, 7(06), 429.","Eswar, A., Kathirvel, K., Anbarasu, R., Ramamoorthy, K., Sankar, G., Suvitha, S., & Manikandarajan, T. (2014). Proximate composition and fatty acid analysis of puffer fish, Lagocephalus inermis (Temminck and Schlegel, 1850) and Lagocephalus lunaris (Bloch and Schneider, 1801) from Parangipettai, Southeast coast of India. International Letters of Natural Sciences, 12(1), 21-29.","Fanimo, A., Oduguwa, O., Onifade, A., & Olutunde, T. (2000). Protein quality of shrimp-waste meal. Bioresource Technology, 72(2), 185-188.","Folch, J., Lees, M., & Sloane Stanley, G. (1957). A simple method for the isolation and purification of total lipides from animal tissues. Journal of Biology and Chemistry, 226(1), 497-509.","Gokoglu, N., Yerlikaya, P., & Gokoglu, M. (2008). Trace elements in edible tissues of three shrimp species (Penaeus semisulcatus, Parapenaeus longirostris and Paleomon serratus). Journal of the Science of Food and Agriculture, 88(2), 175-178.","Gunasekera, R.M., Leelarasamee, K., & De Silva, S.S. (2002). Lipid and fatty acid digestibility of three oil types in the Australian shortfin eel, Anguilla australis. Aquaculture, 203, 335–347.","Heu, M.S., Kim, J.S., & Shahidi, F. (2003). Components and nutritional quality of shrimp processing byproducts. Food Chemistry, 82(2), 235-242.","Horrocks, L.A., & Yeo, Y.K. (1999). Health benefits of docosahexaenoic acid (DHA). Pharmacological Research, 40(3), 211-225.","Jabeen, F., & Chaudhry, A.S. (2011). Chemical compositions and fatty acid profiles of three freshwater fish species. Food Chemistry, 125(3), 991-996.","Karuppusamy,P.K., Sri Sakthi Priyardharshini, R., Santhanam, P., Ramamoorthy,N., Nevika, E., Anjalidevi, Catherine Banu, C., Nancy Lydia, S., Vigneshpriya, D., & Anumol Anto, (2016). Characterization of carotenoid extracts obtained from mogi velvet shrimp, Metapenaeopsis mogiensis (Rathbun, 1902) of Mandapam coast, Tamil Nadu, India.Chemical Science Reviwe and Letter, 5(20), 991- 996.","Krueger, A.O. (1968). Factor endowments and per capita income differences among countries. The Economic Journal, 78(311), 641-659.","Lowry, O. H., Rosebrough, N. J., Farr, A. L., & Randall, R. J. (1951). Protein measurement with the Folin phenol reagent. Journal of Biological Chemistry, 193, 265- 275.","Murphy, A. H., & Ehrendorfer, M. (1987). On the relationship between the accuracy and value of forecasts in the cost-loss ratio situation. Weather and Forecasting, 2(3), 243-251.","Nargis, N., & Hossain, M. (2006). Income dynamics and pathways out of rural poverty in Bangladesh, 1988- 2004. Agricultural Economics, 35, 425-435.","Okuzumi, M., & Fujii, T. (2000). Nutritional and functional properties of squid and cuttlefish. In 35th Anniversary Commemorative Publication, pp. 205-218.","Olagunju, A., Muhammad, A., Bello, S., Mohammed, A., Mohammed, H. A., & T Mahmoud, K. (2012). Nutrient Composition of Tilapia zilli, Hemi-synodontis membranacea, Clupea harengus and Scomber scombrus Consumed in Zaria. World Journal of Life Sciences and Medical Research, 2(1), 16.","Stancheva, M., Merdzhanova, A., Petrova, E., & Petrova, D. (2013). Heavy metals and proximate composition of Black Sea sprat (Sprattus sprattus) and goby (Neogobius melanostomus). Bulgarian Journal of Agricultural Science, 19(1), 35-41.","Tanuja, R. (1996). Some aspects of biology and utilization of the mantis shrimp Oratosquilla neppa from Cochin waters. Ph. D. Thesis, Cochin University of Science and technology, India.","Vigneshpriya, D. & Krishnaveni, N. (2016). Effect of garlic and onion incorporated feed on the growth and nutritional status on the fresh water fish Tilapia Oreochromis mossambicus (Peters, 1852). International Journal of Fisheries and Aquatic Studies, 4(5),253-257."]}
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