Replacement of fishmeal in cobia (Rachycentron canadum) diets using poultry by-product meal

I. Saadiah1, A. M. Abol-Munafi2, CS Utama
1Fisheries Department, Fisheries Research Institute, Pulau Pinang, Malaysia
2Institut Akuakultur Tropika, Universiti Malaysia Terengganu, Terengganu, Malaysia

Tóm tắt

Từ khóa


Tài liệu tham khảo

Anon (2007) Cobia. http://www.fishbase.org . Retrived at 15 Dec 2007

Anon (2008) Cobia. http://en.wikipedia.org/wiki/Cobia . Retrived at 25 Aug 2008

Association of Official Analytical Chemists International (AOAC International) (1997) Association of official analytical chemists international (AOAC International), official methods of analysis of AOAC international, 16th edn. AOAC International, Virginia

Briggs JC (1960) Fishes of worldwide(circumtropical) distribution. Copeia 3:171–180

Chang D (2003) Taiwan Cobia: another choice whitefish for discerning consumer. INFOFISH Int 5:29–31

Che Utama CM, Saadiah I (1999) Replacing fishmeal with poultry offal meal in diets for seabass, L. calcarifer. Program and abstracts of the first national symposium on aquaculture. 22–24 Nov. Berjaya Hotel, Penang, Malaysia

Chou R, Su M, Chen H (2001) Optimal dietary protein and lipid levels for juvenile cobia (Rachycentron canadum). Aquaculture 193:81–89

Chou RL, Her B, Su M, Hwang G, Wu Y, Chen H (2004) Substituting fish meal with soybean meal in diets of juvenile cobia Rachycentron canadum. Aquaculture 229:325–333

Craig SR, Schwarz MH, McLean E (2006) Juvenilae cobia(Rachycentron canadum) can utilize a wide range of protein and lipid levels without impacts on production characteristics. Aquaculture 261:384–391

Cruz-Suarez LE, Nieto-Lopez M, Guajardo-Barbosa C, Tapia-Salazar M, Scholz U, Ricque-Marie D (2007) Replacement of fish meal with poultry by-product meal in practical diets for Litopenaeus vannamei, and digestibility of the tested ingredients and diets. Aquaculture 272:466–476

Holt GJ, Faulk CK, Schwarz MH (2007) A review of the larviculture of cobia Rachycentron canadum, a warm water marine fish. Aquaculture 268:181–187

Hu M, Wang Y, Wang Q, Zhao M, Xiong B, Qian X, Zhao Y, Luo Z (2008) Replacement of fish meal by rendered animal protein ingredients with lysine and methionine supplementation to practical diets for gibel carp, Carassius auratus gibelio. Aquaculture 275:260–265

Jackson A (2007) Challenges and opportunities for the fishmeal and fish Oil industry. Feed Technol (update, 2007, January, 1–9)

Lunger AN, Craig SR, McLean E (2006) Replacement of fish meal in cobia (Rachycentron canadum) diets using a organically certified protein. Aquaculture 257:393–399

Lunger AN, McLean E, Craig SR (2007) The effects of organic protein supplementation upon growth, feed conversion and texture quality parameters of juvenile cobia (Rachycentron canadum). Aquaculture 264:342–352

Nengas I, Alexis MN, Davies SJ (1999) High inclusion levels of poultry meals and related byproducts in diets for gilthead seabream Sparus aurata L. Aquaculture 179:13–23

Rawles S, Riche M, Gaylord T, Webb J, Freeman D, Davis M (2006) Evaluation of poultry by product meal in commercial diets for hybrid striped bass (Morone chrysops ♀ × M. saxatilis♂) in recirculated tank production. Aquaculture 259:377–389

Shapawi R, Wing Keong N, Mustafa S (2007) Replacement of fish meal with poultry by-product meal in diets formulated for the humpback grouper, Cromileptes altivelis. Aquaculture 273:118–126

Shiau CY (2007) Biochemical composition and utization of cultured cobia (Rachycentron canadum). In: Liao IC, Leano EM (eds) Cobia aquaculture: research, development and commercial production. Asian Fisheries Society, World Aquaculture Society, The Fisheries Society of Taiwan and National Taiwan Ocean University, Taiwan, pp 147–156

Soltan M (2009) Effect of dietary fish meal replacement by poultry by-product meal with different grain source and enzymes supplementation on performance, feces recovery, body composition and nutrient balance of Nile Tilapia. Pak J Nut 8(4):395–407

Steffens W (1994) Replacing fish meal with poultry by-product meal in diets for rainbow trout, Oncorhynchus mykiss. Aquaculture 124:27–34

Subhadra B, Lochmann R, Rawles S, Chen R (2006) Effect of fish meal replacement with poultry by-product meal on the growth, tissue composition and hematological parameters of largemouth bass (Micropterus salmoides) fed diets containing different lipids. Aquaculture 260:221–231

Sun L, Haoru C, Liangmin H, Zhoading W, Yan Y (2006) Growth and Energy budget of juvenile cobia (Rachycentron canadum) relative to ration. Aquaculture 257:214–220

Tacon AG, Metian M (2008) Global overview on the use of fish meal and fish oil in industrially compounded aquafeeds: trends and future prospects. Aquaculture 285:146–158

Takagi ST, Hosokawa H, Shimeno S, Ukawa M (2000) Utilization of poultry by-product meal in a diet for red sea bream Pagrus major. Nippon Suisan Gakkaishi 66:428–438

Tibbetts SM, Milley JE, Lall SP (2006) Apparent protein and energy digestibility of common and alternative feed ingredients by Atlantic cod, Gadus morhua (Linnaeus, 1758). Aquaculture 261:1314–1327

Tidwell JH, Coyle SD, Bright LA, Yasharian D (2005) Evaluation of plant and animal source proteins for replacement of fish meal in practical diets for the largemouth bass, Micropterus salmoides. J World Aquac Soc 36(4):454–463

Usman R, Palingi NN, Ahmad T (2007) Utilization of local feed ingredients in tiger grouper grow out moist diets. Aquac Asia Mag XII(2):33–36

Wang J-T, Liu Y-J, Tian L-X, Mai K-S, Du Z-Y, Wang Y, Yang H-J (2005) Effect of dietary lipid level on growth performance, lipid deposition, hepatic lipogenesis in juvenile cobia (Rachycentron canadum). Aquaculture 249:439–447

Webster CD, Thompson KR, Morgan AM, Grisby EJ, Gannam AL (2000) Use of hempseed meal, poultry by-product meal and canola meal in practical diets without fish meal for sunshine bass (Morone chrysops X M. saxatilis). Aquaculture 188:299–309

Yu Y (2006) Use of poultry by-product meal and meat and bone meal in aquafeeds. In: Ng WK, Ng CK (eds) Asian aquafeeds: current developments in the aquaculture feed industry, technical proceedings of the seminar on Asian aquafeeds, Kuala Lumpur, 12–13 April 2005. Malaysian Fisheries Society Occasional Publication, No. 13, pp 19–39

Zhou Q-C, Tan B-P, Mai K-S, Liu Y-J (2004) Apparent digestibility of selected feed ingredients for juvenile cobia Rachycentron canadum. Aquaculture 241:441–451

Zhou Q-C, Wu Z-H, Tan B-P, Chi S-Y, Yang Q-H (2006) Optimal dietary methionine requirement or juvenile cobia(Rachycentron canadum). Aquaculture 258:551–557

Zhou QC, Wu ZH, Chi SY, Yang QH (2007) Dietary lysine requirement of juvenile cobia (Rachycentron canadum). Aquaculture 273:634–640