Abdel-Azeem F., El-Bordeny N.E., Khorshed M.M. (2007). Efficacy of biogen in improving the utilization of dried poultry manure in rabbit diets. Egypt. J. Rabbit Sci., 17: 119–138.
Adeniji A.A., Rumak S., Oluwafemi R.A. (2015). Effects of replacing groundnut cake with rumen content supplemented with or without enzyme in the diet of weaner rabbits. Lipids Health Dis., 14: 1–6.10.1186/s12944-015-0158-3
Aguilera C.M., Ramírez-Tortosa M.C., Mesa M.D., Ramírez-Tortosa C.L., Gil A. (2002). Sunflower, virgin-olive and fish oils differentially affect the progression of aortic lesions in rabbits with experimental atherosclerosis. Atherosclerosis, 162: 335–344.10.1016/S0021-9150(01)00737-7
Ahlawat S.S., Sharma D.P., Panda P.C. (2001). Effect of feeding poultry viscera meal on carcass traits of broiler rabbits. Indian J. Anim. Res., 35: 141–143.
Ahlawat S.S., Khanna N., Sharma D.P., Panda P.C. (2003). Effect of feeding poultry viscera meal on wool traits of Angora rabbits. Indian J. Anim. Res., 37: 152–156.
Akuzawa M., Matsunuma N., Suzuki Y. (1978). Hand-rearing of rabbits using rabbit milk and commercial milk powder, Teo Milk®. Exp. Anim., 27: 427–429.10.1538/expanim1978.27.4_427
Alagón G., Arce O.N., Martínez-Paredes E., Ródenas L., Cervera C., Pascual J.J. (2014). Effect of inclusion of distillers dried grains and solubles from barley, wheat and corn in isonutritive diets on the performance and caecal environment of growing rabbits. World Rabbit Sci., 22: 195–205.10.4995/wrs.2014.1458
Al-Dobaib S.N. (2010). Effect of diets on growth, digestibility, carcass and meat quality characteristics of four rabbit breeds. Saudi J. Biol. Sci., 17: 83–93.10.1016/j.sjbs.2009.12.012
Alemi H., Asghari A., Abedi G., Akbarzadeh A., Mortazavi P. (2019). The effects of nanocomposite containing ostrich eggshell on calvaria bone formation in rabbit: radiographic and hematological survey. Cresc. J. Med. Biol. Sci., 6: 18–23.
Al-Harthi M.A., El-Deek A.A., Salah El-Din M., Alabdeen A.A. (2010). A nutritional evaluation of hatchery by-product in the diets for laying hens. Egypt. Poult. Sci., 30: 339–351.
Alhussary B.N.,Taqa Gh.A., Taqa A.A. (2020). Histological effects of adding gold to (eggshell and seashell) nanohydroxyapitite on rabbits bone healing. Al-Rafidain Dent. J., 20: 46–54.10.33899/rden.2020.164522
Anashar A.A., Daoud A. (2019). Evaluation of the activity of hen eggshell graft in experimentally induced mandibular defects in rabbits: pilot study. Int. J. Res. Med. Sci., 7: 1133–1135.10.18203/2320-6012.ijrms20191312
Aribi M., Smahi I., Taïbi A. (2010). Effects of casein and adapted milk formula on the proliferation of lymphocytes, mid-cells and granulocytes and on circulting lipids. Pediatr. Res., 68: 355.10.1203/00006450-201011001-00698
Auerbach B.J., Krause B.R., Bisgaier C.L., Newton R.S. (1995). Comparative effects of HMGCoA reductase inhibitors on apo B production in the casein-fed rabbit: atorvastatin versus lovastatin. Atherosclerosis, 115: 173–180.10.1016/0021-9150(94)05508-G
Auxilla M.T., Moseoro G., Bergolio G., Terramoccia S. (1982). Use of poultry litter for feeding rabbits. I. Growth trial. Nutr. Abstracts rev. Series B., 52: 234.
Bansal G., Singh U., Bansal M.P. (2002). Changes in heat shock protein 70 localization and its content in rabbit aorta at various stages of experimental atherosclerosis. Cardiovasc. 11: 97–103.10.1016/S1054-8807(01)00100-4
Batterham E.S., Lowe R.F., Darnell R.E. (1986). Availability of lysine in meat meal, meat and bone meal and blood meal as determined by the slope-ratio assay with growing pigs, rats and chicks and by chemical techniques. Br. J. Nutr., 55: 427–440.10.1079/BJN19860049
Bergeron N., Jacques H. (1990). Influence of dietary carbohydrates on cholesterol metabolism in casein-fed rabbits. Nutr. Res., 10: 1455–1462.10.1016/S0271-5317(05)80137-X
Beynen A.C., West C.E. (1981). The distribution of cholesterol between lipoprotein fractions of serum from rabbits fed semipurified diets containing casein and either coconut oil or corn oil. J Anim. Physiol. Anim. Nutr., 46: 233–239.10.1111/j.1439-0396.1981.tb01358.x
Beynen A.C., den Engelsman G., Scholz K.E., West C.E. (1983a). Casein-induced hypercholesterolemia in rabbits: distribution of cholesterol, triglycerides and phospholipids between serum and liver. Ann. Nutr. Metab., 27: 117–124.10.1159/0001766306682643
Beynen A.C., Winnubst E.N.W., West C.E. (1983b). The effect of replacement of dietary soybean protein by casein on the fecal excretion of neutral steroids in rabbits. J Anim. Physiol. Anim. Nutr., 49: 43–49.10.1111/j.1439-0396.1983.tb00782.x6681922
Biobaku W.O., Bamgbose A.M., Achike C.U. (2003). Utilisation of different protein sources for growing rabbits. Pertanika J. Tropic. Agric. Sci., 26: 73–77.
Canzi E., Zanchi R., Camaschella P., Cresci A., Greppi G.F., Orpianesi C., Serrantoni M., Ferrari A. (2000). Modulation by lactic-acid bacteria of the intestinal ecosystem and plasma cholesterol in rabbits fed a casein diet. Nutr. Res., 20: 1329–1340.10.1016/S0271-5317(00)00210-4
Caroppo S., Toppino P.M., Masoero G., Auxilia M.T. (1980). Production of a spray-dried lactic acid bacteria feed additive, its use in a whey-supplemented diet for rabbits, and the effects of its entry into the intestinal tract. Ann. Microb. Enzimol., 30: 171–181.
Carregal R.D., Takahashi R. (1987). Use of silkworm (Bombyx mori L.
) chrysalis meal as a replacement for soyabean meal in the feeding of growing rabbits. Rev. Brasil. Zootec., 16: 158–162.
Casado C., Moya V.J., Fernández C., Pascual J.J., Blas E., Cervera C. (2010). Diet digestibility in growing rabbits: effect of origin and oxidation level of dietary fat and vitamin E supplementation. World Rabbit Sci., 18: 57–63.10.4995/wrs.2010.18.08
Casado C., Moya V.J., Pascual J.J., Blas E., Cervera C. (2013). Dietary fatty acid profile: effects on caecal fermentation and performance of young and fattening rabbits. World Rabbit Sci., 21: 235–242.10.4995/wrs.2013.1437
Castellano C.A., Audet I., Laforest J.P., Matte J.J. (2012). Fish oils, omega-3 fatty acids and male fertility. In: Fish Oil: Production, Consumption health benefits, Chapter XII. Nova Science Publishers, pp. 283–300.
Castillo-Rodríguez S.P., Aguilar-Reyes J.M., Lucero-Magaña F.A., Martínez-González J.C. (2007). Sustitución de alimento comercial por excretas en la dieta de conejos en crecimiento. Substitution of commercial feed for manure in the diet of rabbits in growth. Avan. Invest. Agropec., 11: 41–48.
Chao Y.S., Yamin T.T., Alberts A.W. (1982). Effects of cholestyramine on low density lipoprotein binding sites on liver membranes from rabbits with endogenous hypercholesterolemia induced by a wheat starch-casein diet. J. Biol. Chem., 257: 3623–3627.10.1016/S0021-9258(18)34825-7
Chao Y.S., Kroon P.A., Yamin T.T., Thompson G.M., Alberts A.W. (1983). Regulation of hepatic receptor-dependent degradation of LDL by mevinolin in rabbits with hypercholesterolemia induced by a wheat starch-casein diet. Biochim. Biophys. Acta., 754: 134–141.10.1016/0005-2760(83)90154-6
Clauss M., Lischke A., Botha H., Hatt J.M. (2016). Carcass consumption by domestic rabbits (Oryctolagus cuniculus). Eur. J. Wildl. Res., 62: 143–145.10.1007/s10344-015-0980-y
Commission Regulation (EU) 2021/1372 of 17 August 2021 amending Annex IV to Regulation (EC) No. 999/2001 of the European Parliament and of the Council as regards the prohibition to feed non-ruminant farmed animals, other than fur animals, with protein derived from animals (Text with EEA relevance).
Cullere M., Singh Y., Gerencsér Z., Matics Z., Cappellozza S., Zotte A.D. (2021). Silkworm (Bombyx mori L.
) oil in growing rabbit nutrition: effects on meat physicochemical traits, sensory profile and shelf-life. J. Insects as Food Feed, 8:733–741.10.3920/JIFF2021.0084
Dalle Zotte A., Cullerea M., Martins C., Alves S.P., Freire J.P.B., Falcão-e-Cunha L., Bessa R.J.B. (2018). Incorporation of Black Soldier Fly (Hermetia illucens L.
) larvae fat or extruded linseed in diets of growing rabbits and their effects on meat quality traits including detailed fatty acid composition. Meat Sci., 146: 50–58.10.1016/j.meatsci.2018.08.002
Daszkiewicz T., Gugołek A., Janiszewski P., Kubiak D., Czoik M. (2012). The effect of intensive and extensive production systems on carcass quality in New Zealand White rabbits. World Rabbit Sci., 20: 25–33.10.4995/wrs.2012.945
Davin R., Kwakernaak C., Dersjant-Li Y. (2020). Effect of two commercial limestone sources with different solubility on the efficacy of two phytases in 0–21 d old broilers. J. Appl. Anim. Nutr., 8: 61–73.10.3920/JAAN2020.0003
Donadelli R.A., Jones C.K., Beyer R.S. (2019). The amino acid composition and protein quality of various egg, poultry meal by-products, and vegetable proteins used in the production of dog and cat diets. Poultry Sci., 98: 1371–1378.10.3382/ps/pey462
Durmus E., Celik I., Ozturk A., Ozkan Y., Aydin M.F. (2003). Evaluation of the potential beneficial effects of ostrich eggshell combined with eggshell membranes in healing of cranial defects in rabbits. J. Int. Med. Res., 31: 223–230.10.1177/147323000303100309
Durmus E., Celik I., Aydin M.F., Yildirim G., Sur E. (2008). Evaluation of the biocompatibility and osteoproductive activity of ostrich eggshell powder in experimentally induced calvarial defects in rabbits. J. Biomed. Mater. Res. B Appl. Biomater., 86: 82–89.10.1002/jbm.b.30990
Duwa H., Saleh B., Igwebuike J.U. (2014). The replacement of fish meal with maggot meal on the performance, carcass characteristic, hematological and serum biochemical indices of growing rabbits. Glob. J. Bio-Sci. Biotech., 3: 215–220.
El-Moghazy M., Zedan N.S., El-Atrsh A.M., El-Gogary M., Tousson E. (2014). The possible effect of diets containing fish oil (omega-3) on hematological, biochemical and histopathogical alterations of rabbit liver and kidney. Biomed. Prevent. Nutr., 4: 371–377.10.1016/j.bionut.2014.03.005
Elrufai S., Mohamed H.E., Barriand M.E.S., Elsammani F. (2015). The effects of fat sources on lipid profile in New Zealand rabbits. Inter. J. Agric. Sci. Res., 4: 035–038.
Falcão-E-Cunha L., Bengla Freire J.P., Conçalves A. (1996). Effect of fat level and fiber nature on performances, digestibility, nitrogen balance and digestive organs in growing rabbits. Proc. VI World Rabbit Congress, Toulouse, France, 9–12.07.1996, 1:157–162.
Fanimo A.O., Oduguwa O.O., Adesehinwa A.O.K., Akinsola A.O., Ojo T.A. (2002). Comparative utilization of five animal protein concentrates by domestic rabbits. ASSET - Series A: Agric. & Environ., 2: 81–89.
Faulconnier Y., Roy A., Ferlay A., Chardigny J.-M., Durand D., Lorenz S., Gruffat D., Chilliard Y. (2006). Effect of dietary supply of butters rich either in trans-10-18 : 1 or in trans-11-18 : 1 plus cis-9, trans-11-18 : 2 on rabbit adipose tissue and liver lipogenic activities. British J. Nutr., 96: 461–468.
Fekete S., Hullár I., Fébel H. (1990). Rabbit digestion and blood composition after fat or oil addition to the feed. J. Appl. Rabbit Res., 12: 233–238.
Fernandez C., Cobos A., Fraga M.J. (1994). The effect of fat inclusion on diet digestibility in growing rabbits. J. Anim. Sci., 72: 1508–1515.10.2527/1994.7261508x
Finke M.D. (2002). Complete nutrient composition of commercially raised invertebrates used as food for insectivores. Zoo Biol., 21: 269–285.10.1002/zoo.10031
Fotso J.M., Fomunyam R.T., Ndoping B.N. (2000). Protein and energy sources for rabbit diets in Cameroon. 1 - protein sources. World Rabbit Sci., 8: 57–60.10.4995/wrs.2000.418
Fraga M.J., Lorente M., Carabaño R.M., de Blas J.C. (1989). Effect of diet and of remating interval on milk production and milk composition of the doe rabbit. Anim. Sci, 48: 459–466.10.1017/S0003356100040460
Galan G.L., De Souza Franco M.L.R., De Souza E.D., Scapinello C., Gasparino E., Visentainer J.V., Del Vesco A.P. (2013). Meal of Nile Tilapia carcass in diets for rabbits: chemical composition and bone resistance. Ciênc. Agrár., Londrina, 34: 2473–2484.10.5433/1679-0359.2013v34n5p2473
García-Quirós A., Arnau-Bonachera A., Penadés M., Cervera C., Martínez-Paredes E., Ródenas L., Selva L., Vianaa D., M.Corpa J., Pascual J.J. (2014). A robust rabbit line increases leucocyte counts at weaning and reduces mortality by digestive disorder during fattening. Vet. Immunol. Immunopath., 161: 123–131.10.1016/j.vetimm.2014.07.005
Gasco L., Dabbou S., Meneguz M., Renna M., Brugiapaglia A., Dama A., Bressan E., Schiavone A., Trocino A., Gratta F., Birolo M., Xiccato G., Zoccarato I., Gai F. (2017). Partial or total substitution of soybean oil by Tenebrio molitor oil or Hermetia illucens fat in rabbit diets. Preliminary results: effects on growth and slaughtering performances. Proc. III Insecta Conference, Berlin, Germany, 7-8.09.2017, p. 60–62.
Gasco L., Biasato I., Dabbou S., Schiavone A., Gai F. (2019a). Animals fed insect-based diets: state-of-the-art on digestibility, performance and product quality. Animals, 9: 170.10.3390/ani9040170652361930995783
Gasco L., Dabbou S., Trocino A., Xiccato G., Capucchio M.T., Biasato I., Dezzutto D., Birolo M., Meneguz M., Schiavone A., Gai F. (2019b). Effect of dietary supplementation with insect fats on growth performance, digestive efficiency and health of rabbits. J. Anim. Sci. Biotechnol., 10: 1–9.10.1186/s40104-018-0309-2633783730675348
Gasco L., Dabbou S., Gai F., Brugiapaglia A., Schiavone A., Birolo M., Xiccato G., Trocino, A. (2019c). Quality and consumer acceptance of meat from rabbits fed diets in which soybean oil is replaced with black soldier fly and yellow mealworm fats. Animals, 9: 629.10.3390/ani9090629677049031470627
Gasmi-Boubaker A., Abdouli H., El Hichi M., Faiza K., Tayachi L. (2007). Feeding rapeseed meal to rabbits: digestibility, performance and carcass characteristics. Asian J. Anim. Vet. Adv., 2: 38–41.10.3923/ajava.2007.38.41
Gillis A.M., Keashly R., Watson P.A., Mathison H.J., Parsons H.G. (1992). Influence of dietary fat on the pharmacodynamics of propafenone in isolated, perfused rabbit hearts. Circulation, 85: 1501–1509.10.1161/01.CIR.85.4.1501
Grobner M.A., Harris D.J., Cheeke P.R., Patton N.M. (1982). Effect of dietary buffers and zeolite on growth and mortality of weanling rabbits. Proc. Annual Meeting. American Society for Animal Science Western Section, USA, 33: 340–343.
Gugołek A., Lorek M.O., Kowalska D., Janiszewski P., Daszkiewicz T. (2008). Wpływ systemu utrzymania i żywienia na wyniki produkcyjne i stopień zarażenia kokcydiami królików białych nowozelandzkich. Rocz. Nauk. Polskiego Tow. Zoot., 4: 39–44.
Gugołek A., Juśkiewicz J., Wyczling P., Kowalska D., Strychalski J., Konstantynowicz M., Zwoliński C. (2015). Productivity results and physiological response of the gastrointestinal tract of rabbits fed diets containing rapeseed cake and wheat distillers dried grains with solubles. Anim. Prod. Sci., 55: 777–785.10.1071/AN14206
Gugołek A., Juśkiewicz J., Strychalski J., Zwoliński C., Żary-Sikorska E., Konstantynowicz M. (2017). The effects of rapeseed meal and legume seeds as substitutes for soybean meal on productivity and gastrointestinal function in rabbits. J. Archiv. Anim. Nutr., 71: 311–326.10.1080/1745039X.2017.1322796
Gugołek A., Strychalski J., Kowalska D. (2019). Growth performance and meat composition of rabbits fed diets supplemented with silkworm pupae meal. Span. J. Agric. Res., 17: 1–9, e0607.10.5424/sjar/2019173-14882
Gugołek A., Kowalska D., Strychalski J., Ognik K., Juśkiewicz J. (2021). The effect of dietary supplementation with silkworm pupae meal on gastrointestinal function, nitrogen retention and blood biochemical parameters in rabbits. BMC Vet. Res., 17: 204.10.1186/s12917-021-02906-w
Handa M.C., Sapra K.L., Shingari B.K. (1996). Effect of feeding extruded hatchery waste on the performance of Soviet Chinchilla rabbits. World Rabbit Sci., 4: 89–92.10.4995/wrs.1996.277
Hassan A., Gibril S., Sabahelkhier M. (2014). Effect of different concentration of acid whey in drinking water on rabbit performance. Int. J. Adv. Res., 2: 996–999.
Hendriks W.H., Butts C.A., Thomas D.V., James K.A.C., Morel P.C.A., Verstegen M.W.A. (2002). Nutritional quality and variation of meat and bone meal. Asian-Austral. J. Anim. Sci., 15: 1507–1516.10.5713/ajas.2002.1507
Hernández P., Pla M., Oliver M.A., Blasco A. (2000). Relationships between meat quality measurements in rabbits fed with three diets of different fat type and content. Meat Sci., 55: 379–384.10.1016/S0309-1740(99)00163-1
Ivanova Z., Bjørndal B., Grigorova N., Roussenov A., Vachkova E., Berge K., Burri L., Berge R., Stanilova S., Milanova A., Penchev G., Vik R., Petrov V., Mircheva Georgieva T., Bivolraski B., Penchev Georgiev I. (2015). Effect of fish and krill oil supplementation on glucose tolerance in rabbits with experimentally induced obesity. Eur. J. Nutr., 54: 1055–1067.10.1007/s00394-014-0782-0
Iyeghe-Erakpotobor G.T. (2007). Effect of concentrate and forage type on performance and digestibility of growing rabbits under sub-humid tropical conditions. Asian J. Anim. Vet. Adv., 2: 125–132.10.3923/ajava.2007.125.132
Jiang L. (2020). Commercialization of the gene-edited crop and morality: challenges from the liberal patent law and the strict GMO law in the EU. New Gen. Soc., 39: 191–218.10.1080/14636778.2019.1686968
Jezierski T., Konecka A.M. (1994). Effect of feeding egg yolk on total plasma cholesterol and atherosclerosis in young rabbits. J. Anim. Feed Sci., 3: 317–324.10.22358/jafs/69845/1994
Kang B.P.S., Bansal M.P., Mehta U. (2000). Hyperlipidemia and Type I 5′-monodeiodinase activity: Regulation by selenium supplementation in rabbits. Biol. Trace Element Res., 77: 231–239.10.1385/BTER:77:3:231
Karikari P., Darkoh G., Deku G. (2011). Evaluation of millet residue meal based diets as feed for the domestic rabbit (Oryctolagus cuniculus). Res. Opin. Anim. Vet. Sci., 1: 144–149.
Khosla P., Samman S., Carroll K.K., Huff M.W. (1989). Turnover of 125I-VLDL and 131ILDL apolipoprotein B in rabbits fed diets containing casein or soy protein. Biochim. Biophys. Acta (BBA)-Lipids and Lipid Metab., 1002: 157–163.10.1016/0005-2760(89)90282-8
Kishawy A.T.Y., Amer S.A., Osman A., Elsayed S.A.M., Abd El-Hack M.E., Swelum A.A., Ba-Awadh H., Saadeldin I.M. (2018). Impacts of supplementing growing rabbit diets with whey powder and citric acid on growth performance, nutrient digestibility, meat and bone analysis, and gut health. AMB Express 8: 86.10.1186/s13568-018-0617-0
Konecka A.M., Jezierski T., Wnuk A. (1996). Effect of feeding cholesterol-enriched diet on plasma and tissue cholesterol and atherosclerosis in rabbits. J. Anim. Feed Sci., 5:163–173.10.22358/jafs/69597/1996
Korver D.R., Klasing K.C. (1997). Dietary fish oil alters specific and inflammatory responses in chicks. J. Nutr., 127: 2039–2046.10.1093/jn/127.10.2039
Kowalska D., Bielański P., Chełmińska A. (2011). Effect of linseed and fish oil supplements in feed on fatty acid profile and intramuscular fat oxidation in rabbits (in Polish). Żywn. Nauka. Technologia. Jakość, 2: 148–159.10.15193/zntj/2011/75/148-159
Kowalska D., Gugołek A., Strychalski J. (2020). Evaluation of slaughter parameters and meat quality of rabbits fed diets with silkworm pupae and mealworm larvae meals. Ann. Anim. Sci., 20: 551–564.10.2478/aoas-2019-0080
Kowalska D., Strychalski J., Gugolek A. (2021). The effect of silkworm pupae and mealworm larvae meals as dietary protein components on performance indicators in rabbits. Rev. Mex. Cienc. Pecuar., 12: 151–162.
Kritchevsky D., Tepper S.A., Weber M.M., Klurfeld D.M. (1988). Influence of soy protein or casein on pre-established atherosclerosis in rabbits. Artery, 15: 163–169.
Kritchevsky D., Tepper S.A., Kuksis A., Eghtedary K., Klurfeld D.M. (1998). Cholesterol vehicle in experimental atherosclerosis. 21. Native and randomized lard and tallow. J. Nutr. Biochem., 9: 582–585.10.1016/S0955-2863(98)00053-9
Kuyvenhoven M., Roszkowski W., West C., Hoogenboom,R., Vos R., Beynen A., Van Der Meer R. (1989). Digestibility of casein, formaldehyde-treated casein and soya-bean protein in relation to their effects on serum cholesterol in rabbits. British J. Nutr., 62: 331–342.10.1079/BJN19890034
Landete-Castillejos T., Currey J.D., Estevez J.A., Gaspar-López E., Garcia A., Gallego L. (2007). Influence of physiological effort of growth and chemical composition on antler bone mechanical properties. Bone, 41: 794–803.10.1016/j.bone.2007.07.013
Lebas F. (2004). Reflections on rabbit nutrition with a special emphasis on feed ingredients utilization. Proc. VIII World Rabbit Congress, Puebla, Mexico, 7-10.09.2004, p. 686–736.
Lee K.-J., Powell M.S., Barrows F.T., Smiley S., Bechtel P., Hardy R.W. (2010). Evaluation of supplemental fish bone meal made from Alaska seafood processing byproducts and dicalcium phosphate in plant protein based diets for rainbow trout (Oncorhynchus mykiss). Aquaculture, 302: 248–255.10.1016/j.aquaculture.2010.02.034
Liang S.N., Xu K., Zhong H.S. (2015). Establishment of rabbit abdominal aortic atherosclerosis model by pancreatic elastase infiltration associated with high fat diet. Acta Cardiol. Sin., 31: 406–413.
Lin D.S., Anderson G.J., Connor W.E. (1991). High levels of the (n-6) fatty acid 4,7,10,13,16-docosapentaenoate in the retinas of rabbits are reduced by feeding dietary fish oil from birth to adult life. J. Nutr., 121: 1924–1931.10.1093/jn/121.12.1924
Lounaouci-Ouyed G., Berchiche M.G., Gidenne T. (2014). Effects of substitution of soybean meal-alfalfa-maize by a combination of field bean or pea with hard wheat bran on digestion and growth performance in rabbits in Algeria. World Rabbit Sci., 22: 137–146.10.4995/wrs.2014.1487
Lovati M.R., West C.E., Sirtori C.R., Beynen A.C. (1990). Dietary animal proteins and cholesterol metabolism in rabbits. British J. Nutr. 64: 473–485.10.1079/BJN19900047
Lyu J.M., Cai Z.W., Cai Y.Q., Xu J.Q., Zhu K.Y. (2013). Effects of whey powder on growth performance, antioxidant and immune functions of weanling laboratory rabbits. Chinese J. Anim. Nutr., 25: 2951–2957.
Majeed S., Qudsieh R., Edens F.W., Brake J. (2020). Limestone particle size, calcium and phosphorus levels, and phytase effects on live performance and nutrients digestibility of broilers. Poult. Sci., 99: 1502–1514.10.1016/j.psj.2019.11.009
Martin G.R., Twigg L.E., Zampichelli L. (2007). Seasonal changes in the diet of the European rabbit (Oryctolagus cuniculus) from three different Mediterranean habitats in southwestern Australia. Wildl. Res., 34: 25–42.10.1071/WR06044
Martins H., Milne J.A., Rego F. (2002). Seasonal and spatial variation in the diet of the wild rabbit (Oryctolagus cuniculus) in Portugal. J. Zool., 258: 395–404.10.1017/S0952836902001541
Martins C., Cullere M., Dalle Zotte A., Cardoso C., Alves S.P., Branquinho de Bessa R.J., Freire J.P.B., Falcão-e-Cunha L. (2018). Incorporation of two levels of Black Soldier Fly (Hermetia illucens L.
) larvae fat or extruded linseed in diets of growing rabbits: Effects on growth performance and diet digestibility. Czech J. Anim. Sci., 63: 356–362.10.17221/22/2018-CJAS
Masoero G., Auxilia M.T., Toppino P.M. (1980a). The use of lactic acid bacteria in rabbit diets containing dried whey. Annali dell’Istituto Sperimentale per la Zootecnia 13: 37–51.
Masoero G., Auxilia M.T., Caroppo S., Toppino P. (1980b). Lactic bacteria in feeding growing rabbits with supplementation of dried whey Streptococcus faecium. Annali dell’Istituto Sperimentale per la Zootecnia, 3: 37–51.
Mbahi T.F., Adi A., Yakubu B., Wafar R.J. (2018). Effect of yeast treated bovine blood-rumen content mixture on performance and blood profile of weaner rabbits. Nigerian J. Anim. Prod., 45: 106–113.10.51791/njap.v45i2.485
Mbanya J.N., Ndoping B.N., Mafeni J.M., Fomunyam D.W. (2005). The effect of different protein sources and their combination on the performance of growing rabbits in tropical conditions. Livest. Res. Rural Dev., 17: 32.
Mehta U., Kang B.P.S., Kukreja R.S., Bansal M.P. (2002). Ultrastructural examination of rabbit aortic wall following high-fat diet feeding and selenium supplementation: A transmission electron microscopy study. J. Appl. Toxic., 22: 405–413.10.1002/jat.877
Mohammed G., Igwebuike J.U., Kwari I.D. (2005). Performance of growing rabbits fed graded levels of goat rumen content. Glob. J. Pure Appl. Sci., 11: 39–43.10.4314/gjpas.v11i1.16458
Mohammed G., Igwebuike J.U., Ubosi C.O., Alade N.K. (2008). Comparative study of the nutrient composition, amino acid profile and microbial assay of fresh and dried cattle, camel, sheep and goat rumen content. Proc. XIII Annual Conference of Animal Science Association of Nigeria (ASAN) ABU Zaria Sept. 15th -19th, 2008, p. 518–520.
Mohammed G., Igwebuike J.U., Alade N.K. (2011a). Performance of growing rabbits fed graded levels of goat blood-rumen content meal. Int. J. Sci. Nat., 2: 38–41.10.5251/abjna.2011.2.4.720.723
Mohammed G., Igwebuike J.U., Alade N.K. (2011b). Performance of growing rabbits fed graded levels of bovine blood-rumen content mixture. Agric. Biol. J. N. Am., 2: 720–723.10.5251/abjna.2011.2.4.720.723
Mohammed G., Igwebuike J.U., Alade N.K. (2012). Haematological and serum biochemical indices of growing rabbits fed bovine blood rumen – content mixture (BBRCM). Agric. Biol. J. N. Am., 2: 724–728.10.5251/abjna.2011.2.4.724.728
Mokhtar S., Radwan M., Essmat M., Omar M., Aly M. (2002). The use of dried pigeon dropping in rabbit nutrition. CIHEAM, Option Mediterraneenes, 169–175.
Nengas I., Alexis M.N., Davies S.J. (1999). High inclusion levels of poultry meals and related byproducts in diets for gilthead seabream Sparus aurata L. Aquaculture, 179: 13–23.10.1016/S0044-8486(99)00148-9
Newburght L.H., Squier T.L. (1920). High protein diets and arteriosclerosis in rabbits – A preliminary report. Arch. Int. Med., 26: 38–40.10.1001/archinte.1920.00100010041002
Newburght L.H., Clarkson S. (1922). Production of arteriosclerosis in rabbits by diets rich in animal protein. J. Am. Med. Assoc., 79: 1006–1108.10.1001/jama.1922.02640140018007
Newburght L.H., Clarkson S. (1923). The production of arteriosclerosis in rabbits by feeding diets rich in meat. Arch. Int. Med., 31: 653–676.10.1001/archinte.1923.00110170033003
Nijdam D., Rood T., Westhoek H. (2012). The price of protein: review of land use and carbon footprints from life cycle assessments of animal food products and their substitutes. Food Policy, 37: 760–770.10.1016/j.foodpol.2012.08.002
Njidda A.A., Isidahomen C.E. (2010). Haematology, blood chemistry and carcass characteristics of growing rabbits fed grasshopper meal as a substitute for fish meal. Pak. Vet. J., 30: 7–12.
Nnenna O.P., Kanayo O. (2013). Impact of feeding spice-treated bovine blood rumen content mixtures on productive performance and economics of production of weaned rabbits. Int. J. Agric. Innovat. Res., 1: 195–199.
Nodu M.B., Okpeku M., Nengi D.V. Suofe P. (2015). Effects of feeding graded levels of costus afer on growth, organ weight and haematological indices of growing rabbits. J. Agric. Vet. Sci., 8: 23–27.
Nogalska A., Chen L., Sienkiewicz S., Nogalski Z. (2014). Meat and bone meal as nitrogen and phosphorus supplier to cereals and oilseed rape. Agric. Food Sci., 23: 19–27.10.23986/afsci.8841
Ogunsipe M.H. (2011). Effects of feeding layer’s litter on performance and microbial diversity of the faeces of growing rabbits. J. Anim. Prod. Adv., 7: 206–213.
Ogunsipe M.H. (2014). Effect of poultry litter with or without enzyme supplementation on the growth performance, nutrient digestibility and economy of rabbit production. Int. J. Livest. Prod., 5: 23–29.10.5897/IJLP12.017
Ojebiyi O.O., Farinu G.O., Babatunde G.M., Morohunfolu O.O. (2006). Effect of varying levels of sun-dried cassava peel-blood meal mixtures (3:2) on growth performance and organ characteristics of weaner rabbits. J. Anim. Vet. Adv., 5: 886–890.
Ojebiyi O.O., Oladunjoye I.O., Rafiu T.A., Shittu M.D., Ajayi O. (2014). Synergistic effects of hatchery by-products and cassava peel meal mixtures on the performance of crossbred growing rabbits. J. Anim. Feed Res., 4: 91–96.
Ojiako O.A., Ujowundu C.O., Alisi C.S., Igwe C.U., Ogbuji C.A. (2018). South Eastern Nigerian seafood diets have desirable effects on biochemical indices of experimental rabbits. Pak. J. Nutr., 17: 421–426.10.3923/pjn.2018.421.426
Oladunjoye I.O., Ojo A.J., Jamiu B.A. (2014). Evaluation of baobab seed meal as feed for growing rabbits. Int. J. Current Microbiol. Appl. Sci., 3: 971–977.
Oluwafemi R.A., Iliyasu A. (2016). Effects of graded levels of rumen digesta based diets with or without enzyme supplementation on the blood chemistry of weaner rabbits. Int. J. Vet. Sci. Anim. Husb., 1: 43–46.
Omole T.A., Sonaiya E.B. (1981). The effect of protein source and methionine supplementation on cassava peel meal utilization by growing rabbits. Nutr. Rep. Int., 23: 729–737.
Oonincx D.G.A.B., Van Itterbeeck J., Heetkamp M.J.W., Van Den Brand H., Van Loon J.J.A., Van Huis A. (2010). An exploration on greenhouse gas and ammonia production by insect species suitable for animal or human consumption. Plos One, 5: 12.10.1371/journal.pone.0014445
Orban J.I., Roland D.A.Sr. (1992). The effect of varying bone meal sources on phosphorus utilization by 3-week old broilers. J. Appl. Poultry Res., 1: 75–83.10.1093/japr/1.1.75
Orozco A.M., Ortega C.M., Pérez-Gil R.F. (1988). Use of earthworms as a protein supplement in diets for rabbits (in Spanish). Archivos Latinoamericanos de Nutricion, 38: 946–955.
Oshibanjo Olusegun D., Goholshak P.M., Akinfolarin O., Akwashik M.A., Adediran O., Adesope I., Abegunde L. (2018). Evaluation of reproductive performance of rabbits fed graded levels of Moringa oleifera leaves and twigs meals. Int. J. Res. Inn. Appl. Sci., III:1–4.
Pascual J.J., Motta W., Cervera C., Quevedo F., Blas E., Fernández-Carmona J. (2002). Effect of dietary energy source on the performance and perirenal fat thickness evolution of primiparous rabbit does. Anim. Sci., 75: 267–279.10.1017/S1357729800053029
Pla M., Cervera C. (1997). Carcass and meat quality of rabbits fed with diets having a high level of vegetable or animal fat. Anim. Sci., 65: 299–303.10.1017/S1357729800016611
Prasad R., Karim S.A. (1998). Effect of dietary energy and protein level on performance and digestibility parameters in pregnant and in lactating rabbit does under tropical environment. World Rabbit Sci., 6: 271–276.10.4995/wrs.1998.356
Prasad R., Karim S.A., Patnayak B.C. (1996a). Growth performance of broiler rabbits maintained on diets with varying levels of energy and protein. World Rabbit Sci., 4: 75–78.10.4995/wrs.1996.274
Prasad R., Singh G., Patnayak B.C. (1996b). Growth performance of broiler rabbits maintained on different diets. World Rabbit Sci., 4: 11–14.10.4995/wrs.1996.263
Purohit A., Vyas K.B. (2005). Hypolipidaemic efficacy of Capparis decidua fruit and shoot extracts in cholesterol fed rabbits. Indian J. Exp. Biol., 43: 863–866.
Raimondi R., Auxilia M.T., Maria C.D., Masoero G. (1976). The effect of adding fat to the feed on meat production by rabbits. Coniglicoltura, 13: 37–45.
Rebollar P.G., García-Rebollar P., García-García R.M., Millán P., Rodríguez M., Formoso-Rafferty N., De la Riva S., Masdeu M., Lorenzo P.L., Arias-Álvarez M., Rey A.I. (2014). Reproductive long-term effects, endocrine response and fatty acid profile of rabbit does fed diets supplemented with n-3 fatty acids. Anim. Reprod. Sci., 146: 202–209.10.1016/j.anireprosci.2014.02.021
Regulation (EC) No 1774/2002 of the European Parliament and of the Council of 3 October 2002 laying down health rules concerning animal by-products not intended for human consumption.
Reid B.L., Maiorino P.M., Parker D.J., Schurg W.A. (1980). Estimates of energy needs for protein and fat deposition in growing rabbits. Nutr. Rep. Int., 21: 157–162.
Ribeiro A.S., Silva M.N., Tagliapietra B.L., Brum B.S.Jr., Ugalde M.L., Richards N.S.P.S. (2019). Development of symbiotic yoghurt and biological evaluation (New Zealand White Rabbits) of its functional properties. Food Sci. Technol., 39: 418–425.10.1590/fst.20618
Rodehutscord M., Abel H.J., Friedt W., Wenk C., Flachowsky G., Ahlgrimm H.J., Johnke B., Kuhl R., Breves G. (2002). Consequences of the ban of by-products from terrestrial animals in livestock feeding in Germany and the European Union: alternatives, nutrient and energy cycles, plant production, and economic aspects. Arch. Anim. Nutr., 56: 67–91.10.1080/00039420214180
Rodríguez M., Carro M.D., Valiente V., Formoso-Rafferty N., Rebollar P.G. (2017). Effects of dietary fish oil supplementation on performance, meat quality, and cecal fermentation of growing rabbits. J. Anim. Sci., 95: 3620–3630.10.2527/jas.2017.1690
Roy A., Chardigny J.-M., Bauchart D., Ferlay A., Lorenz S., Durand D., Gruffat D., Faulconnier Y., Sébédio J.-L., Chilliard Y. (2007). Butters rich either in trans-10-C18:1 or in trans-11-C18:1 plus cis-9, trans-11 CLA differentially affect plasma lipids and aortic fatty streak in experimental atherosclerosis in rabbits. Animal, 1: 467–476.10.1017/S175173110770530X
Samman S., Khosla P., Carroll K.K. (1989). Effects of dietary casein and soy protein on metabolism of radiolabelled low density apolipoprotein B in rabbits. Lipids, 24: 169.10.1007/BF02535230
Samman S., Khosla P., Carroll K.K. (1990). Intermediate density lipoprotein-apolipoprotein B turnover in rabbits fed semipurified diets containing casein or soy protein. Ann. Nutr. Metab., 34: 98.10.1159/000177575
Santomá G., De Blas J.C., Carabaño R., Fraga M.J. (1987). The effect of different fats and their inclusion level in diets for growing rabbits. Anim. Prod., 45: 291–300.10.1017/S0003356100018869
Sarode A., Sawale P., Khedkar C., Kalyankar S., Pawshe R. (2016). Casein and caseinate: methods of manufacture. Elsevier, Amsterdam, The Netherlands, pp. 676–683.10.1016/B978-0-12-384947-2.00122-7
Scheitrum D., Schaefer K.A., Nes K. (2020). Realized and potential global production effects from genetic engineering. Food Policy, 93: 101882.10.1016/j.foodpol.2020.101882
Shiratsuchi H., Shimoda M., Imayoshi K., Noda K., Osajima Y. (1994). Volatile flavor compounds in spray-dried skim milk powder. J. Agric. Food Chem., 42: 984–988.10.1021/jf00040a028
Spreadbury D. (1978). A study of the protein and amino acid requirements of the growing New Zealand White rabbit with emphasis on lysine and the sulphur-containing amino acids. Brit. J. Nutr., 39: 601–613.10.1079/BJN19780075
Srilatha B., Adaikan P.G., Ng S.C., Aulkumaran S. (1997). Effects of feeding egg yolk on the serum lipid levels in rabbits. Methods Find. Exp. Clin. Pharmacol., 19: 489–492.
Strychalski J., Juśkiewicz J., Gugołek A., Wyczling P., Daszkiewicz T., Zwoliński C. (2014). Usability of rapeseed cake and wheat-dried distillers’ grains with solubles in the feeding of growing Californian rabbits. Archiv. Anim. Nutr., 68: 227–244.10.1080/1745039X.2014.921482
Strychalski J., Juśkiewicz J., Kowalska D., Gugołek A. (2021). Performance indicators and gastrointestinal response of rabbits to dietary soybean meal replacement with silkworm pupae and mealworm larvae meals. Archiv. Anim. Nutr., 75: 294–310.10.1080/1745039X.2021.1962171
Swick R.A., Cheeke P.R., Patton N.M. (1978). Evaluation of dried rabbit manure as a feed for rabbits. Can. J. Anim. Sci., 58: 753–757.10.4141/cjas78-094
Terpstra A.H., Sanchez-Muniz F.J. (1981). Time course of the development of hypercholesterolemia in rabbits fed semipurified diets containing casein or soybean protein. Atherosclerosis, 39: 217–227.10.1016/0021-9150(81)90072-1
Togun V., Farinu A.G.O., Ojebiyi O.O., Awotunde A.I. (2009). Effect of replacing maize with a mixture of rumen content and blood meal on the performances of growing rabbits: Initial study with mash feed. World Rabbit Sci., 17: 21–26.10.4995/wrs.2009.666
Trigo M., Borrás M., Muro M., Lamanna L., Antonini A., Cossu M. (2012). Evaluation of feather meal in the diet of growing rabbits. Proc. X World Rabbit Congress, Sharm El-Sheikh, Egypt, 3-6.09.2012, p.777–780.
Trung T.T., Dong N.T.K., Thu N.V. (2017). Effect of different protein sources in the diets on feed intake, nutrient digestibility, growth and carcass value of Californian rabbits (Oryctolagus cuniculus) in the Mekong delta of Vietnam. Can. Tho. Univ. J. Sci., 5: 158–165.10.22144/ctu.jen.2017.019
Tůmová E., Skřivan M., Skřivanová V., Kacerovska L. (2002). Effect of early feed restriction on growth in broiler chickens, turkeys and rabbits. Czech J. Anim. Sci., 47: 418–428.
Van der Meer R., De Vries H., West C.E., De Waard H. (1985). Casein-induced hypercholesterolaemia in rabbits is calcium-dependent. Atherosclerosis, 56: 139–147.10.1016/0021-9150(85)90014-0
Vermsy S., Ahemen T. (2019). Effect of Mucuna pruriens (Velvet Bean) seed meal diet at varying levels on blood profile and reproductive performance of rabbit bucks. Asian J. Res. Anim. Vet. Sci., 4: 1–16.
Volek Z., Marounek M. (2009). Whole white lupin (Lupinus albus cv. Amiga) seeds as a source of protein for growing-fattening rabbits. Anim. Feed Sci. Technol., 152: 322–329.10.1016/j.anifeedsci.2009.05.003
Volek Z., Adámková A., Zita L., Adámek M., Plachý V., Mlček J., Marounek M. (2021).The effects of the dietary replacement of soybean meal with yellow mealworm larvae (Tenebrio molitor) on of fattening rabbits. Anim. Feed Sci. Technol., 280: 115048.10.1016/j.anifeedsci.2021.115048
Wafar R.J., Lalabe B.C., Adi Z.A., Obun C.O., Shinggu P.A., Yusuf H.B., Caleb M., Doofan U., Obogo G. (2019b). Impact of toasted African locust bean (Parkia biglobosa) meal (Tabm) on the growth performance, nutrient digestibility, blood profile and carcass characteristics of grower rabbits. Nig. J. Anim. Sci. Technol., 2: 85–96.
West C.E., Beynen A.C., Scholz K.E., Terpstra A.H.M., Schutte J.B., Deuring K., Van Gils L.G.M. (1984). Treatment of dietary casein with formaldehyde reduces its hypercholesterolemic effect in rabbits. J. Nutr., 114: 17–25.10.1093/jn/114.1.17
West C.E., Spaaij C.J.K., Clous W.M., Twisk H.P., Goertz M.P.H., Hubbard R.W., Kuyvenhoven M.W., van der Meer R., Roszkowski W.F., Sanchez A., Beynen A.C. (1989). Comparison of the hypocholesterolemic effects of dietary soybean protein with those of formaldehyde-treated casein in rabbits. J. Nutr., 119: 843–856.10.1093/jn/119.6.843
Xiccato G., Parigi-Bini R., Dalle Zotte A., Carazzolo A., Cossu M.E. (1995). Effect of dietary energy level, addition of fat and physiological state on performance and energy balance of lactating and pregnant rabbit does. Anim. Sci., 61: 387–398.10.1017/S135772980001393X
Xing W.W., Wu J.Z., Jia M., Du J., Zhang H., Qin L.P. (2009). Effects of polydatin from Polygonum cuspidatum on lipid profile in hyperlipidemic rabbits. Biomed. Pharmacother., 63: 457–462.10.1016/j.biopha.2008.06.035
Zwoliński C., Gugołek A., Strychalski J., Kowalska D., Chwastowska-Siwiecka I., Konstantynowicz M. (2017). The effect of substitution of soybean meal with a mixture of rapeseed meal, white lupin grain, and pea grain on performance indicators, nutrient digestibility, and nitrogen retention in Popielno White rabbits. J. Appl. Anim. Res., 45: 570–576.10.1080/09712119.2016.1233107