Resumo -O objetivo deste trabalho foi avaliar o efeito da suplementação de rações, com prebiótico (mananoligossacarídeo), probiótico (Bacillus subtilis) e simbiótico, em juvenis de tambaqui (Colossoma macropomum), em duas densidades de estocagem, quanto aos parâmetros de crescimento, utilização do alimento, sobrevivência e econômicos. Um total de 192 juvenis (2,4±0,2 g) foi distribuído em 32 aquários (20 L), em delineamento inteiramente casualizado, em arranjo fatorial 2x4, com quatro repetições, durante oito semanas. Testaram-se 0,35 e 1,05 kg m -3 para a densidade de estocagem. A suplementação constituiu-se de: 2 g kg -1 de prebiótico; 2 g kg -1 de probiótico; 2 g kg -1 de prebiótico + 2 g kg -1 de probiótico; e controle. A densidade de estocagem não influenciou a sobrevivência dos peixes, embora tenha causado a redução dos parâmetros econômicos e de crescimento. A suplementação com probiótico e simbiótico aumentou o crescimento, melhorou a utilização do alimento e os parâmetros econômicos. A ração controle apresentou o menor índice de eficiência econômica, enquanto o maior índice foi obtido pelas rações suplementadas com simbiótico. Os parâmetros de crescimento, utilização do alimento e econômicos aumentaram com a suplementação com probiótico e simbiótico, em rações para juvenis de tambaqui, embora não haja efeito sinergístico entre o prebiótico e o probiótico avaliados.Termos para indexação: Bacillus subtilis, Colossoma macropomum, mananoligossacarídeo. Prebiotic, probiotic and synbiotic supplementation in diets for juvenile tambaquis at two stocking densitiesAbstract -The objective of this work was to evaluate the effect of prebiotic (mannan oligosaccharides), probiotic (Bacillus subtilis), and synbiotic diet supplementations on juvenile tambaquis (Colossoma macropomum), at two stocking densities, for growth, food utilization, survival, and economic parameters. A total of 192 juveniles (2.4±0.2 g) was distributed in 32 aquaria (20 L), in a completely randomized design, in a 2x4 factorial arrangement, with four replicates, during eight weeks. Tests were performed for 0.35 and 1.05 kg m -3 stocking density. The supplementation was constituted of: 2 g kg -1 prebiotic; 2 g kg -1 probiotic; 2 g kg -1 prebiotic + 2 g kg -1 probiotic; and a control. Stocking density had no effect on fish survival, although it decreased economic and growth parameters. Probiotic and synbiotic supplementation increased growth, and improved feed utilization and economic parameters. The control diet showed the lowest economic efficiency index, while the highest index was obtained by diets supplemented with synbiotic. Growth, food utilization, and economic parameters increased with the probiotic and synbiotic supplementation in diets for juvenile tambaquis, although there is no synergistic effect between the evaluated prebiotic and probiotic supplementations.
Determinação da razão ótima de espermatozóides por ovócitos de piabanha Brycon insignis (pisces -characidae) T1=86,662, T2=173,324, T3=259,986, T4=346,648 and T5=433,310
-This study aimed to evaluate economically the inclusion of prebiotics, probiotics and symbiotics in diets of Nile tilapia (4.07 ± 0.30 g), at two stocking densities (0.6 and 1.2 kg m -3 ). A total of 288 fish were distributed over 32 tanks (40 L) in a completely randomised design, in a 2 x 4 factorial (stocking density x additives), with four replications, over six weeks. The following were evaluated: total feed consumption (FC), final biomass (FB), relative gain in biomass (RGB), apparent feed conversion (AFC), survival rate (SUR), average cost of feed per kg of live weight gain (ACF), total cost of feed (TCF), total cost of production (TCP), gross income (GI), operating profit (OP) and economic efficiency index (EEI). No effect was seen on the evaluated parameters from the interaction (p>0.05) between stocking density and inclusion of the feed additives. No influence was observed (p>0.05) on SUR from the stocking density, although this significantly influenced the parameters FB, FC, RGB, AFC, ACF, TCF, TCP, GI and OP. There was no significant influence from the inclusion of prebiotics, probiotics and symbiotics on FC, SUR and TCF, however there was an influence (p<0.05) on the parameters FB, RGB, AFC, ACF, TCP, GI and OP. The control diet at the higher density displayed the worst EEI. The best EEI was obtained by fish at the lower density which received feed with added probiotics and symbiotics. The best indices of economic and zootechnical performance obtained demonstrate the economic viability of including prebiotics, probiotics and symbiotics in the diets of Nile tilapia.
A six week study was conducted to investigate the supplementation of prebiotic (Mannan oligosaccharide-MOS, from yeast Saccharomyces cerevisiae), probiotic (Bacillus subtilis-BS, C-3102 strain) and their combination in diets for Nile tilapia. 192 fishes (4.03 ± 0.28 g) were distributed into 16 tanks (40-L), in a completely randomized design (n=4). The following treatments were evaluated: control; prebiotic-2 g MOS kg-1 ; probiotic-2 g BS kg-1 and synbiotic-1 g MOS kg-1 plus 1 g BS kg-1. Fishes fed diets pre-, pro-and synbiotic supplemented performed better in average daily gain, feed conversion rate, specific growth rate, protein efficiency ratio, carcass yield, total and standard length and body height than those maintained on control diets. The probiotic supplementation resulted in higher villus height and intestinal perimeter ratio than the control diet while the pre-and synbiotic supplementation in diets resulted in higher intestinal perimeter ratio. Carcass protein and ether extract were, respectively, higher and lower in fish fed synbiotic diets than other fish. The results of this study indicated that the mannan oligosaccharide and Bacillus subtilis supplementation, isolated or combined (synbiotic), could improve growth, body index, intestine morphometry and carcass composition in Nile tilapia.
Rev. Bras. Saúde Prod. Anim., Salvador, v.13, n.3, p.880-893 jul./set., 2012 http://www.rbspa.ufba.br ISSN 1519 9940 880 Ontogeny and embryonic description of Betta splendens, Perciformes (Regan, 1910)Ontogenia e descrição embrionária em "Betta splendens"
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