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      Efeito da Proteína Bruta e de Diferentes Balanços Eletrolíticos das Dietas Sobre o Desempenho de Frangos no Período Inicial Translated title: Effect of Crude Protein and Diferent Balance Eletrolytic of the Diets on Broilers Performance During the Starter Period

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          Abstract

          Foram realizados dois experimentos utilizando-se 520 pintos machos de um dia para avaliar o efeito da proteína bruta (PB) e do balanço eletrolítico (Na + K- Cl) sobre o desempenho de frangos de corte no período inicial. O Experimento I (1 a 7 dias de idade das aves) foi realizado em baterias, utilizando-se 160 pintos machos "Cobb", no Experimento II (1 a 21 dias) foram utilizados 360 pintos machos "Aviam Farms" que foram alojados em um galpão experimental dividido em box. Nos dois experimentos as aves foram aquecidas com lâmpadas infravermelhas e receberam água e ração à vontade. O delineamento foi inteiramente casualizado, em um esquema fatorial 2 x 2 (PB x balanço eletrolítico - BE), com 5 repetições e 8 aves por unidade experimental no Experimento I e fatorial 2 x 3 (PB x BE), com 3 repetições e 20 aves por unidade experimental no Experimento II. Os níveis de K foram mantidos constantes, oscilando-se o Na e o Cl para obter os balanços eletrolíticos desejados. Os parâmetro de desempenho (consumo de ração, ganho de peso e conversão alimentar) foram analisados no final de cada fase experimental. Em ambos os experimentos não houve interação entre PB e BE. Os níveis de 21,0 e 23,5% de PB não afetaram o desempenho das aves. Em dietas pré-iniciais e iniciais o melhor desempenho foi atingido com 260 mEq/kg.

          Translated abstract

          Two experiment were carried out using 520 one-day old male broilers to evaluate the effect of crude protein and of electrolytic balance ( Na+K-Cl) in starter diet on broilers performance. The experiment I (1 to 7 days of age) was accomplished in batteries, being used 160 one-day old male 'Cobb", in the experiment II (1 to 21 days of age), used 360 one-day old male "Avian Farms" that were housed in an shed experimental, divide in box. In the two experiments, the birds were heated with infrared lamps and they received water and ration at large. Experimental designs were completely randomized factorial 2x2 (proteins levels and Mongin of number) with five replications of eight birds each for experiment I and factorial 2x3 (proteins levels and Mongin of number) with three replications of twenty birds each for experiment II. The level of potassium was maintained constant, the levels of Na and Cl were varied to obtain the electrolytic balance. The performances parameters (feed intake (g), weight gain (g) and feed:gain) were analyzed in the end of each experimental phase. In both experiments there was no interaction between crude protein and electrolytic balance. The crude protein levels (21 and 23,5 %) did not influenced the broilers performance. In pre-starter and starter diets the best performance was obtained with electrolytic balance of 260 mEq/kg.

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          Most cited references13

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          Recent advances in dietary anion-cation balance: applications in poultry.

          P Mongin (1981)
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            A review of the role of acid-base balance in amino acid nutrition.

            Acid-base balance and amino acid metabolism are intimately related. Changes in acid-base balance influence the metabolic fate of many amino acids. Also, acid-base homeostasis is achieved in part by alteration of amino acid metabolism, not only in the kidney, but also in liver, muscle and splanchnic tissue. Glutamine is the primary amino acid involved in renal ammonia-genesis, a process intimately related to acid excretion. The metabolism of other amino acids, such a serine, glycine and the branched-chain amino acids, also appears to be influenced by acid-base balance. Conversely, the metabolic fate of various amino acids will influence the daily acid load experienced by the animal. Oxidation of amino acids contributes to the total acid and base load imposed on the pig. The basic (cationic) amino acids (lysine, arginine and histidine) yield neutral end-products plus a proton; sulfur (methionine and cysteine) amino acids are also acidogenic because they generate sulfuric acid when oxidized. The dicarboxylic (anionic) amino acids (aspartate and glutamate, but not asparagine and glutamine) consume acid when oxidized and thus reduce the acid load of the diet. Acid-base balance and related phenomena are discussed in the context of practical and metabolic aspects of amino acid nutrition.
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              Development and adaptation of protein digestion

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                Author and article information

                Contributors
                Role: ND
                Role: ND
                Role: ND
                Role: ND
                Role: ND
                Role: ND
                Journal
                rbca
                Revista Brasileira de Ciência Avícola
                Rev. Bras. Cienc. Avic.
                Fundação APINCO de Ciência e Tecnologia Avícolas (Campinas )
                1806-9061
                May 2002
                : 4
                : 2
                : 155-161
                Affiliations
                [1 ] Universidade Estadual Paulista Brazil
                Article
                S1516-635X2002000200009
                10.1590/S1516-635X2002000200009
                ec0f5b3b-4880-467e-b54a-325646695909

                http://creativecommons.org/licenses/by/4.0/

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                SciELO Brazil

                Self URI (journal page): http://www.scielo.br/scielo.php?script=sci_serial&pid=1516-635X&lng=en
                Categories
                AGRICULTURE, DAIRY & ANIMAL SCIENCE
                ORNITHOLOGY

                Animal agriculture,Ornithology
                broilers,electrolytic balance,starter period,balanço eletrolítico,frangos de corte,período inicial

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