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Effects of a reduced calcium, phosphorus and protein intake and of benzoic acid on calcium and phosphorus metabolism of growing pigs

机译:减少钙,磷和蛋白质的摄入以及苯甲酸对生长猪钙磷代谢的影响

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摘要

In order to minimise environmental pollution, many pig feeds contain low phosphorus and protein concentrations as well as benzoic acid (BA), an additive which reduces ammonia formation in the slurry. Since both a low P intake and metabolic acidosis compromise bone mineralisation, the effect of a diet with a low concentration of calcium (Ca), phosphorus (P) and crude protein (CP) and the effect of BA on Ca and P metabolism were examined in a 2 x 2 two-factorial experiment using pigs from 13 to 64 kg body weight (BW). Compared to the control piglet and grower diets (8.7 and 6.9g Ca; 6.9 and 5.3 g P; 172 and 156g CP per kg, respectively), the intake of the low nutrient piglet and grower diets (5.3 g Ca; 4.3 and 4.0 g P; 154 and 147 g CP per kg, respectively, both supplemented with 1500 U/kg microbial phytase) reduced (P<0.01)Ca and P retention by 27% and 24%, respectively, reduced (P<0.05) the growth rate of the piglets by 7%, and decreased (P<0.05) the bone breaking strength and bone mineral content (P<0.01) by 5% in the animals which were slaughtered at 64 kg BW. Benzoic acid (5 and 10 g per kg piglet and grower diet, respectively) did not influence (P>0.05) the apparent digestibility of Ca, increased the apparent digestibility of P(P<0.05) by 5% and increased the urinary Ca and P output (P<0.01) by 70% and 83%, respectively, but had no effect (P>0.05) on the proportion of ingested Ca and P which was retained. Furthermore. BA increased (P<0.01) the serum activity of the bone formation marker alkaline phosphatase at 25 and 40 kg BW by 17% and 13%, respectively and decreased (P<0.01) the concentration of the bone resorption marker serum crosslaps at 25 kg BW by 12%, implying that BA affected bone metabolism at 25 and 40 kg BW. Since BA neither affected the blood variables at 60 kg nor the bone breaking strength and bone mineral content, any possible negative effect of BA on bone metabolism of the piglets and of the young growing animals thus seems to have disappeared during the last period of the grower period. In conclusion, the slight metabolic acidosis caused by BA had no lasting negative effects on the bones of the growing pigs
机译:为了最大程度地减少对环境的污染,许多猪饲料中磷和蛋白质的浓度都较低,而苯甲酸(BA)则可以减少浆液中氨的形成。由于低P摄入量和代谢性酸中毒都会损害骨骼矿化,因此研究了低钙(Ca),磷(P)和粗蛋白(CP)饮食的影响以及BA对Ca和P代谢的影响在2 x 2两因素实验中,使用体重从13到64公斤(BW)的猪。与对照仔猪和生长日粮(分别为8.7和6.9g Ca; 6.9和5.3 g P;每公斤172和156 g CP)相比,低营养仔猪和生长日粮(5.3 g Ca; 4.3和4.0 g)的摄入量P;每公斤分别添加154 U / kg微生物植酸酶的154和147 g CP,分别降低(P <0.01)Ca和P保留量27%和24%,降低(P <0.05)生长速率在64 kg BW处宰杀的动物,其仔猪的断骨强度降低了7%(P <0.05),骨矿物质含量(P <0.01)降低了(P <0.05)5%。苯甲酸(每公斤仔猪和生长日粮分别为5和10 g)对钙的表观消化率没有影响(P> 0.05),P的表观消化率增加了(P <0.05)5%,尿中Ca和磷产量(P <0.01)分别增加了70%和83%,但对摄入的钙和磷的保留比例没有影响(P> 0.05)。此外。 BA在25和40 kg体重时分别增加(P <0.01)骨形成标志物碱性磷酸酶的血清活性17%和13%,并在25 kg时降低(P <0.01)骨吸收标志物血清交叉重叠的浓度体重增加12%,这表明BA在25和40 kg体重下影响骨代谢。由于BA既不影响60 kg时的血液变量,也不影响断骨强度和骨矿物质含量,因此BA对仔猪和年幼动物的骨骼代谢的任何可能的负面影响似乎在生长最后阶段消失了。期。总之,BA引起的轻微代谢性酸中毒对生长中的猪的骨骼没有持久的负面影响

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