Comparison of Dietary Zinc Levels for Reproducing Sows and the Effect of Dietary Zinc and Calcium on the Subsequent Performance of their Progeny
- 31 July 1976
- journal article
- research article
- Published by Oxford University Press (OUP) in Journal of Animal Science
- Vol. 43 (2) , 453-463
- https://doi.org/10.2527/jas1976.432453x
Abstract
Dietary zinc levels of 33 and 83 ppm were compared for breeding swine housed in total confinement and fed a 15% protein fortified corn-soybean meal diet at an average level of 1.8 kg during gestation and 4.5 kg during lactation for five parities. Diet did not significantly affect the number of pigs farrowed and weaned, average birth and weaning weight and the zinc content of baby pig testes, spleen, kidney and serum. Sow serum zinc levels at farrowing and the liver and femur zinc content from pigs at the fourth and fifth parity were higher (P<.05) when sows were fed the high-zinc diet with a trend (P<.10) for higher zinc content of the sow hair and baby pig coccygeal. Progeny from the fourth and fifth parities of the low- and high-zinc fed sows were fed dietary zinc levels of 33 and 83 ppm and dietary calcium levels of .8 and 1.4% (lowered at 18 and 45 kg body weight). Average daily gain and feed intake were greater (P<.05) for pigs fed high-zinc diets; whereas, daily gain and feed efficiency were less (P<.01) for pigs fed high-calcium diets. Up to 45 kg, pigs from high-zinc fed sows had larger (P<.05) gains and feed intakes. Serum and hair zinc levels were increased (P<.01) and hair calcium level was decreased (P<.05) by high-zinc diets. Serum calcium levels were increased (P<.01) by high-calcium diets. Hair zinc content was higher (P<.01) for pigs from high-zinc fed sows. Although reproductive performance was not significantly affected by the level of zinc fed in this study, the progeny of sows fed 33 ppm zinc appeared not to have the necessary body stores of zinc for optimum growth. Based on the results of this study, additional zinc should be added to conventional diets for breeding female swine. Copyright © 1976. American Society of Animal Science . Copyright 1976 by American Society of Animal Science.This publication has 12 references indexed in Scilit:
- Zinc Deficiency in Reproducing Gilts Fed a Diet high in Calcium and its Effect on Tissue Zinc and Blood Serum Alkaline PhosphataseJournal of Animal Science, 1967
- Swine Hematology from Birth to Maturity IV. Serum Calcium, Magnesium, Sodium, Potassium, Copper, Zinc and Inorganic PhosphorusJournal of Animal Science, 1967
- Congenital Malformations Resulting from Zinc Deficiency in Rats.Experimental Biology and Medicine, 1966
- Levels and Sources of Vitamin D for Pigs Fed Diets Containing Varying Quantities of CalciumJournal of Animal Science, 1966
- Effect of Zinc Deficiency and Restricted Feeding on Wound Healing in the BovineExperimental Biology and Medicine, 1965
- Effect of Level of Zinc in High Calcium Diets on Pigs from Weaning through One Reproductive Cycle and on Subsequent Growth of their OffspringJournal of Animal Science, 1964
- Growth and Digestibility Studies with Young Pigs Fed Various Levels and Sources of CalciumJournal of Animal Science, 1962
- Influence of Dietary Calcium and Zinc on Calcium-45, Phosphorus-32 and Zinc-65 Metabolism in SwineJournal of Animal Science, 1961
- Effect of Phytic Acid on Zinc Availability.Experimental Biology and Medicine, 1960
- Parakeratosis or Zinc Deficiency Disease in the Pig.Experimental Biology and Medicine, 1955