Metabolic changes in cattle due to the specific effect of the tick,Boophilus microplus
- 1 May 1981
- journal article
- research article
- Published by Cambridge University Press (CUP) in British Journal of Nutrition
- Vol. 45 (3) , 557-566
- https://doi.org/10.1079/bjn19810134
Abstract
1. An experiment was designed to provide information on the alterations in body metabolism which would account for the loss of body-weight in cattle due to the specific effect (factors other than reduced food intake) of the tickBoophilus microplus.2. Two groups of British (Shorthorn × Hereford) and Africander × British calves, each approximately 6 months old, were used: one group (treated) of each breed was tick-infested and the other (control) was tick-free. Within breeds, calves in the control group were pair-fed to calves in the treated group.3. In both breeds, the effect of ticks: (a) depressed packed cell volume, serum alkaline phosphatase (EC3.1.3.1) and amylase (EC3.2.1.1) activities, plasma cholesterol and phospholipid levels, serum iron and albumin levels. (b) increased the plasma levels of urea-nitrogen and γ-globulin (c) increased rectal temperature, water intake, urine volume, urinary and faecal total N, urinary urea-N and α-amino acids, the excretion of water, sodium and potassium in the faeces and (d) reduced N balance, N and dry-matter digestibilities.4. In the British breed, ticks increased the excretion of K with a corresponding decrease in the excretion of Na in the urine and inreased the plasma clearance of bromsulphthalein.5. A second experiment showed that the specific effect of tick infestation increased the flow of organic matter (OM) from the abomasum and the fractional turnover of rumen fluid of Hereford steers. It was also shown that the decrease in OM digestibility in the gastrointestinal tract was largely due to a decrease in OM digestibility in the rumen and that the increased urinary urea excretion and plasma urea concentration was caused by higher production rates of urea despite a tendency for lowered urea degradation in the gastroinestinal tract.This publication has 20 references indexed in Scilit:
- Changes in lipid metabolism in genetically different types of calves during chronic hyperthermiaBritish Journal of Nutrition, 1973
- Effects of Trichostrongylus colubriformis (Nematoda) on the nutrition and metabolism of sheep. I. Feed intake, digestion, and utilizationAustralian Journal of Agricultural Research, 1973
- Use of 103Ru-labelled tris (1,10-phenanthroline) ruthenium (II) chloride as a marker in digestion studies with sheepThe International Journal of Applied Radiation and Isotopes, 1971
- Alterations in Host Metabolism by the Specific and Anorectic Effects of the Cattle Tick (Boophilus Microplus) I. Food Intake and Body Weight GrowthAustralian Journal of Biological Sciences, 1971
- Alterations in Host Metabolism by the Specific and Anorectic Effects of the Cattle Tick (Boophilus Microplus) II. Changes in Blood CompositionAustralian Journal of Biological Sciences, 1971
- THE EFFECTS OF VARIATIONS IN WATER OR POTASSIUM INTAKE ON THE RENAL EXCRETION OF POTASSIUM IN SHEEPQuarterly Journal of Experimental Physiology and Cognate Medical Sciences, 1969
- Relationships between Oesophagostomum columbianum infection and the nutritional status of sheep. I. Effects on growth and feed utilizationAustralian Journal of Agricultural Research, 1969
- Bromsulphthalein fractional clearance in normal beef cattleClinica Chimica Acta; International Journal of Clinical Chemistry, 1967
- The chromium-51 complex of ethylenediamine tetraacetic acid as a soluble rumen markerBritish Journal of Nutrition, 1964
- The Nutrition of the Young Ayrshire CalfBritish Journal of Nutrition, 1951