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J H Bailie

Publications and source records attributed to J H Bailie.

6 recordsLinked to original sources

Dose-response relationship of tetronasin administered to grazing steers.

Two grazing experiments were conducted to evaluate the dose-response relationship of steers to the ionophore tetronasin. Bermudagrass-based pastures were grazed 126 d in Exp. 1, and annual ryegrass or an annual ryegrass-berseem clover mixture was grazed 112 d in Exp. 2. Tetronasin was administered in ground corn (.91 kg/hd) fed daily to provide dosages of 0, 7.5, 15, 30, 60 or 90 mg. One hundred forty-four steers (220 kg, Exp. 1; 196 kg, Exp. 2) were allocated to treatment groups of six steers within four initial weight blocks in Exp. 1 and within two initial weight blocks, assigned to two forage types in Exp. 2. Initial weight blocks were confounded with four pasture blocks, divided in six 1.35-ha paddocks. Treatment groups were rotated among paddocks within pasture block every 2 wk. Stepwise tetronasin addition resulted in a linear increase (P less than .05) in the proportion of propionic acid and a linear decrease (P less than .05) in the proportion of acetic acid and the acetic to propionic acid ratio in both experiments. Total VFA concentrations were not altered in Exp. 1 but they decreased linearly in Exp. 2 with tetronasin addition. Maximal observed improvement in daily gain (.1 kg) occurred at a dosage of 30 mg.hd-1.d-1 in Exp. 1 and 90 mg.hd-1.d-1 in Exp. 2. Daily gain increased linearly (P less than .06) with tetronasin level in both experiments.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Dose-response relationship of the ionophore tetronasin in growing-finishing cattle.

The dose-response relationship of the ionophore tetronasin was defined in growing-finishing cattle (84 heifers and 84 steers). Cattle were allotted by sex and weight replication (light and heavy) to 24 pens. Six dosages (D) of tetronasin (0, 3.7, 7.3, 11.0, 14.7 and 18.3 mg/kg, dry matter [DM] basis) were fed. Diets containing 40, 25 and 10% roughage were fed for 84, 56 and either 56 (heavy replication) or 91 d (light replication), respectively. Average starting weights were 242 and 270 kg and ending weights were 433 and 480 kg for heifers and steers, respectively. No interactions existed for ionophore with sex (P greater than .2) over the trial. Ionophore treatment did not affect overall average daily gain (.94 kg/d; P greater than .2). Daily DM intake (kg/d) decreased linearly as the level of tetronasin increased (8.4-.042D (dosage), r2 = .83, P less than .001). Gain efficiency (gain/feed, kg/100 kg DM) increased curvilinearly as ionophore dosage increased (11 + .16D - .0058D2, r2 = .77, P less than .001). Solving the first derivative indicated an optimum dose for gain efficiency improvement of 13.8 mg/kg. The gain efficiency response was greatest the first 84 d, less the next 56 d and minimal the last 56 or 91 d (20, 7 and 2% improvement for D = 14.7 mg/kg, respectively). Tetronasin was found to improve gain efficiency by about 10% over control at an optimum dosage of 13.8 mg/kg.

Animals↗

Management and economic effects of different levels of oestrus detection in the dairy herd.

Computer simulation of the dairy herd production cycle has permitted an assessment of the effects of oestrus detection rate on herd performance. Calving to first service interval is inversely related to the level of oestrus detection and in turn both these parameters govern the subsequent calving to conception interval and the herd culling rate for failure to conceive. Where the breeding season is nine to 10 months long, a poor oestrus detection rate is reflected in an increased culling rate for failure to conceive and a high mean calving index. This results in a reduction in annual milk yield and margin over purchased feed per cow. Where the breeding season is restricted to four months or less, a low level of oestrus detection is reflected almost solely in a high rate of culling for failure to conceive.

Animal Husbandry↗