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Biomedical subjects

A M Feyerherm

Publications and source records attributed to A M Feyerherm.

5 recordsLinked to original sources

Plasma proteins and a probiotic as ingredients in milk replacer.

Milk replacers containing all milk protein, 25% of protein from porcine plasma protein, 25% of protein from bovine plasma protein, or all milk protein plus probiotic were compared in a 6-wk experiment using 120 Holstein bull calves approximately 7 d of age. All replacers contained an antibiotic except the one that contained probiotic. Calf starter always was available, and calves were weaned when they consumed 680 g/d of starter. Ten calves were selected randomly from each group for sampling of jugular blood at d 1 and 10 of the experiment. A complete blood count was conducted on the samples, and protein fractionation by electrophoresis was performed on sera harvested from the samples. Mean BW gains started to differ at the end of wk 3, and by the end of wk 6 the difference of 2.6 kg was significantly greater for those calves fed porcine or bovine plasma than for calves fed all milk protein (with or without probiotic). The same response was noted for starter consumption; the difference increased to 4.15 kg by the end of wk 6. Most measurements of blood did not differ by treatment; those that were different did not suggest an apparent difference in performance response. Growth performance of calves fed probiotic was not different from that of calves fed antibiotic when both replacers contained all milk protein. Either porcine or bovine plasma protein was an acceptable source of protein.

Animal Feed↗

Growth of heifers fed 100 or 115% of National Research Council requirements to 1 year of age and then changed to another treatment.

Eighty-nine Holstein heifers were used from 3 mo of age until 21 d before their estimated calving date to determine the effect of two feeding programs on growth and onset of puberty. From 3 to 12 mo of age, heifers were fed either 100 or 115% of 1989 NRC nutrient requirements for heifers gaining .7 kg/d. At 12 mo, the treatments were switched (100 to 115% and 115 to 100%) until 21 d before calving. When the 115% diet was fed from 3 to 12 mo of age, rate of BW gain, BW at 12 mo, body condition score, and heart girth increased. Heifers fed the 115% diet from 3 to 12 mo of age were 22 d younger at onset of puberty than those fed the 100% diet, but BW at onset of puberty was similar (281 vs. 278 kg, respectively). When diets were switched at 12 mo of age, the rates of BW gain and growth for the heifers switched from 115 to 100% decreased, but rate of BW gain and growth increased for the other group. At 24 mo of age, BW and body size did not differ between treatments. Neither feeding program resulted in a clear advantage for any trait measured, but the results provide further evidence that extra nutrients fed beyond the NRC requirement for .7 kg/d of BW gain enhance various growth traits in Holstein heifers.

Aging↗

Epiphytic microflora on alfalfa and whole-plant corn.

Epiphytic microflora were identified and counted on four cuttings of alfalfa, each harvested at three stages of maturity, and on three whole-plant corn hybrids. Enterobacteriaceae were predominant on both crops. Yeasts and molds also were major epiphytic microorganisms on whole-plant corn. The group--including lactobacilli, pediococci, and leuconostocs, which are genera that produce lactic acid and thus are instrumental in silage preservation--constituted only a small proportion of the total population (less than .5%) on both crops. Lactate-fermenting clostridial spores were not detected on standing alfalfa, and occurrences of these spores on standing corn plants were due to soil contamination from rainfall prior to harvest. The numbers of epiphytic microorganisms, except for the lactobacilli, pediococci, and leuconostocs group, were higher on standing corn than on alfalfa. The epiphytic microflora on alfalfa increased with increasing temperature during the growing season. However, neither cutting number nor maturity affected the epiphytic microflora on standing alfalfa, and wilting following mowing had little effect on most populations. Higher temperatures during wilting increased yeast and mold counts but had no effect on other microbial counts. The chopping process tended to increase the epiphytic microflora populations compared with those on the standing crops, and the group containing lactobacilli, pediococci, and leuconostocs was most enhanced. Only yeast and mold counts on the chopped alfalfa increased with greater DM content and buffering capacity.

Animal Feed↗