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Performance and carcass quality of steers fed whole raw soybeans at increasing inclusion levels.

Two experiments were conducted to determine the efficacy of whole raw soybeans as a partial or whole replacement for soybean meal in a corn/soybean meal-based feedlot diet. In Exp. 1, 80 crossbred steers (average BW = 441.3 kg) and, in Exp. 2, 96 Angus-sired steers (average BW = 413.7 kg) were blocked by weight and assigned randomly to one of four dietary treatments. Treatments were 0, 8, 16, and 24% dietary inclusions of whole raw soybeans. Diets within experiments were isonitrogenous. Across experiments, diets were similar, differing only in amount of corn silage (8 vs. 15% DM) at the expense of whole, shelled corn for Exp. 1 and Exp. 2, respectively. No treatment differences were observed for ADG or final BW. Dry matter intake from d 0 to d 58 decreased linearly (P < 0.05) with increased inclusion of whole raw soybeans in Exp. 1, with no effect on feed efficiency. In Exp.2 from d 0 to 72, whole raw soybean inclusion had no effect on DMI or feed efficiency. There tended (P < 0.10) to be a linear reduction in hot carcass weight when whole raw soybeans were included in Exp. 1. Unexpectedly, longissimus muscle area tended (P < 0.10) to respond quadratically (P < 0.10) to the increased inclusion of whole raw soybeans in Exp.1. No differences were detected in marbling score, 10th-rib backfat, or yield grade for Exp. 1 and 2 steers. In Exp. 2, inclusion of whole raw soybeans had no effect on hot carcass weight or longissimus muscle area. Incrementally increasing the inclusion of whole raw soybeans in the diet of feedlot steers had little overall effect on weight gain, feed efficiency, or carcass quality in Exp. 1 and 2. There were subtle differences in the treatment responses observed for hot carcass weight and longissimus muscle area between Exp. 1 and Exp. 2 for the 24% inclusion level. These noted differences may indicate that inclusion levels above 24% might not be beneficial.

Adipose Tissue↗

Mechanisms of selectivity in a nocturnal fish: a lack of active prey choice.

Fish that feed on individual zooplankton usually exhibit strong selectivity for large prey. Such selectivity can result from the predator's active choice of larger prey or from differential encounter rate due to lower detectability of small prey, or both. In diurnal fishes, selectivity is thought to be determined mostly by active choice. In spite of a lack of direct observations, active choice is also considered the prevailing mechanism of prey selectivity in nocturnal fishes. Our objective was to resolve this mechanism in the highly selective, nocturnal zooplanktivorous fish Apogon annularis. Laboratory experiments indicated that the fish's encounter rate with small prey was lower than that with large prey and that its selectivity became stronger with decreasing light intensity. Feeding efficiency, defined as the ratio between feeding and encounter rates, ranged 41-89% and was positively correlated with prey size. When feeding on a mixture of prey sizes, the fish fed on each size group at a rate similar to that of its feeding on the respective size alone, indicating that selectivity in A. annularis was due to size-dependent encounter rate and differential feeding efficiency. A low visual acuity in A. annularis, as inferred from its inability to detect small prey (<0.9 mm in length), together with the low abundance of large zooplankton in situ, can explain the dominance of differential encounter over active choice in this nocturnal coral-reef fish.

Animals↗

Early feed restriction in chicks: effect of age, duration, and sex.

Several regimens of feed restriction, calculated to support the maintenance of body weight without any allowance for growth, were applied beginning at the ages of 3 to 11 days for periods of 3 to 7 days using male and female broilers. In males, the 7-day feed restriction treatment resulted in improved feed efficiency on an age basis, or on a body weight basis after body weight had reached .7 to 1 kg. Feed restriction also resulted in a reduction in the amount of abdominal fat at the age of 54 to 59 days without any concomitant reduction in body weight. Within the range tested, 3 to 11 days of age, the initiation of the 7-day restriction treatment did not affect response. Similar responses were obtained in females, but with little benefit in feed efficiency when compared with ad libitum-fed birds on a body-weight basis. Also in females, reduction in 56-day body weight and loss of benefits derived from improved feed efficiency and reduced carcass fat could be avoided if the period of restriction was kept at 3 to 5 days.

Age Factors↗

Influence of a dried Bacillus subtilis culture and antibiotics on performance and intestinal microflora in turkeys.

Two experiments, each involving a 3 x 2 factorial design, were conducted with Large White Nicholas turkeys. The first experiment involved three antibiotic treatments: an unmedicated control diet, the diet plus 44 ppm of penicillin-streptomycin (1:3), and the diet plus 44 ppm of Zn bacitracin; each diet was fed in the presence and absence of a dried Bacillus subtilis culture to females 0 to 16 wk of age. Antibiotic supplements increased body weight at 12 (P less than .05) and 16 (P less than .001) wk of age. Body weight and feed efficiency were not significantly affected by feeding the B. subtilis culture in this experiment. The dietary B. subtilis culture significantly increased B. subtilis counts in the crop and cecum but failed to influence intestinal Lactobacillus or Escherichia coli counts. The second experiment also involved three antibiotic treatments: an unmedicated control diet, 44 ppm of Zn-bacitracin, and 2.2 ppm of bambermycins, and each diet was fed in the presence and absence of the dried B. subtilis culture to male birds from 0 to 20 wk of age. Increased body weight gain was observed in birds receiving the B. subtilis culture at 12 wk (P less than .01). Feed efficiency of birds receiving the B. subtilis culture was improved (P less than .05) at 20 wk. Birds receiving bambermycins had greater body weights (P less than .05) at 12 and 16 wk of age than birds receiving Zn bacitracin or the control diet. Livability was not affected by the B. subtilis culture or the antibiotic treatments in either experiment.

Animal Feed↗

Performance of two strains of laying hens fed ground and whole barley with and without access to insoluble grit.

The live performance from 19 to 43 wk of age of two strains of commercial White Leghorn hens fed two levels of whole barley (0 or 60%) and insoluble grit (0 or 4 g/bird per wk) was compared. The 0 and 60% whole barley diets differed only in feed form and were formulated to the same nutrient specifications. No dilution of nutrients or ingredients occurred. The 0% whole barley diet was fed in mash form. The 60% whole barley diet was fed as whole grain and mash concentrate blended into a complete diet and fed in the same feed trough. Feeding whole barley reduced egg production, feed efficiency, and egg specific gravity and increased feed intake, egg weight, and body weight gain. Access to insoluble grit had no effect on any of the production variables measured. The two strains of hens responded similarly to whole barley but differed in feed intake, feed efficiency, egg weight, egg specific gravity, and body weight gain. Feeding whole barley combined with a mash concentrate depressed hen performance compared to birds fed a similar diet in mash form. Strain of hen and access to insoluble grit did not alter the response to feeding whole barley.

Animal Nutritional Physiological Phenomena↗

Evolution of specialization and ecological character displacement of herbivores along a gradient of plant quality.

We study the combined evolutionary dynamics of herbivore specialization and ecological character displacement, taking into account foraging behavior of the herbivores, and a quality gradient of plant types. Herbivores can adapt by changing two adaptive traits: their level of specialization in feeding efficiency and their point of maximum feeding efficiency along the plant gradient. The number of herbivore phenotypes, their levels of specialization, and the amount of character displacement among them are the result of the evolutionary dynamics, which is driven by the underlying population dynamics, which in turn is driven by the underlying foraging behavior. Our analysis demonstrates broad conditions for the diversification of a herbivore population into many specialized phenotypes, for basically any foraging behavior focusing use on highest gains while also including errors. Our model predicts two characteristic phases in the adaptation of herbivore phenotypes: a fast character-displacement phase and a slow coevolutionary niche-shift phase. This two-phase pattern is expected to be of wide relevance in various consumer-resource systems. Bringing together ecological character displacement and the evolution of specialization in a single model, our study suggests that the foraging behavior of herbivorous arthropods is a key factor promoting specialist radiation.

Adaptation, Biological↗

Dietary carnitine did not influence performance and carcass composition of broiler chickens and young turkeys fed low- or high-fat diets.

Two experiments were conducted to determine the influence of supplemental dietary carnitine on performance and carcass composition of young turkeys and broiler chickens. Experiments 1 and 2 were done with poults to 21 d of age and broilers to 45 d of age, respectively. Three dietary concentrations of L-carnitine (0, 50, or 100 mg/kg) were fed in a factorial arrangement with two concentrations of animal-vegetable fat (A-V fat), 2.25 or 8% in Experiment 1 and 1 or 5% in Experiment 2. L-Carnitine did not affect (P > .05) BW gain or feed efficiency in either experiment, irrespective of concentration of dietary fat. Similarly, proximate composition of 21-d-old poults and 45-d-old broilers was not changed by L-carnitine. Increasing levels of fat supplementation improved feed efficiency of poults and improved 45-d BW and feed efficiency of broilers. Carcass fat of poults and broilers was increased (P < or = .05) by supplemental fat at the expense of carcass water and protein.

Animal Feed↗

Early social status and the development of life-history strategies in Atlantic salmon.

Atlantic salmon have a variable life cycle. In good growing conditions, underyearling fish may metamorphose into the migratory smolt phase during their second spring, or delay at least a further year. The strategy adopted by particular fish appears to become fixed during their first summer. This paper examines whether either feeding efficiency or dominance in mid-summer correlates with the life-history strategy adopted. Eighty fish were individually marked and their feeding efficiency (= mean handling time for food items) and dominance rank measured under laboratory conditions in mid-July. Growth rates of the fish were then monitored over the next three months, until developmental strategies became apparent. Discriminant and logistic regression analyses revealed that both dominance rank and size attained by July were independent, significant predictors of future developmental pattern (the age at metamorphosis being correctly predicted on the basis of rank and size in 84% of cases) whereas feeding efficiency had no effect. Thus fish that were dominant or larger two months after first feeding or both had a greater probability of migrating after only one year in freshwater than those more subordinate or smaller or both.

Aging↗

Toxic effects of supplemental copper and roxarsone when fed alone or in combination to young pigs.

Three experiments were conducted to investigate the roxarsone (3-nitro-4-hydroxyphenylarsonic acid) X copper (Cu) interaction in weanling pigs. Supplemental roxarsone at 400 mg/kg diet decreased rate and efficiency of weight gain and caused visible neurological signs of toxicosis. Copper addition (CuSO4 X 5H2O) at a level of 650 mg Cu/kg diet likewise decreased weight gain and feed efficiency, and it also increased hepatic Cu deposition. The combination of these growth-depressing dosages of roxarsone and Cu resulted in a far greater reduction in gain and efficiency of feed utilization than was the case when either compound was fed alone. A growth-promoting dosage of Cu (250 mg/kg) increased weight gain by 32% in one experiment but showed no efficacy in alleviating the growth-depression resulting from feeding 400 mg/kg roxarsone. A roxarsone dosage of 100 mg/kg increased gain and feed efficiency. Surprisingly, the decreased weight gain in pigs fed 650 mg/kg Cu was ameliorated by feeding 100 mg/kg roxarsone concomitantly. This level of roxarsone also reduced liver Cu concentration substantially. It thus appears that the nature of the roxarsone X Cu interaction is dependent on the dose of each compound administered. Moreover, low-dose roxarsone administration appears to ameliorate Cu toxicity, but low-dose Cu feeding does not show efficacy against roxarsone toxicity.

Animals↗

Diet composition and surgical technique influence the postoperative recovery of portacaval shunted rats.

In a series of experiments, rats were subjected to end-to-side portacaval shunts using either suture or nonsuture surgical procedures. Rats were maintained on cereal-based or purified diets in pellet form. All rats recovered preoperative body weights within the experimental periods; however, recovery of preoperative body weight was influenced by surgical technique and diet composition. Portacaval shunted rats fed a cereal-based diet required a longer period of time (14 days) to reattain preoperative body weights when compared to portacaval shunted rats fed a purified diet (7 days). Once preoperative body weight was recovered, growth rates of portacaval shunted rats were parallel to those of sham-operated controls. Rats with a suture-portacaval shunt appeared most sensitive to the feeding of a cereal-based diet. All portacaval shunted rats and sham controls fed a purified diet regained preoperative body weights within 7 days after surgery. Sham controls fed either a cereal-based or purified diet recovered preoperative body weights within an average of 4 days. Suture-portacaval shunted rats consuming a pellet form cereal-based diet showed a low feed efficiency which could be reversed by feeding a pellet form purified diet. Rats subjected to a nonsuture glue-portacaval shunt and fed a cereal-based diet showed 50% lower feed efficiencies than did glue-portacaval shunted rats fed a purified diet. Portacaval shunted rats decreased their consumption of cereal-based diets but not of purified diets postoperatively.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Dietary conjugated linoleic acids and lipid source alter fatty acid composition of juvenile yellow perch, Perca flavescens.

A study was conducted to examine the effects of dietary conjugated linoleic acids (CLA; 0, 0.5 or 1.0 g/100 g total CLA) and lipid source (menhaden oil, soybean oil or a 1:1 mixture of menhaden:soybean oil) on growth rates and fatty acid composition of yellow perch. Dietary treatments were fed to apparent satiation to triplicate groups of fish initially weighing 37.9 g/fish. At the end of the 9-wk feeding trial, no significant differences were detected in weight gain or feed intake among fish fed any of the dietary treatments. Dietary CLA, lipid source and/or their interaction significantly affected feed efficiency, total liver lipid concentration, and muscle and liver fatty acid concentrations. Feed efficiency (g gain/g feed) was significantly lower in fish fed diets containing soybean oil (0.51) compared with fish fed menhaden oil (0.58) or menhaden:soybean oil (0.60). Liver total lipid concentrations were significantly reduced in fish fed 0.5 and 1.0 g/100 g CLA compared with fish fed the diets containing no CLA and in fish fed menhaden oil compared with those fed soybean oil or a 1:1 mixture of menhaden:soybean oil. Total CLA levels increased in both liver and muscle as dietary CLA concentration increased, irrespective of lipid source. However, total CLA concentrations were significantly lower in liver and muscle of fish fed soybean oil. Total muscle CLA concentrations were 0, 1.26 and 2.92 g/100 g fatty acids in fish fed diets containing menhaden oil and 0, 0.5 and 1.0 g/100 g CLA, respectively. Mono- and polyunsaturated fatty acid (PUFA) concentrations were significantly lower in muscle and liver of fish fed CLA compared with fish fed the diets containing no CLA. In contrast, liver concentrations of saturated fatty acids, 14:0, 16:0 and 18:0, were significantly higher in fish fed 1.0 g/100 g CLA.

Animals↗

Anticoccidial efficacy of narasin in battery cage trials.

Narasin is a polyether monocarboxylic acid antibiotic produced by Streptomyces aureofaciens. An extensive series of battery cage trials was conducted to evaluate the efficacy of narasin against recent field isolates of the pathogenic species of chicken coccidia. Statistical analyses of the results of these studies revealed that each successive increase in the concentration of narasin produced a significant reduction in the severity of cecal and intestinal lesions when compared with those in infected nonmedicated controls. Increasing the concentration of narasin also produced significant improvements in weight gain and feed efficiency when compared to gain and feed efficiency of infected nonmedicated controls. Maximum weight gain of birds infected with Eimeria tenella alone was obtained at a narasin concentration of 60 ppm, but birds infected with E. tenella plus intestinal species of coccidia, when medicated with 80 ppm narasin had weight gains significantly greater than those of birds medicated with 60 ppm narasin. Weight gain improvement decreased at narasin concentrations greater than or equal to 100 ppm. Results of these studies confirm the effectiveness of narasin in controlling coccidial infections produced by recent field isolates of the pathogenic species of chicken coccidia.

Animals↗

Comparison of two forms and two levels of lasalocid with monensin on feedlot cattle performance.

One growth and two finishing trials were conducted with beef steers to compare lasalocid sodium and monensin sodium. Pure lasalocid, mycelia-cake lasalocid and monensin, each added individually to commercial protein supplement blocks at 880 mg/kg, depressed (P greater than .05) block intake so that approximately 100 mg of each additive were consumed daily by each animal. Daily gain, feed intake and feed efficiency for steers receiving blocks containing additives did not differ from the corresponding measures for steers receiving control blocks. No differences were observed in diet dry matter digestibility, as determined with acid-insoluble ash as an internal marker. Both forms of lasalocid and monensin reduced (P greater than .05) the incidence and concentration of coccidia oocysts. By day 40, only one steer on each of the additive treatments was shedding oocysts (4.2% of additive-supplemented animals), compared with 41.5% of the control steers. During trial 2, steers fed pure lasalocid gained faster and more efficiently (P greater than .05) than those fed the mycelia-cake lasalocid, monensin or control diets. The improvement in feed efficiency over the control value was 10.0, 3.4 and 4.0% with pure lasalocid, mycelia-cake lasalocid and monensin, respectively (P greater than .05). Steers fed mycelia-cake lasalocid had higher (P greater than .05) dressing percentages than those fed pure lasalocid or monensin. Dressing percentage was the only carcass measurement affected. In trial 3, lasalocid at 30 and 45 g/ton and monensin at 30 g/ton improved (P greater than .05) feed efficiency by 7.5, 11.0 and 8.2%, respectively. No significant differences in incidence or concentration of oocysts were observed between treatment groups in trial 3, probably because steers were in slatted floor pens.

Animal Feed↗

Sulfur amino acid requirement of broiler chickens from 3 to 6 weeks of age.

Two experiments were conducted to determine if the TSAA level suggested by the National Research Council (NRC) in 1984 was adequate for optimum performance of 3 to 6-wk-old broilers, and to assess the effect of added copper on the TSAA requirement. A 2 x 3 x 2 factorial arrangement involving two copper (0 and 240 ppm) and three TSAA levels (.72, .78 and .84%) and two sexes was used in each experiment. Copper sulfate (CuSO4.5H2O) and DL-methionine were the dietary supplements to pelleted diets. There were four groups of 20 males or 20 females in each experiment, housed in floor pens. Methionine supplementation significantly improved body weight gain and feed efficiency in males but not in females. A significant copper x methionine interaction was observed, with methionine supplementation improving feed efficiency more in the presence of copper than in its absence. Abdominal fat per unit of body weight was significantly reduced by both methionine and copper in females but not in males. In a second experiment, methionine significantly improved body weight gain in males fed no added copper and significantly reduced abdominal fat per unit of body weight. Methionine supplementation improved body weight gain in males more in the absence than in the presence of copper (significant TSAA x copper interaction). Methionine supplementation had no significant effects on performance of females in the second experiment, but copper supplementation significantly improved feed efficiency.(ABSTRACT TRUNCATED AT 250 WORDS)

Amino Acids, Sulfur↗

Growth, feed consumption and efficiency of tested boars.

Daily gain, daily feed and feed efficiency (F:G) records were analyzed for 305 boar pairs (130 Duroc, 76 Hampshire, 35 Spot and 64 Yorkshire) tested at the Indiana Boar Test Station in 1975 and 1976. Residual phenotypic correlations indicated that faster-gaining pairs were on test fewer days, had larger daily feed intakes, were fatter at 104 kg and required less feed per kilogram gain. Pairs with larger daily feed intakes were on test fewer days, were fatter at 104 kg and required more feed per kilogram gain. At the same daily feed intake, pairs with more backfat tended to have lower daily gains and require more feed per kilogram gain. At the same daily gain level, pairs with more backfat had larger daily feed intakes and required more feed per kilogram gain. At the same feed efficiency level, pairs with larger daily gains had larger daily feed intakes, and pairs with more backfat had larger daily gains and daily feed intakes. At the same backfat level, pairs with larger daily feed intakes required more feed per kilogram gain, and pairs with larger daily gains had larger daily feed intakes and required less feed per kilogram gain.

Animal Feed↗

Digestible threonine requirement of broiler chickens during the period three to six and six to eight weeks posthatching.

Four experiments were conducted to determine the digestible Thr requirement of commercial broiler chickens (Ross x Hubbard) during the period 3 to 6 and 6 to 8 wk posthatching. Threonine-deficient corn-peanut meal basal diets (3,200 MEn/kg) contained 20% CP and 0.50% Thr for 3- to 6-wk-old birds, and 18.3% CP and 0.50% Thr for 6- to 8-wk-old birds. True digestibility assessment using cecectomized roosters indicated that Thr was 81% digestible in both basal diets. Thus, both diets contained 0.40% digestible Thr. Growth rate and feed efficiency of chicks fed the corn-peanut meal basal diets supplemented with surfeit Thr was equal to that of chicks fed a 20% CP Met-fortified corn-soybean meal diet. Graded doses of Thr produced marked responses (P < 0.05) in weight gain and feed efficiency in birds of both age groups. Maximal feed efficiency was achieved at 0.61% digestible Thr in 3- to 6-wk-old birds and at 0.52% digestible Thr in 6- to 8-wk-old birds. Extrapolating these digestible Thr requirements to total requirements for chicks consuming corn-soybean meal diets (Thr digestibility = 87%) results in estimates of 0.70 and 0.60% for broiler chickens during the growth periods 3 to 6 and 6 to 8 wk posthatching, respectively. These estimates are lower than those of NRC (1994) but are in close agreement with those obtained from ideal protein calculations, i.e., Thr requirements should be 70% of lysine requirements for chicks 3 to 8 wk of age.

Aging↗

Effect of protein levels and space allocations on performance of growing-finishing pigs.

We conducted two trials with growing-finishing pigs (Pig Improvement Company line 405 x Camborough 15) to evaluate the effects of space allocation on performance and CP requirements. In Trial 1, a 2 x 3 factorial (two levels of space, three CP regimens) was used with 252 pigs. Pigs were allocated to either .23, .28, .37, or .50 m2 per pig (crowded) or .37, .47, .60, or .74 m2 per pig (uncrowded) during the 18 to 36, 36 to 55, 55 to 91, and 91 to 127 kg weight periods, respectively. Diets contained 16.1, 18.6, or 21.1% (18 to 36 kg), 15.3, 17.8, or 20.3% (36 to 55 kg), 14.7, 17.2, or 19.7% (55 to 91 kg), and 12.8, 15.3, or 17.8% (91 to 127 kg) CP. The 16.1, 15.3, 14.7, and 12.8 % CP (control) diets contained 1.09, .86, .82, and .65% lysine, respectively. Crude protein levels (Trials 1 and 2) were achieved by substituting soybean meal for corn. In Trial 1, a CP x space interaction ( P < .03) for gain:feed suggested that feed efficiency of grower pigs was improved to a greater extent in uncrowded pigs than in crowded pigs. Grower pigs (18 to 55 kg) with less space had depressed (P < .05) feed intake and gain and a lower (P < .10) feed efficiency than uncrowded pigs. Added CP improved (P < .05) rate and efficiency of gain in grower pigs. Overall (18 to 127 kg), crowded pigs had reductions (P < .05) in gain (17.6%), feed intake (11.3%), and gain:feed ratio (7.1%) compared to uncrowded pigs. Trial 2 involved 216 finishing pigs in a 2 x 2 factorial (two levels of space, two CP regimens). Pigs were provided with either .37 or .50 m2 per pig (crowded) and .60 or .74 m2 per pig (uncrowded) during the 55 to 91 and 91 to 127 kg weight periods, respectively. The diets contained 14.1 or 17.1% CP (55 to 91 kg) and 12.1 or 15.1% CP (91 to 127 kg). Lysine levels were .67 and .53% for the 14.1 and 12.1% CP diets, respectively. Overall (55 to 127 kg), crowded pigs had depressed (P < .05) gains (15.4%), feed intakes (9.5%), and feed efficiencies (6.8%) compared with uncrowded pigs. Increasing CP resulted in improved (P < .05) ADG (7.4%) and gain:feed (8.3%) in crowded and uncrowded pigs. The data suggest that pigs with lower feed intakes as a result of space restrictions do not have higher CP requirements than those with more space.

Animal Feed↗

The use of low protein liquid diets to determine the methionine requirement and the efficacy of methionine hydroxy analogue for the three-week-old pig.

A mechanical feeding device that dispenses liquid diets hourly was developed to feed 3-week-old pigs under carefully controlled and sanitary conditions. Pigs were weaned at 19-21 days of age, placed in individual cages of the automatic feeder, and trained to eat low protein (9%) milk diets, which were supplemented with essential amino acids, glutamic acid and monosodium glutamate so as to be equivalent to 14% protein nitrogen. The basal 9% protein diet contained 0.25% L-methionine and 0.08% L-cysteine and was supplemented with L- or DL-methionine or DL-methionine hydroxy analogue (MHA) at various levels for evaluation of the methionine requirement. Pigs fed the basal diet showed a significant decrease in gain, feed efficiency and plasma urea (P less than 0.05) relative to animals that received supplemental methionine or MHA. The plasma methionine concentration remained below 0.2 mumol/ml plasma when pigs were fed diets containing 0.25-0.51% methionine; however, a significant increase in plasma methionine (P less than 0.05) was seen when pigs were fed diets that contained greater than 0.51% methionine activity in the form of L- or DL-methionine or DL-MHA. The highest average daily gain (470 g) obtained with a diet containing 0.51% methionine was significantly better (P less than 0.05) than diets containing more or less L- or DL-methionine, and the feed efficiency of this diet (1.58 kg feed per kilogram gain) was also significantly better (P less than 0.05) than the feed efficiency obtained with other dietary methionine levels. MHA (0.17%) added to the basal diet significantly improved the average daily gain (P less than 0.05) and lead to a significant decrease in plasma urea (P less than 0.05) relative to pigs that received the basal diet. Supplemental MHA (greater than 0.51% methionine level) produced significant increases (P less than 0.05) in plasma methionine. These data show that the methionine requirement of the 3-week-old pig can be satisfied with L- or DL-methionine or DL-MHA at a level equal to 0.51% of the dietary solids and that these three are equivalent. These experiments also show that low protein diets supplemented with amino acids can be used for liquid feeding of pigs weaned at 3 weeks of age, and average daily gains of greater than 400 g can be realized.

Amino Acids↗