scholarly journals PSX-8 Effects of hair sheep breed and region of origin on feed dry matter required for maintenance without and with a marked feed restriction

2019 ◽  
Vol 97 (Supplement_3) ◽  
pp. 464-465
Author(s):  
Dereje Tadesse ◽  
Ryszard Puchala ◽  
Arthur L Goetsch

Abstract Effects of hair sheep breed and region of origin on feed required for maintenance without and with a substantial restriction were determined with 46 Dorper, 47 Katahdin, and 41 St. Croix females (initial BW of 62, 62, and 51 kg, respectively, SEM=1.43; 3.8±0.18 yr of age, 1.2–11.7) from 45 commercial farms in midwest, northwest, southeast, and central Texas regions of the USA. A 50% concentrate pelleted diet was fed, with the amount varied in the first 4 wk for stable BW and average DM intake in wk 3–4 relative to BW0.75 considered DM required for maintenance without restriction (DMm-m). Feed offered in wk 6–10 was 55% of DMm-m, with DM intake relative to BW0.75 in wk 9–10 considered the requirement with feed restriction (DMm-r). Region had little effect on any measure. The DMm-m was slightly greater (P < 0.05) for St. Croix than for Dorper and Katahdin (49.4, 48.9, and 50.9 g/kg BW0.75 for Dorper, Katahdin, and St. Croix, respectively; SEM=0.48). The decline in BW during the restriction phase was relatively small and similar among breeds (wk 9–10 vs. 3–4: 3.6, 3.2, and 2.9 kg for Dorper, Katahdin, and St. Croix, respectively; SEM=0.21). The DMm-r averaged 43% less than DMm-m, again being greater (P ≤ 0.056) for St. Croix than for Dorper and Katahdin (28.3, 27.9, and 29.1 g/kg BW0.75 for Dorper, Katahdin, and St. Croix, respectively; SEM=0.28). The DMm-m and DMm-r were highly related, indicating that animals would rank similarly at both levels of intake, and variation was similar among breeds. In conclusion, the amount of feed required for BW maintenance was greatest for St. Croix regardless of feed restriction, but differences were minor. The hair sheep exhibited considerable capacity for decreasing the feed requirement for maintenance when offered feed was markedly restricted.

2019 ◽  
Vol 97 (Supplement_1) ◽  
pp. 76-76
Author(s):  
Dereje Tadesse ◽  
Ryszard Puchala ◽  
Terry A Gipson ◽  
Arthur L Goetsch

Abstract Forty-six Dorper, 46 Katahdin, and 43 St. Croix female sheep (initial BW of 58, 59, and 46 kg, respectively, SEM = 1.75; 3.3 ± 0.18 yr of age, 2.6 - 3.7) from 45 commercial farms in four regions of the USA (Midwest, Northwest, Southeast, and central Texas) were used to evaluate responses to high heat load index (HLI) conditions in a central facility. The four trials entailed sequential 2-wk periods with target HLI during day/nighttime of 70/70 (thermoneutral zone conditions during the day and night), 85/70, 90/77, and 95/81, with weekly measures at 0700 (before increased daytime HLI), 1300, and 1700 h (preceding lower nighttime HLI). Rectal temperature (ºC) in period 3 (38.64, 38.66, and 38.48 at 0700 h, 39.08, 39.23, and 38.84 at 1300 h, and 39.20, 39.15, and 38.99 at 1700 h) and period 4 (38.71, 38.90, and 38.51 at 0700 h, 39.18, 39.12, and 38.83 at 1300 h, and 39.45, 39.34, and 39.07 at 1700 h for Dorper, Katahdin, and St. Croix, respectively) (SEM = 0.054, 0.037, and 0.038 at 0700, 1300, and 1700 h, respectively) ranked St. Croix < Katahdin < Dorper. Nonetheless, there were corresponding differences in respiration rate (breaths/min) in period 3 (63.1, 56.8, and 49.6 at 0700 h, 133.8, 125.8, and 115.7 at 1300 h, and 125.5, 114.7, and 106.8 at 1700 h) and period 4 (81.6, 72.2, and 54.5 at 0700 h, 149.2, 143.6, and 137.3 at 1300 h, and 147.0, 141.4, and 134.2 at 1700 h for Dorper, Katahdin, and St. Croix, respectively) (SEM = 3.12, 4.11, and 3.62 at 0700, 1300, and 1700 h, respectively). In conclusion, based on rectal temperature and respiration rate the overall impact of region was minimal and resilience to high HLI was greatest for St. Croix and lowest for Dorper sheep


2019 ◽  
Vol 98 (1) ◽  
Author(s):  
Ali Hussein ◽  
Ryszard Puchala ◽  
Italo Portugal ◽  
Blake K Wilson ◽  
Terry A Gipson ◽  
...  

Abstract Resilience to restricted availability of drinking water was evaluated with 44 Dorper (DOR; initial age = 3.7 ± 0.34 yr), 42 Katahdin (KAT; 3.9 ± 0.36 yr), and 42 St. Croix (STC; 2.7 ± 0.29 yr) sheep from 46 farms in 4 regions of the USA (Midwest, MW; Northwest, NW; Southeast, SE; central Texas, TX). Ad libitum water intake was determined during 2 wk of period 1, with 75% of this amount offered in 2 wk of period 2 and 50% in 5 wk (i.e., 5 to 9) of period 3. Body weight and DMI in week 2 of period 1 and week 9 of period 3 were analyzed with a mixed effects model. There was a breed × period interaction (P = 0.023) in water intake relative to BW (6.17, 6.69, and 7.19 in period 1 and 3.04%, 3.26%, and 3.36% BW in period 3 for DOR, KAT, and STC, respectively; SEM = 0.219). There were 3-way interactions of breed, region, and period in BW and DMI in g/d (P &lt; 0.010). For STC, BW was greater (P &lt; 0.05) in period 3 vs. 1 for all regions (50.1, 47.6, 42.4, and 45.8 kg in period 1 and 51.9, 49.3, 44.5, and 47.7 kg in period 3), whereas there was only a period difference for DOR from the MW and SE (61.4, 66.0, 64.6, and 59.6 kg in period 1 and 60.6, 66.5, 65.7, and 62.4 kg) and for KAT from TX (50.1, 47.6, 42.4, and 45.8 kg in period 1 and 51.9, 49.3, 44.5, and 47.7 kg in period 3 for MW, NW, SE, and TX, respectively; SEM = 2.57). In accordance, DMI by STC was similar (P &gt; 0.05) between periods for all regions (1.25, 1.17, 1.06, and 1.16 kg/d in period 1 and 1.12, 1.08, 1.02, and 1.02 kg/d in period 3), as was also the case for DOR from MW and SE but not from NW or TX (1.54, 1.50, 1.30, and 1.41 kg/d in period 1 and 1.41, 1.13, 1.25, and 1.18 kg/d in period 3) and KAT from TX though not from the other 3 regions (1.47, 1.52, 1.48, and 1.40 kg/d in period 1 and 1.06, 1.15, 1.30, and 1.33 kg/d in period 3 for MW, NW, SE, and TX, respectively; SEM = 0.061). In conclusion, based on BW and DMI with water intake restricted at 50% of ad libitum consumption by individual animals, STC appeared more consistent in display of high resilience to restricted water availability, although DOR from 2 regions and KAT from 1 also were relatively resilient. The results suggest benefit to breed comparisons of inclusion of animals from multiple areas and that environmental conditions of regions may have disparate effects with different breeds of hair sheep.


2021 ◽  
Vol 99 (Supplement_3) ◽  
pp. 487-487
Author(s):  
Dereje L Tadesse ◽  
Ryszard Puchala ◽  
Terry A Gipson ◽  
Arthur L Goetsch

Abstract Forty-six Dorper, 47 Katahdin, and 41 St. Croix female sheep (initial body weight of 62, 62, and 51 kg, respectively, SEM=1.43; 3.8±0.18 yr of age) from 45 commercial farms in Midwest, Northwest, Southeast, and central Texas regions of the United States were used to evaluate effects of feed restriction on concentrations of blood constituents. A 50% concentrate pelleted diet was fed, with the amount varied in the first 4 wk to achieve stable BW. The amount of feed offered in wk 5–10 was set at 55% of that consumed in wk 3–4. Blood was sampled at the end of wk 3, 4, 6, 8, and 10, with constituent levels in wk 4 and 10 assumed relevant to conditions with different maintenance energy requirements (i.e., fed at maintenance and approximately 43% lower with restricted intake). There were some differences among breeds such as ones based on samples collected at all times in urea nitrogen (14.0, 13.7, and 15.4 mg/dl; SEM=0.31) and creatinine (0.945, 0.836, and 0.809 mg/dl for Dorper, Katahdin, and St. Croix, respectively; SEM=0.0253) but relatively few among regions and only one interaction between week and breed or region. There was a trend for a difference (P = 0.051) between wk 4 and 10 in the concentration of glucose (51.9 and 54.2 mg/dl; SEM=0.90), and there were differences (P &lt; 0.05) in levels of lactate (23.9 and 20.3 mg/dl; SEM=0.89), urea N (16.4 and 13.0 mg/dl; SEM= 0.25), creatinine (0.808 and 0.919 mg/dl; SEM=0.0165), triglycerides (31.8 and 25.5 mg/dl; SEM=0.63), cholesterol (67.5 and 74.7 mg/dl; SEM=1.66), and cortisol (10.55 and 8.31 ng/ml for wk 4 and 10, respectively; SEM=0.0542). In conclusion, similar responses of different hair sheep breeds in blood constituent levels to feed restriction is in accordance with comparable effects on body weight and the maintenance energy requirement previously reported.


2020 ◽  
Vol 98 (Supplement_3) ◽  
pp. 5-5
Author(s):  
Katie J Heiderscheit ◽  
Erin Deters ◽  
Alyssa Freestone ◽  
Joshua Peschel ◽  
Stephanie L Hansen

Abstract The objective was to investigate effects of 18 h feed and water restriction or transit on cattle behavior. Angus-cross steers (36; 353 ± 33 kg) were housed in pens of 6 and assigned to treatments: control (CON), full access to feed and water; deprived (DEPR), no feed or water for 18 h; or transported (TRANS), trucked for 18 h. Individual BW (n = 12 steers/treatment) was recorded on d 0, 1, 3, 8, and 14, and individual dry matter intake (DMI) was determined via GrowSafe bunks. Bunk displacements on d 1 were recorded for each pen (n = 2 pens/treatment) by one trained observer continuously for 2 h in 10 min intervals via video analysis. Steer need preferences were assessed as time individuals took to perform behaviors (eat, drink, lay) after treatments ended on d 1. Data were analyzed using Proc Mixed of SAS with fixed effect of treatment; displacements, BW, and DMI were analyzed as repeated measures. Upon return to pens, time to eat or drink did not differ between DEPR and TRANS (P ≥ 0.17), but time to lay was 70.5 min for DEPR vs. 16.5 min for TRANS (P = 0.01). Displacements were greater for DEPR than CON or TRANS during the first 90 min after accessing feed, while CON displaced more frequently than TRANS for the first 30 min (treatment × time; P = 0.02). While DMI for TRANS was not recovered until d 2, DEPR and CON had similar DMI on d 1 (treatment × day; P &lt; 0.01). Similarly, TRANS BW were, and DEPR tended to be, lesser than CON on d 1; however, BW among treatments were not different on other days (treatment × day; P &lt; 0.01). Thus, restricting feed increases aggressive interactions at the bunk and cattle trucked long distances are quick to lay down when allowed. These behaviors should be considered when managing an unintentional feed restriction event or receiving cattle into the feedlot.


2020 ◽  
Vol 98 (Supplement_3) ◽  
pp. 175-175
Author(s):  
Élisabeth Chassé ◽  
Frédéric Guay ◽  
Marie-Pierre Létourneau-Montminy

Abstract This study was conducted to determine the effect of pelleting on the digestibility of corn-soybean meal-based diet in growing pigs. Two trials with 6 pigs cannulated at the distal ileum were conducted. In each trial, pigs were assigned to each treatment following a crossover design. In each experiment, the same diet, composed of corn and soybean meal with 10% wheat from two different feed mills, was served in pellet or mash form. Pelleting allowed an increase in digestibility in one of the trials. Apparent ileal digestibility (AID) of dry matter (DM), crude protein (CP) and digestible energy (DE) were improved with pelleting by 8, 12 and 9% (P&lt; 0.01). The AID of amino acids (AA) was also improved (P&lt; 0.05). Apparent total tract digestibility (ATTD) was increased by pelleting in DM, CP and DE by 5, 7 and 6% respectively (P&lt; 0.01). The digestibility of the mash diet in experiment 1 was lower than in the pelleted diet in the experiment 1 and both diets in experiment 2 as shown by the interaction Pelleting X Trial which was significant for the AID and ATTD of DM, CP and DE (P&lt; 0.01). Therefore, in experiment 1, pelleting allows to improve the digestibility of diet to the same level as in experiment 2. The AID of CP was higher by 37% in the mash diet from the second experiment compared to the one in the first experiment. Even though the same ingredients were chosen in the two experiments, this shows the variability in digestibility existing between different feed mills and ingredient sources. This difference was not observed in pelleted diets. The results obtained in these two trials show that pelleting can reduce the variability of digestibility and then give a good digestibility of diets even if the ingredients are of different quality or sources.


2021 ◽  
Vol 99 (Supplement_2) ◽  
pp. 41-41
Author(s):  
Luana L Ribeiro ◽  
Ryszard Puchala ◽  
Arthur L Goetsch

Abstract Eighteen Katahdin (initial body weight of 74 kg; SEM=1.8) and 18 St. Croix ewes (55 kg; SEM=1.3) were used in an experiment with four 6-wk periods to determine effects of dietary level of Sericea lespedeza (Lespedeza cuneata) containing 5.8% condensed tannins (dry matter; DM) and other supplemental ingredients on feed intake, digestion, and ruminal methane emission. Diets were consumed ad libitum and included a concentrate supplement at 0.45% BW (DM). Alfalfa was the basal forage for control (CON), ionophore (ION; lasalocid at 33 mg/kg DM), coconut oil (3%; CCO), and soybean oil (3%; SBO) diets, and forage in moderate- and high-lespedeza diets was a 1:1 mixture of alfalfa and lespedeza and all lespedeza, respectively (MSL and HSL, respectively). Data were analyzed with a 2 x 6 factorial arrangement of treatments, period as a repeated measure, and a mixed effects model. Digestion and methane emission were determined in weeks 4, 10, 16, and 22. Total DM intake was similar among treatments (P = 0.070) but numerically greatest for HSL (1,197, 1,297, 1,491, 1,203, 1,195, and 1,207 g/d; SEM=81.1), OM digestibility ranked (P &lt; 0.05) CON, ION, CCO, and SBO &gt; MSL &gt; HSL (69.2, 57.6, 50.3, 66.3, 66.0, and 68.7%; SEM=1.57), and digestible OM intake was similar among treatments (P = 0.517; 697, 607, 589, 598, 635, and 690 g/d for CON, MSL, HSL, ION, CCO, and SBO, respectively; SEM=50.4). There were no interactions involving time in ruminal methane emission, which was greatest among treatments for CON (P &lt; 0.05) in MJ/d (1.39, 0.93, 0.90, 0.92, 0.85, and 0.96; SEM=0.069) and relative to digestible energy intake (20.6, 15.7, 16.8, 16.1, 13.7, and 13.9% for CON, MSL, HSL, ION, CCO, and SBO, respectively; SEM=1.223). In conclusion, dietary inclusion of Sericea lespedeza may offer a natural and sustainable means of decreasing ruminal methane emission by hair sheep as previously shown in goats, with a magnitude of impact similar to that of some other supplemental dietary ingredients.


1996 ◽  
Vol 127 (4) ◽  
pp. 549-553 ◽  
Author(s):  
O. Mora ◽  
A. Shimada ◽  
F. J. Ruiz

SUMMARYTwo experiments were done in Mexico (1992–93) to determine the response of goats to different periods of feed restriction on liveweight, organ weights and tissue composition. In each, the weight, body condition and daily dry matter intake (DM1) of two groups of 12 female, adult, non-lactating, non-pregnant, Nubian crossbred goats were recorded for 7 weeks (stabilization period; SP), to allow the animals to reach and maintain their liveweight and body condition. At the end of the SP the animals in Expt 1 (RP1) were feed restricted for 18 weeks and for 36 weeks in Expt 2 (RP2). Animals were divided into three groups receiving either 100 (FL1), 80 (FL2) or 60% (FL3) of the levels of DM1 previously observed. At the end of each experimental period all animals were slaughtered, carcass weights were recorded and viscerae were weighed.A sample of the soft tissues was chemically analysed. There were no significant changes in body condition in either experiment (P > 0·05). None of the feeding levels had an effect on carcass weight or the chemical composition of soft tissues (P > 0·05). Liver weights (as a proportion of slaughter weight) were significantly different among goats fed at different feeding levels in both experiments. The results of this study show the adaptation capacity of adult goats to medium and long term malnutrition, and the importance of the liver as a source for the generation of energy and for sustaining protein turnover. This could be especially important for goats grazing in arid and semiarid zones where dry periods can last for months and feed availability is therefore sometimes limited.


Foods ◽  
2019 ◽  
Vol 8 (12) ◽  
pp. 669 ◽  
Author(s):  
Thomas Bøhn ◽  
Erik Millstone

Glyphosate-tolerant (GT) soybeans dominate the world soybean market. These plants have triggered increased use of, as well as increased residues of, glyphosate in soybean products. We present data that show farmers have doubled their glyphosate applications per season (from two to four) and that residues of late season spraying of glyphosate (at full bloom of the plant) result in much higher residues in the harvested plants and products. GT soybeans produced on commercial farms in the USA, Brazil and Argentina accumulate in total an estimated 2500–10,000 metric tonnes of glyphosate per year, which enter global food chains. We also review studies that have compared the quality of GT soybeans with conventional and organic soybeans. Feeding studies in Daphnia magna have shown dose-related adverse effects (mortality, reduced fecundity and delayed reproduction) of glyphosate residues in soybeans, even at glyphosate concentrations below allowed residue levels. We argue that GT soybeans need to be tested in fully representative and realistic contexts. However, the current risk assessment system has only required and received data from field trials with beans that were sprayed with much lower doses of glyphosate as compared to contemporary commercial farms. This has left knowledge gaps and a potentially serious underestimation of health risks to consumers.


2001 ◽  
Vol 2001 ◽  
pp. 183-183
Author(s):  
H.C.F. Wicks ◽  
J.D. Leaver

The aim was to estimate the influence of genetic merit (£PIN95) and level of concentrate feeding (Cgrp) on predicted total dry matter intake (tDMI) of individual cows, using records collected from commercial farms. The method described by Wicks & Leaver (2000) was used to estimate individual daily dry matter intakes from seven farms, totalling 4282 monthly records over a two-year period. The method was based on milk production records supplemented by body condition scores and height at withers, which were used to calculated the ME requirements of individual animals. All the records were collected, from autumn and winter (July to March) calving cows during the housed period (August to March).


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