Roughage level and supplemental fat for newly received finishing calves: effects on growth performance, health, and physiological responses

Author:

Gouvêa Vinícius N12ORCID,Oliveira Mario O3,Giacomelli Hiam Jardel M4,Colombo Eduardo A2,Batistel Fernanda5,Santos Flávio A P3ORCID,Duff Glenn C6,Marques Rodrigo S7ORCID,Cooke Reinaldo F2ORCID

Affiliation:

1. Texas A&M AgriLife Research and Extension Center , Amarillo, TX 79106 , USA

2. Department of Animal Science, Texas A&M University , College Station, TX 77845 , USA

3. Department of Animal Science, “Luiz de Queiroz” College of Agriculture, University of São Paulo , Piracicaba, SP 13418900 , Brazil

4. Department of Animal Science, Santa Catarina State University , Chapecó, SC 89815630 , Brazil

5. Department of Animal Science, University of Florida , Gainesville, FL 32611 , USA

6. Clayton Livestock Research Center, New Mexico State University , Clayton, NM 88415 , USA

7. Department of Animal and Range Sciences, Montana State University , Bozeman, MT 59717 , USA

Abstract

AbstractThis experiment evaluated the effects of roughage levels and supplemental fat on intake, growth performance, health, and physiological responses of newly received finishing cattle during 58-d receiving period. A total of 72 crossbred steers (initial body weight [BW] = 200 ± 13 kg) were used in a randomized complete block design with a 2 × 2 factorial arrangement of treatments, consisting of two roughage levels (wheat hay at 30% [R30] or 60% [R60]; dry matter [DM] basis) and two levels of supplemental fat (yellow grease at 0% [−FAT; no additional fat] or 3.5% [+FAT]; DM basis). Upon arrival, calves were individually weighed, blocked by off-truck shrunk BW, and assigned to 24 soil-surfaced pens (three calves per pen). Shrunk BW was also collected on day 58 for the calculation of average daily gain (ADG). Throughout the study, calves were assessed for bovine respiratory disease (BRD). Effects of roughage level × supplemental fat interaction were only observed for diet particle size distribution and estimated physically effective neutral detergent fiber (peNDF) of diets (P ≤ 0.10). Adding fat to R60 diets tended to increase the percentage of particles retained in the 8-mm screen (P = 0.06) and the estimated peNDF (P = 0.10), but did not affect R30 diets. Dietary roughage level did not affect DM intake (DMI; P = 0.85). Calves-fed R30 tended to have greater ADG and final BW than calves-fed R60 (P ≤ 0.08). Gain efficiency (gain:feed ratio; G:F) was greater for calves-fed R30 than calves-fed R60 (P = 0.01). Dietary roughage level did not affect morbidity and mortality (P ≥ 0.11). Supplemental fat did not affect DMI (P = 0.6) but tended (P = 0.09) to increase ADG compared to –FAT diets. The G:F was greater for calves-fed +FAT than –FAT (P = 0.03). The +FAT diet tended (P = 0.10) to increase the number of retreatments against BRD compared to −FAT, although the total number of antimicrobial treatments required to treat sick calves (P = 0.78) and the mortality rate (P = 0.99) were not affected by supplemental fat. Feeding +FAT diet tended (P ≤ 0.09) to increase plasma concentration of cortisol and immunoglobulin-G compared to –FAT. In summary, feeding 30% roughage diets or adding 3.5% yellow grease (DM basis) as supplemental fat increased G:F during the feedlot receiving period.

Publisher

Oxford University Press (OUP)

Subject

Genetics,Animal Science and Zoology,General Medicine,Food Science

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