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The influence of feed energy density and a formulated additive on rumen and rectal temperature in hanwoo steers

  • Sangbuem Cho
  • , David Tinotenda Mbiriri
  • , Kwanseob Shim
  • , A. Leum Lee
  • , Seong Jin Oh
  • , Jinho Yang
  • , Chaehwa Ryu
  • , Young Hoon Kim
  • , Kang Seok Seo
  • , Jung Il Chae
  • , Young Kyoon Oh
  • , Nag Jin Choi*
  • *Corresponding author for this work
  • Jeonbuk National University
  • Konkuk University
  • Sunchon National University
  • United States Food and Drug Administration

Research output: Contribution to journalJournal articlepeer-review

Abstract

The present study investigated the optimum blending condition of protected fat, choline and yeast culture for lowering of rumen temperature. The Box Benken experimental design, a fractional factorial arrangement, and response surface methodology were employed. The optimum blending condition was determined using the rumen simulated in vitro fermentation. An additive formulated on the optimum condition contained 50% of protected fat, 25% of yeast culture, 5% of choline, 7% of organic zinc, 6.5% of cinnamon, and 6.5% of stevioside. The feed additive was supplemented at a rate of 0.1% of diet (orchard grass:concentrate, 3:7) and compared with a control which had no additive. The treatment resulted in lower volatile fatty acid (VFA) concentration and biogas than the control. To investigate the effect of the optimized additive and feed energy levels on rumen and rectal temperatures, four rumen cannulated Hanwoo (Korean native beef breed) steers were in a 4x4 Latin square design. Energy levels were varied to low and high by altering the ratio of forage to concentrate in diet: low energy (6:4) and high energy (4:6). The additive was added at a rate of 0.1% of the diet. The following parameters were measured; feed intake, rumen and rectal temperatures, ruminal pH and VFA concentration. This study was conducted in an environmentally controlled house with temperature set at 30°C and relative humidity levels of 70%. Steers were housed individually in raised crates to facilitate collection of urine and feces. The adaptation period was for 14 days, 2 days for sampling and 7 days for resting the animals. The additive significantly reduced both rumen (p<0.01) and rectal temperatures (p<0.001) without depressed feed intake. There were interactions (p<0.01) between energy level and additive on ruminal temperature. Neither additive nor energy level had an effect on total VFA concentration. The additive however, significantly increased (p<0.01) propionate and subsequently had lower acetate:propionate (A/P) ratios than non-additive supplementation. High concentrate diets had significantly lower pH. Interactions between energy and additive were observed (p<0.01) in ammonia nitrogen production. Supplementation of diets with the additive resulted in lower rumen and rectal temperatures, hence the additive showed promise in alleviating undesirable effects of heat stress in cattle.

Original languageEnglish
Pages (from-to)1652-1662
Number of pages11
JournalAsian-Australasian Journal of Animal Sciences
Volume27
Issue number11
DOIs
StatePublished - 2014.11.1

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 7 - Affordable and Clean Energy
    SDG 7 Affordable and Clean Energy

Keywords

  • Beef cattle
  • Feed additive
  • Heat stress
  • Rectal temperature
  • Rumen temperature

Quacquarelli Symonds(QS) Subject Topics

  • Agriculture & Forestry

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