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Effects of bale feeder design on hay waste, intake, and apparent diet digestibility in gestating beef cows

Two experiments were conducted to determine the effects of feeder design on hay intake, apparent diet digestibility, and hay waste in gestating beef cows. Native tallgrass prairie hay and a protein supplement was fed throughout both experiments. In Exp. 1, 56 crossbred cows were used in a Latin squa...

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Autores principales: Sexten, Austin J, Moore, Mikayla F, McMurphy, Casey P, Mourer, Gant L, Linneen, Sara K, Brown, Michael A, Richards, Chris J, Lalman, David L
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8281098/
https://www.ncbi.nlm.nih.gov/pubmed/34278238
http://dx.doi.org/10.1093/tas/txab104
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author Sexten, Austin J
Moore, Mikayla F
McMurphy, Casey P
Mourer, Gant L
Linneen, Sara K
Brown, Michael A
Richards, Chris J
Lalman, David L
author_facet Sexten, Austin J
Moore, Mikayla F
McMurphy, Casey P
Mourer, Gant L
Linneen, Sara K
Brown, Michael A
Richards, Chris J
Lalman, David L
author_sort Sexten, Austin J
collection PubMed
description Two experiments were conducted to determine the effects of feeder design on hay intake, apparent diet digestibility, and hay waste in gestating beef cows. Native tallgrass prairie hay and a protein supplement was fed throughout both experiments. In Exp. 1, 56 crossbred cows were used in a Latin square arrangement. Feeder design treatments included a conventional open bottom steel ring (OBSR), an open bottom polyethylene pipe ring (POLY); a sheeted bottom steel ring (RING), and a sheeted bottom steel ring with a basket (BASK). Cows were weighed and allotted based on BW to one of four previously grazed 2.0 ha paddocks equipped with a concrete feeding pad. Fourteen cows were assigned to each paddock and three round bales were fed consecutively within each treatment period. The cows acclimated to the feeders while the first bale was being consumed. Subsequently, hay waste data were collected while the second and third bale within each period were being consumed. Waste was measured for each bale at 24, 48, 72, and 96 h after each bale was introduced into the pen. Hay waste was significantly affected by hay feeder design with 19.7, 21.1, 12.4, and 5.5% of original bale weight wasted for OBSR, POLY, RING, and BASK, respectively (P < 0.01). There was a feeder design × day interaction (P < 0.01) with greater waste when the bale was first introduced into the pen in OBSR, POLY, and RING feeders and gradually declining thereafter, while waste from the BASK feeder was consistently low. There was a tendency (P = 0.06) for cows eating from OBSR feeders to consume less hay than cows eating from RING feeders. Feeder design did not influence apparent diet digestibility (P = 0.46). In Exp. 2, 64 crossbred cows (body weight = 590 ± 59 kg) were used to determine waste, forage intake, and apparent diet digestibility when hay was fed from a sheeted bottom steel ring (RING) or a RING feeder with a cone insert (CONE). More hay was wasted when cows were fed from RING feeders compared to CONE feeders (11.9% vs. 4.8%, P < 0.01). Feeder design had no effect on DMI or apparent digestibility (P > 0.45). Hay savings from adopting a more conservative feeder design can have a dramatic influence on hay utilization by beef cows and thus on cost of production.
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spelling pubmed-82810982021-07-16 Effects of bale feeder design on hay waste, intake, and apparent diet digestibility in gestating beef cows Sexten, Austin J Moore, Mikayla F McMurphy, Casey P Mourer, Gant L Linneen, Sara K Brown, Michael A Richards, Chris J Lalman, David L Transl Anim Sci Forage Based Livestock Systems Two experiments were conducted to determine the effects of feeder design on hay intake, apparent diet digestibility, and hay waste in gestating beef cows. Native tallgrass prairie hay and a protein supplement was fed throughout both experiments. In Exp. 1, 56 crossbred cows were used in a Latin square arrangement. Feeder design treatments included a conventional open bottom steel ring (OBSR), an open bottom polyethylene pipe ring (POLY); a sheeted bottom steel ring (RING), and a sheeted bottom steel ring with a basket (BASK). Cows were weighed and allotted based on BW to one of four previously grazed 2.0 ha paddocks equipped with a concrete feeding pad. Fourteen cows were assigned to each paddock and three round bales were fed consecutively within each treatment period. The cows acclimated to the feeders while the first bale was being consumed. Subsequently, hay waste data were collected while the second and third bale within each period were being consumed. Waste was measured for each bale at 24, 48, 72, and 96 h after each bale was introduced into the pen. Hay waste was significantly affected by hay feeder design with 19.7, 21.1, 12.4, and 5.5% of original bale weight wasted for OBSR, POLY, RING, and BASK, respectively (P < 0.01). There was a feeder design × day interaction (P < 0.01) with greater waste when the bale was first introduced into the pen in OBSR, POLY, and RING feeders and gradually declining thereafter, while waste from the BASK feeder was consistently low. There was a tendency (P = 0.06) for cows eating from OBSR feeders to consume less hay than cows eating from RING feeders. Feeder design did not influence apparent diet digestibility (P = 0.46). In Exp. 2, 64 crossbred cows (body weight = 590 ± 59 kg) were used to determine waste, forage intake, and apparent diet digestibility when hay was fed from a sheeted bottom steel ring (RING) or a RING feeder with a cone insert (CONE). More hay was wasted when cows were fed from RING feeders compared to CONE feeders (11.9% vs. 4.8%, P < 0.01). Feeder design had no effect on DMI or apparent digestibility (P > 0.45). Hay savings from adopting a more conservative feeder design can have a dramatic influence on hay utilization by beef cows and thus on cost of production. Oxford University Press 2021-06-10 /pmc/articles/PMC8281098/ /pubmed/34278238 http://dx.doi.org/10.1093/tas/txab104 Text en © The Author(s) 2021. Published by Oxford University Press on behalf of the American Society of Animal Science. https://creativecommons.org/licenses/by-nc/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution-NonCommercial License (http://creativecommons.org/licenses/by-nc/4.0/ (https://creativecommons.org/licenses/by-nc/4.0/) ), which permits non-commercial re-use, distribution, and reproduction in any medium, provided the original work is properly cited. For commercial re-use, please contact journals.permissions@oup.com
spellingShingle Forage Based Livestock Systems
Sexten, Austin J
Moore, Mikayla F
McMurphy, Casey P
Mourer, Gant L
Linneen, Sara K
Brown, Michael A
Richards, Chris J
Lalman, David L
Effects of bale feeder design on hay waste, intake, and apparent diet digestibility in gestating beef cows
title Effects of bale feeder design on hay waste, intake, and apparent diet digestibility in gestating beef cows
title_full Effects of bale feeder design on hay waste, intake, and apparent diet digestibility in gestating beef cows
title_fullStr Effects of bale feeder design on hay waste, intake, and apparent diet digestibility in gestating beef cows
title_full_unstemmed Effects of bale feeder design on hay waste, intake, and apparent diet digestibility in gestating beef cows
title_short Effects of bale feeder design on hay waste, intake, and apparent diet digestibility in gestating beef cows
title_sort effects of bale feeder design on hay waste, intake, and apparent diet digestibility in gestating beef cows
topic Forage Based Livestock Systems
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8281098/
https://www.ncbi.nlm.nih.gov/pubmed/34278238
http://dx.doi.org/10.1093/tas/txab104
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