Evaluation of carinata meal or cottonseed meal as protein sources in silage-based diets on behavior, nutrient digestibility, and performance in backgrounding beef heifers.
backgrounding cattle
carinata meal
corn silage
cottonseed meal
replacement heifers
sorghum silage
Journal
Journal of animal science
ISSN: 1525-3163
Titre abrégé: J Anim Sci
Pays: United States
ID NLM: 8003002
Informations de publication
Date de publication:
03 Jan 2023
03 Jan 2023
Historique:
received:
04
08
2022
accepted:
08
12
2022
pmc-release:
20
02
2024
entrez:
22
2
2023
pubmed:
23
2
2023
medline:
25
2
2023
Statut:
ppublish
Résumé
Changing climatic conditions are imposing risks and diminishing yields in agriculture. Sorghum (Sorghum bicolor) silage is a feasible option for backgrounding beef cattle in terms of economic risk management and animal productivity when compared with corn (Zea mays) silage, due to its drought adaptability. Similarly, Brassica carinata meal has proven to be a viable alternative as a protein supplement in forage-based beef cattle systems, when included at 10% of the diet dry matter (DM). However, research is scarce regarding its inclusion in silage-based diets for backgrounding animals. The objective of this trial was to compare a processor-chopped sorghum silage (SS) against a typical corn silage (CS) in a digestibility and performance trial while supplementing two protein sources; one traditionally used like cottonseed meal (CSM) and one novel like B. carinata meal (BCM). A total of 84 Angus crossbred heifers (307 ± 33 kg BW) were evaluated in a randomized block design with a 2 × 2 factorial treatment arrangement with type of silage and protein source as factors. Diets were fed ad libitum, consisting of 89% silage source plus 10% protein source, and 1% mineral inclusion on DM basis. The experimental period consisted of 14 d of adaptation followed by 5 d of apparent total tract digestibility measurements and 56 d of animal performance and intake behavior measurements. Heifers fed SS showed greater number of daily meals but decreased meal sizes (P ≤ 0.05), not differing in meal length (P > 0.10) when compared with CS. Dry matter and organic matter (OM) digestibility showed a silage type × protein source interaction (P ≤ 0.01), where in CS diets, OM tended to be more digestible with CSM vs. BCM, and it did not differ between protein sources in SS based diets. There was an effect of protein (P ≤ 0.01) on ADF digestibility, where CSM was greater than BCM. No effect of treatment was observed (P ≥ 0.10) on DM intake. Average daily gain (ADG) and gain-to-feed ratio were greater for CS than SS (P ≤ 0.01) regardless of protein source. Although heifers fed CS had greater feed efficiency and digestibility, SS can still be considered a viable option for backgrounding beef heifers, obtaining adequate ADG rates of 0.945 kg/d. Lastly, BCM did not differ from CSM in terms of feed efficiency and animal performance, proving to be a viable alternative protein source in silage-based diets. Increased atmospheric CO2, rising temperatures, and altered patterns of precipitation can limit the production of certain crops commonly used in agriculture, increasing risk, cost, and availability of feedstuffs. The search for alternative plants that could thrive in these changing scenarios is necessary to provide producers with a broader array of options to feed cattle. In this study, sorghum silage was compared with corn silage as the main dietary ingredient, with either Brassica carinata (carinata) or cottonseed meal as the protein source for growing beef heifers. Variables assessed included intake behavior, digestibility, and performance of beef heifers. Heifers fed sorghum silage gained less than heifers fed corn silage, though they grew at an adequate rate for a replacement heifer. Carinata meal showed similar performance results compared with cottonseed meal, despite some of its fiber components being less digestible in the total tract. Therefore, sorghum silage has potential to be a viable feedstuff for growing beef heifers although it may result in decreased performance compared with corn silage. Alternatively, carinata meal can be a practical alternative to cottonseed meal as a protein source in terms of animal performance. This could translate in an increase in the planted area of both sorghum and carinata in Southern United States, as they are adapted to drought and high temperatures, enhancing the resilience of beef production systems in a context of increased climate variability.
Autres résumés
Type: plain-language-summary
(eng)
Increased atmospheric CO2, rising temperatures, and altered patterns of precipitation can limit the production of certain crops commonly used in agriculture, increasing risk, cost, and availability of feedstuffs. The search for alternative plants that could thrive in these changing scenarios is necessary to provide producers with a broader array of options to feed cattle. In this study, sorghum silage was compared with corn silage as the main dietary ingredient, with either Brassica carinata (carinata) or cottonseed meal as the protein source for growing beef heifers. Variables assessed included intake behavior, digestibility, and performance of beef heifers. Heifers fed sorghum silage gained less than heifers fed corn silage, though they grew at an adequate rate for a replacement heifer. Carinata meal showed similar performance results compared with cottonseed meal, despite some of its fiber components being less digestible in the total tract. Therefore, sorghum silage has potential to be a viable feedstuff for growing beef heifers although it may result in decreased performance compared with corn silage. Alternatively, carinata meal can be a practical alternative to cottonseed meal as a protein source in terms of animal performance. This could translate in an increase in the planted area of both sorghum and carinata in Southern United States, as they are adapted to drought and high temperatures, enhancing the resilience of beef production systems in a context of increased climate variability.
Identifiants
pubmed: 36805233
pii: 7048857
doi: 10.1093/jas/skac402
pmc: PMC9940734
pii:
doi:
Substances chimiques
Cottonseed Oil
0
Dietary Fiber
0
Types de publication
Journal Article
Langues
eng
Sous-ensembles de citation
IM
Informations de copyright
© The Author(s) 2023. Published by Oxford University Press on behalf of the American Society of Animal Science. All rights reserved. For permissions, please e-mail: journals.permissions@oup.com.
Références
J Anim Sci. 2019 Dec 17;97(12):4732-4736
pubmed: 31616938
J Anim Sci. 1992 Dec;70(12):4018-35
pubmed: 1474038
J Anim Sci. 2012 Apr;90(4):1166-71
pubmed: 21965447
J Dairy Sci. 2004 Mar;87(3):637-44
pubmed: 15202648
J Anim Sci. 2021 Jan 1;99(1):
pubmed: 33247911
J Dairy Sci. 2000 Jul;83(7):1598-624
pubmed: 10908065
J Anim Sci. 2019 Oct 3;97(10):4334-4340
pubmed: 31504639
J Dairy Sci. 2003 May;86(5):1858-63
pubmed: 12778598
J Dairy Sci. 2019 Jan;102(1):419-425
pubmed: 30415847
J Dairy Sci. 2018 May;101(5):4111-4121
pubmed: 29685280
J Anim Sci. 2011 Sep;89(9):2904-10
pubmed: 21512115
J Dairy Sci. 1997 Jul;80(7):1463-81
pubmed: 9241608
J Dairy Sci. 1991 Sep;74(9):3140-51
pubmed: 1663958
J Dairy Sci. 2013 Mar;96(3):1715-26
pubmed: 23312997
J Dairy Sci. 1991 Oct;74(10):3583-97
pubmed: 1660498
J Theor Biol. 2001 Dec 7;213(3):413-25
pubmed: 11735288
J Dairy Sci. 2015 Aug;98(8):5642-52
pubmed: 26026754
J Dairy Sci. 2017 Jan;100(1):224-235
pubmed: 28341043
Theriogenology. 2019 Feb;125:277-284
pubmed: 30497026
J Anim Sci. 2019 Mar 1;97(3):1325-1334
pubmed: 30668726
J Dairy Sci. 2017 Oct;100(10):8119-8131
pubmed: 28780096
J Anim Sci. 2009 Oct;87(10):3317-34
pubmed: 19648500
J Dairy Sci. 1995 Sep;78(9):1970-80
pubmed: 8550907
J Dairy Sci. 1984 May;67(5):1072-89
pubmed: 6376562
J Dairy Sci. 2003 Oct;86(10):3343-53
pubmed: 14594254
Anim Behav. 1999 Apr;57(4):807-817
pubmed: 10202089
J Anim Sci. 1998 May;76(5):1280-9
pubmed: 9621934
J Anim Sci. 1992 Nov;70(11):3551-61
pubmed: 1459918