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Net energy and its establishment of prediction equations for wheat bran in growing pigs

OBJECTIVE: The objective of this experiment was to determine the net energy (NE) value of 6 wheat bran and 1 wheat shorts by indirect calorimetry and establish the NE prediction equations of wheat bran fed to growing barrows. METHODS: Forty-eight growing barrows (28.5±2.4 kg body weight) were allott...

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Autores principales: Lyu, Zhiqian, Chen, Yifan, Wang, Fenglai, Liu, Ling, Zhang, Shuai, Lai, Changhua
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Animal Bioscience 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9834652/
https://www.ncbi.nlm.nih.gov/pubmed/35760408
http://dx.doi.org/10.5713/ab.22.0001
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author Lyu, Zhiqian
Chen, Yifan
Wang, Fenglai
Liu, Ling
Zhang, Shuai
Lai, Changhua
author_facet Lyu, Zhiqian
Chen, Yifan
Wang, Fenglai
Liu, Ling
Zhang, Shuai
Lai, Changhua
author_sort Lyu, Zhiqian
collection PubMed
description OBJECTIVE: The objective of this experiment was to determine the net energy (NE) value of 6 wheat bran and 1 wheat shorts by indirect calorimetry and establish the NE prediction equations of wheat bran fed to growing barrows. METHODS: Forty-eight growing barrows (28.5±2.4 kg body weight) were allotted in a completely randomized design to 8 dietary treatments that included a corn-soybean meal basal diet, 6 wheat bran diets and 1 wheat shorts diet. The inclusion level of wheat bran or wheat shorts in diets is 30%. RESULTS: The addition of wheat bran reduced the apparent total tract digestibility (ATTD) of nutrients (p<0.05). The ATTD of gross energy, crude protein (CP) and dry matter (DM) in the wheat shorts were greater than that in the wheat bran. Addition of wheat bran or wheat shorts had no effect on total heat production and fasting heat production. The NE of wheat bran was negatively correlated with neutral detergent fiber (r = −0.84; p<0.05) and acid detergent fiber (r = −0.83; p<0.05), while it was positively correlated with CP (r = 0.92; p<0.01). The NE values of wheat bran ranged from 6.79 to 8.15 MJ/kg DM, and the NE value of wheat shorts was 12.47 MJ/kg DM. The ratio of NE to metabolizable energy for wheat bran fed to growing pigs was from 66.0% to 71.7%, whereas the value for wheat shorts was 83.7%. CONCLUSION: The NE values of wheat bran ranged from 6.79 to 8.15 MJ/kg DM, and the NE value of wheat shorts was 12.47 MJ/kg DM. The NE value of wheat bran can be well predicted based on energy content and proximate analysis.
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spelling pubmed-98346522023-01-25 Net energy and its establishment of prediction equations for wheat bran in growing pigs Lyu, Zhiqian Chen, Yifan Wang, Fenglai Liu, Ling Zhang, Shuai Lai, Changhua Anim Biosci Article OBJECTIVE: The objective of this experiment was to determine the net energy (NE) value of 6 wheat bran and 1 wheat shorts by indirect calorimetry and establish the NE prediction equations of wheat bran fed to growing barrows. METHODS: Forty-eight growing barrows (28.5±2.4 kg body weight) were allotted in a completely randomized design to 8 dietary treatments that included a corn-soybean meal basal diet, 6 wheat bran diets and 1 wheat shorts diet. The inclusion level of wheat bran or wheat shorts in diets is 30%. RESULTS: The addition of wheat bran reduced the apparent total tract digestibility (ATTD) of nutrients (p<0.05). The ATTD of gross energy, crude protein (CP) and dry matter (DM) in the wheat shorts were greater than that in the wheat bran. Addition of wheat bran or wheat shorts had no effect on total heat production and fasting heat production. The NE of wheat bran was negatively correlated with neutral detergent fiber (r = −0.84; p<0.05) and acid detergent fiber (r = −0.83; p<0.05), while it was positively correlated with CP (r = 0.92; p<0.01). The NE values of wheat bran ranged from 6.79 to 8.15 MJ/kg DM, and the NE value of wheat shorts was 12.47 MJ/kg DM. The ratio of NE to metabolizable energy for wheat bran fed to growing pigs was from 66.0% to 71.7%, whereas the value for wheat shorts was 83.7%. CONCLUSION: The NE values of wheat bran ranged from 6.79 to 8.15 MJ/kg DM, and the NE value of wheat shorts was 12.47 MJ/kg DM. The NE value of wheat bran can be well predicted based on energy content and proximate analysis. Animal Bioscience 2023-01 2022-06-24 /pmc/articles/PMC9834652/ /pubmed/35760408 http://dx.doi.org/10.5713/ab.22.0001 Text en Copyright © 2023 by Animal Bioscience https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) ), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Article
Lyu, Zhiqian
Chen, Yifan
Wang, Fenglai
Liu, Ling
Zhang, Shuai
Lai, Changhua
Net energy and its establishment of prediction equations for wheat bran in growing pigs
title Net energy and its establishment of prediction equations for wheat bran in growing pigs
title_full Net energy and its establishment of prediction equations for wheat bran in growing pigs
title_fullStr Net energy and its establishment of prediction equations for wheat bran in growing pigs
title_full_unstemmed Net energy and its establishment of prediction equations for wheat bran in growing pigs
title_short Net energy and its establishment of prediction equations for wheat bran in growing pigs
title_sort net energy and its establishment of prediction equations for wheat bran in growing pigs
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9834652/
https://www.ncbi.nlm.nih.gov/pubmed/35760408
http://dx.doi.org/10.5713/ab.22.0001
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