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Influence of Heat Stress on Poultry Growth Performance, Intestinal Inflammation, and Immune Function and Potential Mitigation by Probiotics

SIMPLE SUMMARY: The poultry industry sustains severe economic loss under heat stress conditions. Heat stress adversely affects the productivity, physiological status, and immunity of birds. To date, several mitigation measures have been adopted to minimize the negative effects of heat stress in poul...

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Autores principales: Ahmad, Rafiq, Yu, Yu-Hsiang, Hsiao, Felix Shih-Hsiang, Su, Chin-Hui, Liu, Hsiu-Chou, Tobin, Isabel, Zhang, Guolong, Cheng, Yeong-Hsiang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9454943/
https://www.ncbi.nlm.nih.gov/pubmed/36078017
http://dx.doi.org/10.3390/ani12172297
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author Ahmad, Rafiq
Yu, Yu-Hsiang
Hsiao, Felix Shih-Hsiang
Su, Chin-Hui
Liu, Hsiu-Chou
Tobin, Isabel
Zhang, Guolong
Cheng, Yeong-Hsiang
author_facet Ahmad, Rafiq
Yu, Yu-Hsiang
Hsiao, Felix Shih-Hsiang
Su, Chin-Hui
Liu, Hsiu-Chou
Tobin, Isabel
Zhang, Guolong
Cheng, Yeong-Hsiang
author_sort Ahmad, Rafiq
collection PubMed
description SIMPLE SUMMARY: The poultry industry sustains severe economic loss under heat stress conditions. Heat stress adversely affects the productivity, physiological status, and immunity of birds. To date, several mitigation measures have been adopted to minimize the negative effects of heat stress in poultry. Nutritional strategies have been explored as a promising approach to mitigate heat stress-associated deleterious impacts. Of these, probiotic feeding has a strong potential as a nutritional strategy, and this approach warrants further investigation to improve thermotolerance in poultry. ABSTRACT: Heat stress has emerged as a serious threat to the global poultry industry due to climate change. Heat stress can negatively impact the growth, gut health, immune function, and production and reproductive performances of poultry. Different strategies have been explored to mitigate heat stress in poultry; however, only a few have shown potential. Probiotics are gaining the attention of poultry nutritionists, as they are capable of improving the physiology, gut health, and immune system of poultry under heat stress. Therefore, application of probiotics along with proper management are considered to potentially help negate some of the negative impacts of heat stress on poultry. This review presents scientific insight into the impact of heat stress on poultry health and growth performance as well as the application of probiotics as a promising approach to alleviate the negative effects of heat stress in poultry.
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spelling pubmed-94549432022-09-09 Influence of Heat Stress on Poultry Growth Performance, Intestinal Inflammation, and Immune Function and Potential Mitigation by Probiotics Ahmad, Rafiq Yu, Yu-Hsiang Hsiao, Felix Shih-Hsiang Su, Chin-Hui Liu, Hsiu-Chou Tobin, Isabel Zhang, Guolong Cheng, Yeong-Hsiang Animals (Basel) Review SIMPLE SUMMARY: The poultry industry sustains severe economic loss under heat stress conditions. Heat stress adversely affects the productivity, physiological status, and immunity of birds. To date, several mitigation measures have been adopted to minimize the negative effects of heat stress in poultry. Nutritional strategies have been explored as a promising approach to mitigate heat stress-associated deleterious impacts. Of these, probiotic feeding has a strong potential as a nutritional strategy, and this approach warrants further investigation to improve thermotolerance in poultry. ABSTRACT: Heat stress has emerged as a serious threat to the global poultry industry due to climate change. Heat stress can negatively impact the growth, gut health, immune function, and production and reproductive performances of poultry. Different strategies have been explored to mitigate heat stress in poultry; however, only a few have shown potential. Probiotics are gaining the attention of poultry nutritionists, as they are capable of improving the physiology, gut health, and immune system of poultry under heat stress. Therefore, application of probiotics along with proper management are considered to potentially help negate some of the negative impacts of heat stress on poultry. This review presents scientific insight into the impact of heat stress on poultry health and growth performance as well as the application of probiotics as a promising approach to alleviate the negative effects of heat stress in poultry. MDPI 2022-09-05 /pmc/articles/PMC9454943/ /pubmed/36078017 http://dx.doi.org/10.3390/ani12172297 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Review
Ahmad, Rafiq
Yu, Yu-Hsiang
Hsiao, Felix Shih-Hsiang
Su, Chin-Hui
Liu, Hsiu-Chou
Tobin, Isabel
Zhang, Guolong
Cheng, Yeong-Hsiang
Influence of Heat Stress on Poultry Growth Performance, Intestinal Inflammation, and Immune Function and Potential Mitigation by Probiotics
title Influence of Heat Stress on Poultry Growth Performance, Intestinal Inflammation, and Immune Function and Potential Mitigation by Probiotics
title_full Influence of Heat Stress on Poultry Growth Performance, Intestinal Inflammation, and Immune Function and Potential Mitigation by Probiotics
title_fullStr Influence of Heat Stress on Poultry Growth Performance, Intestinal Inflammation, and Immune Function and Potential Mitigation by Probiotics
title_full_unstemmed Influence of Heat Stress on Poultry Growth Performance, Intestinal Inflammation, and Immune Function and Potential Mitigation by Probiotics
title_short Influence of Heat Stress on Poultry Growth Performance, Intestinal Inflammation, and Immune Function and Potential Mitigation by Probiotics
title_sort influence of heat stress on poultry growth performance, intestinal inflammation, and immune function and potential mitigation by probiotics
topic Review
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9454943/
https://www.ncbi.nlm.nih.gov/pubmed/36078017
http://dx.doi.org/10.3390/ani12172297
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