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丁酸钠对缓解热应激诱导的肉鸡肺损伤中肺和肠道微生物群的影响

Alterations of lung and gut microbiota in sodium butyrate alleviating heat stress-induced lung injury of broilers.

作者信息

Niu Qiang, Lu Yiwen, Ren Meijuan, Zhu Jiale, Zhao Yan, Zhang RuMeng, Yang Xiaojun, Sun Qingzhu

机构信息

College of Animal Science and Technology, Northwest A&F University, 22 Xinong Road, Yangling, Shaanxi 712100, China.

College of Animal Science and Technology, Northwest A&F University, 22 Xinong Road, Yangling, Shaanxi 712100, China.

出版信息

Poult Sci. 2025 Feb;104(2):104796. doi: 10.1016/j.psj.2025.104796. Epub 2025 Jan 9.

Abstract

Heat-induced stress has a significant impact on the health of broilers. It induces panting behavior and elevates oxygen consumption, leading to considerable strain on the broiler lungs. However, the precise effects of heat stress on lung injury, along with changes in the lung and gut microbiota, are not yet fully understood. In our study, Arbor Acres (AA) broilers were employed as a model to assess the efficacy of sodium butyrate (SB) in mitigating heat stress-induced lung injury, while concurrently exploring the potential role of lung and gut microbiota in this phenomenon. Heat stress negatively affected broilers, particularly leading to lung injury, which was alleviated by dietary supplementation with SB. However, antibiotic-induced dysbiosis of the microbiota diminished the protective effects of SB, highlighting the critical importance of gut microbiota homeostasis. Heat stress resulted in a reduction in lung microbial diversity and altered its composition, primarily due to the depletion of g_Clostridia and the proliferation of g_Staphylococcus. SB supplementation helped restore beneficial microbes and improved their adaptation to heat stress. Heat stress induced comparable effects on the gut microbiota, resulting in a decline in p_Firmicutes and an elevation in p_Bacteroidetes. However, SB supplementation effectively modulated these alterations in the gut microbiota, promoting a more beneficial microbial profile. Our findings highlighted the significant contributions of both lung and gut microbiota in maintaining homeostasis during heat stress. Moreover, SB administration demonstrated its efficacy in mitigating heat stress-induced lung injury in broilers. This study provides critical insights for developing dietary strategies to reduce heat stress and promote broiler health.

摘要

热应激对肉鸡的健康有重大影响。它会引发喘气行为并提高耗氧量,给肉鸡肺部带来相当大的压力。然而,热应激对肺损伤的确切影响以及肺和肠道微生物群的变化尚未完全了解。在我们的研究中,选用爱拔益加(AA)肉鸡作为模型,以评估丁酸钠(SB)减轻热应激诱导的肺损伤的效果,同时探讨肺和肠道微生物群在这一现象中的潜在作用。热应激对肉鸡产生负面影响,尤其导致肺损伤,而通过在日粮中添加SB可缓解这种损伤。然而,抗生素诱导的微生物群失调削弱了SB的保护作用,突出了肠道微生物群稳态的至关重要性。热应激导致肺微生物多样性降低并改变其组成,主要是由于梭菌纲的减少和葡萄球菌属的增殖。添加SB有助于恢复有益微生物并改善它们对热应激的适应性。热应激对肠道微生物群产生类似影响,导致厚壁菌门减少和拟杆菌门增加。然而,添加SB有效地调节了肠道微生物群的这些变化,促进了更有益的微生物分布。我们的研究结果突出了肺和肠道微生物群在热应激期间维持稳态的重要贡献。此外,给予SB证明了其在减轻肉鸡热应激诱导的肺损伤方面的功效。本研究为制定减少热应激和促进肉鸡健康的日粮策略提供了重要见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d1c2/11770502/1c66f2203d9f/gr1.jpg

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