益生菌/益生元对鸡肠道微生物群和免疫力的影响与热应激和气候变化缓解的关系

IF 2.9 2区 生物学 Q2 BIOLOGY
Yara Sayed , Mariam Hassan , Heba M. Salem , Khaled Al-Amry , Gamal Eid
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引用次数: 0

摘要

热应激是威胁世界家禽生产的严重危害。家禽肠道微生物群在提高营养利用、与病原体竞争、刺激免疫反应和减少炎症反应方面发挥着关键作用。因此,肠道微生物组对宿主的健康有积极的影响,表现在改善体重、饲料转化率和提高鸟类的生产力(肉或蛋)。因此,本文综述了鸡肠道微生物群及其与鸡免疫力的关系,以及这如何影响鸟类的总体健康状况,以及益生元和益生菌在改善肠道健康和提高鸟类生产力方面的作用,特别是在气候变化和热应激条件下。这篇综述的目的是关注保持健康鸡的重要性,以增加禽肉的产量,以满足人类的需求。强大的微生物群和功能良好的免疫系统协同作用有助于鸡的最佳健康和生产力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Probiotics/prebiotics effect on chicken gut microbiota and immunity in relation to heat-stress and climate-change mitigation
Heat stress is a serious hazard that threatens world poultry production. The avian gut microbiome plays a critical role in improving nutrient utilization, competing with pathogens, stimulating an immune response, and reducing inflammatory reactions. Hence, the gut microbiome has a positive impact on the host's health which appears in the shape of improved body weight, feed conversion rate, and increased birds' productivity (meat or eggs). Accordingly, this review shed light on the chicken gut microbiome, its correlation with the immunity of chicken, and how this affects the general health condition of the bird as well as, the role of prebiotics and probiotics in improving the gut health and increasing birds' productivity, especially under climate change and heat stress condition. The review aims to focus on the significance of maintaining healthy chickens in order to increase the production of poultry meat to satisfy human needs. A robust microbiota and a well-functioning immune system synergistically contribute to the optimal health and productivity of chickens.
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来源期刊
Journal of thermal biology
Journal of thermal biology 生物-动物学
CiteScore
5.30
自引率
7.40%
发文量
196
审稿时长
14.5 weeks
期刊介绍: The Journal of Thermal Biology publishes articles that advance our knowledge on the ways and mechanisms through which temperature affects man and animals. This includes studies of their responses to these effects and on the ecological consequences. Directly relevant to this theme are: • The mechanisms of thermal limitation, heat and cold injury, and the resistance of organisms to extremes of temperature • The mechanisms involved in acclimation, acclimatization and evolutionary adaptation to temperature • Mechanisms underlying the patterns of hibernation, torpor, dormancy, aestivation and diapause • Effects of temperature on reproduction and development, growth, ageing and life-span • Studies on modelling heat transfer between organisms and their environment • The contributions of temperature to effects of climate change on animal species and man • Studies of conservation biology and physiology related to temperature • Behavioural and physiological regulation of body temperature including its pathophysiology and fever • Medical applications of hypo- and hyperthermia Article types: • Original articles • Review articles
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