Unraveling changes in the duck microbiome and inflammatory processes due to allithiamine-enriched feed

Zsombor Szőke, Emese Szilágyi-Tolnai, Péter Dávid, Péter Fauszt, E. Szilágyi, Anna Szilágyi-Rácz, László Stündl, Ferenc Gál, Judit Gálné Remenyik, Melinda Paholcsek
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Abstract

The gastrointestinal tract of poultry harbors a diverse and intricate microbiome that plays a crucial role in nutrient digestion and absorption, immune system development, and enhances resistance against pathogens. Maintaining a healthy state and proper production is fundamentally determined by the symbiosis between the host and microbes. Due to genetic and technological improvements, intensive growth rate can be associated with many pathological conditions, such as increased susceptibility to infections. Intestinal inflammation in poultry industries detrimentally affects productivity by hindering nutrient absorption and the efficient allocation of nutrients for growth. The host releases different biomarkers in response to inflammation. Hence, there is an utmost interest of reliable, precise, sensitive and robust biomarkers to evaluate both the gastrointestinal health status and inflammation in poultry. The aim of this study was to determine how the developed feed prototype (allithiamine) affects the community diversity in raised duck, and the relationship between gut microbiome composition and inflammatory factor as calprotectin, using targeted 16S rRNA gene amplicon sequencing and Chicken Calprotectin ELISA Kit.
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揭示富含异硫胺素的饲料对鸭微生物群和炎症过程的影响
家禽的胃肠道中蕴藏着种类繁多、错综复杂的微生物群,它们在营养物质的消化和吸收、免疫系统的发育以及增强对病原体的抵抗力等方面发挥着至关重要的作用。维持健康状态和正常生产从根本上取决于宿主与微生物之间的共生关系。由于基因和技术的改进,密集的生长速度可能与许多病理状况有关,例如对感染的易感性增加。家禽业中的肠道炎症会阻碍营养吸收和营养物质在生长过程中的有效分配,从而对生产率产生不利影响。宿主会释放不同的生物标志物来应对炎症。因此,人们对可靠、精确、灵敏和稳健的生物标志物极为关注,以评估家禽的胃肠道健康状况和炎症。本研究的目的是利用定向 16S rRNA 基因扩增片测序和鸡钙粘蛋白酶联免疫吸附试剂盒,确定所开发的饲料原型(别硫胺)如何影响养鸭的群落多样性,以及肠道微生物组组成和炎症因子钙粘蛋白之间的关系。
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