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Early-life microbiota transplantation affects behavioural responses, serotonin and immune characteristics in chicken lines divergently selected on feather pecking

机译:早期微生物会移植影响鸡豆系中的行为应答,血清素和免疫特征在羽毛啄食中

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Gut microbiota influences host behaviour and physiology, such as anxiety, stress, serotonergic and immune systems. These behavioural and physiological characteristics are related to feather pecking (FP), a damaging behaviour in chickens that reduces animal welfare and productivity. Moreover, high FP (HFP) and low FP (LFP) lines differed in microbiota composition. However, it is unknown whether microbiota can influence the development of FP. For the first time, we identified the effects of microbiota transplantation on FP, and behavioural and physiological characteristics related to FP. HFP and LFP chicks received sterile saline (control), HFP or LFP microbiota transplantation during the first two weeks post-hatch. Microbiota transplantation influenced behavioural responses of the HFP line during treatment and of the LFP line after treatment. In both lines, homologous microbiota transplantation (i.e., receiving microbiota from their line) resulted in more active behavioural responses. Furthermore, microbiota transplantation influenced immune characteristics (natural antibodies) in both lines and peripheral serotonin in the LFP line. However, limited effects on microbiota composition, stress response (corticosterone) and FP were noted. Thus, early-life microbiota transplantation had immediate and long-term effects on behavioural responses and long-term effects on immune characteristics and peripheral serotonin; however, the effects were dependent on host genotype. Since early-life microbiota transplantation influenced behavioural and physiological characteristics that are related to FP, it could thus influence the development of FP later in life.
机译:肠道微生物会影响宿主行为和生理学,如焦虑,压力,血清on和免疫系统。这些行为和生理特征与羽毛啄食(FP)有关,鸡中有破坏性行为,可降低动物福利和生产率。此外,高FP(HFP)和低FP(LFP)管线在微生物酵母组合物中不同。然而,它是未知的微生物群是否会影响FP的发展。我们首次鉴定了微生物会移植对FP的影响,以及与FP相关的行为和生理特征。 HFP和LFP雏鸡在孵化后前两周内接受无菌盐水(对照),HFP或LFP微生物A移植。微生物会移植在治疗后和LFP线治疗过程中影响HFP线的行为反应。在两条线中,同源微生物会移植(即,从它们的线接收微生物群)导致更活跃的行为反应。此外,Microbiota移植在LFP线中影响两条线和外周血清素中的免疫特征(天然抗体)。但是,注意到对微生物群组合物,应激反应(皮质酮)和FP的有限影响。因此,早期的微生物群移植对免疫特征和外周血清素的行为反应和长期影响有直接和长期影响;然而,这些效果依赖于宿主基因型。由于早期生命的微生物群移植影响了与FP相关的行为和生理特征,因此它可以影响生活中的FP的发展。

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