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Effects of gut microbiota transfer on emotional reactivity in Japanese quails (Coturnix japonica)

机译:肠道微生物会转移对日本鹌鹑情绪反应性的影响(CoTurnix japonica)

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摘要

The interaction between the gut microbiota (GM) and the brain has led to the concept of the microbiota-gut-brain axis but data for birds remain scarce. We tested the hypothesis that colonization of germfree chicks from a quail line selected for a high emotional reactivity (E+) with GM from a line with low emotional reactivity (E-) would reduce their emotional behaviour in comparison with germ-free chicks from an E+ line colonized with GM from the same E+ line. The GM composition analysis of both groups revealed a shift in terms of microbial diversity and richness between day 21 and day 35 and the GM of the two groups of quails were closer to each other at day 35 than at day 21 at a phylum level. Quails that received GM from the E-line expressed a lower emotional reactivity than quails colonized by GM from the E+ line in tonic immobility and novel environment tests carried out during the second week of age. This result was reversed in a second tonic immobility test and an open-field run 2 weeks later. These behavioural and GM modifications over time could be the consequence of the resilience of the GM to recover the equilibrium present in the E+ host, which is in part driven by the host genotype. This study shows for the first time that a GM transfer can influence emotional reactivity in Japanese quails, supporting the existence of a microbiota-gut-brain axis in this species of bird.
机译:肠道微生物A(GM)与大脑之间的相互作用导致了微生物肿块 - 肠轴的概念,但鸟类的数据仍然稀缺。我们测试了从选择高情绪反应性(E +)的鹌鹑线从e +的线路中选择用于高情绪反应性(e +)的鹌鹑线的假设,与来自e +的无菌雏鸡相比,从一条低情绪反应性从同一E +线上用GM定殖。两组的GM组成分析揭示了微生物多样性的转变,并且在第21天和第35天之间的丰富性,两组鹌鹑在第35天在第35天彼此相比,在第35天比在门水平的第21天彼此相邻。从E-Line获得的Quails从E-Line中表达了比GM从E +线在滋补不动的E +线上殖民殖民殖民的鹌鹑的情绪反应性较低。该结果在第二个滋补不动试验中逆转,2周后开放式运行。随着时间的推移,这些行为和GM的修改可能是GM恢复恢复E +宿主中存在的均衡的结果,这部分是由宿主基因型驱动的。本研究表明,转基因转移的第一次可以影响日本鹌鹑中的情绪反应性,支持这种鸟类中的微生物血管脑轴的存在。

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