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The Composition and Function of Pigeon Milk Microbiota Transmitted From Parent Pigeons to Squabs

机译:鸽子牛奶微生物群的组成和功能从父母鸽传播到枝

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摘要

Mammalian neonates obtain antibodies, nutrients, and microbiota from breast milk that help them resist the complex growth environment. Similar to mammals’ lactation behavior for their offspring, parent pigeons regurgitate pigeon milk (PM) from their crops to feed the squabs. Whether pigeon milk is as valuable as mammalian milk is not clear, especially in terms of microbiota. This study adopted 16S rRNA gene sequencing to investigate the microbial composition and function in pigeon milk. We found abundant microbiota in pigeon milk. The dominant genera in parent pigeons’ milk were Lactobacillus, Enterococcus, Veillonella, and Bifidobacterium. An analysis of squab milk (SM) showed that Lactobacillus also accounted for a considerable proportion, followed by Bifidobacterium. Most of the squab milk microbial genera were also detected in parent pigeons. Microbial functional analysis showed that the squab milk microbes were more involved in the pathways of carbohydrate metabolism, amino acid metabolism, and energy metabolism. These findings indicated that microbiota play an important role in squabs and can be transmitted from parent pigeons to squabs by pigeon milk. The presence of plentiful probiotics in squabs also suggests that adding probiotics in artificial pigeon milk may promote the growth and development of squabs and improve the production performance of pigeons.
机译:哺乳动物新生儿从母乳中获得抗体,营养素和微生物群,帮助它们抵抗复杂的生长环境。与哺乳动物的后代的哺乳动物行为类似,父母鸽子从他们的作物中重新插入鸽牛奶以喂枝。鸽子牛奶是否与哺乳动物牛奶不清楚,特别是在微生物群方面。该研究采用16S rRNA基因测序来研究鸽牛奶的微生物组成和功能。我们在鸽牛奶中发现了丰富的微生物群。父母鸽子牛奶中的优势属是乳酸杆菌,肠球菌,veillonella和双歧杆菌。对Squab牛奶(SM)的分析表明,乳酸杆菌还占相当大的比例,其次是双歧杆菌。大多数Squab乳微生物属在父母鸽子中也被检测到。微生物功能分析表明,枝乳微生物更涉及碳水化合物代谢,氨基酸代谢和能量代谢的途径。这些发现表明,微生物群在枝中发挥着重要作用,可以通过鸽子牛奶从父母鸽子传播到枝。 Squabs的丰富益生菌的存在还表明,在人造鸽牛奶中添加益生菌可能会促进枝的生长和发展,提高鸽子的生产性能。

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