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Changes in feeding habits promoted the differentiation of the composition and function of gut microbiotas between domestic dogs (Canis lupus familiaris) and gray wolves (Canis lupus)

机译:喂养习惯的改变促进了家犬(Canis lupus熟悉)和灰狼(Canis lupus)之间肠道菌群组成和功能的分化。

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摘要

Wolves (Canis lupus) and their domesticated and close relatives, dogs (Canis lupus familiaris), have great differences in their diets and living environments. To the best of our knowledge, the fundamental question of how the abundance and function of the gut microbiota of domestic dogs evolved to adapt to the changes in host feeding habits has yet to be addressed. In this study, our comparative analyses of gut metagenomes showed that the abundance of gut microbiota between the two species have some significant differences. Furthermore, a number of taxa observed in higher numbers in domestic dogs are related to carbohydrate metabolism, which may be because that there were more complicated polysaccharides in dogs diets than that in wolves diets. A significant difference in the abundance of genes encoding glycosyltransferase family 34 (GT34), carbohydrate-binding module family 25 (CBM25), and glycoside hydrolase family 13 (GH13) between the gut microbiota metagenomes of domestic dogs and gray wolves also supported this observation. Furthermore, the domestic dog gut microbiota has greater valine, leucine and isoleucine biosynthesis and nitrogen metabolism. This result showed that compared with wolves, the domestic dog diet contains a smaller amount of animal protein, which is consistent with the dietary composition of wolves and dogs. Our results indicate that the function and abundance of gut microbiota of domestic dogs has been adapted to domestication, which is of great significance for the ability of domestic dogs to adapt to changes in food composition.
机译:狼(Canis lupus)及其家养和近亲狗(Canis lupus friendlyis)在饮食和生活环境上有很大差异。据我们所知,关于家犬肠道菌群的丰度和功能如何进化以适应宿主喂养习惯变化的根本问题尚未解决。在这项研究中,我们对肠道元基因组的比较分析表明,两种物种之间的肠道菌群丰富度存在一些显着差异。此外,在家犬中观察到的更多的分类单元与碳水化合物的代谢有关,这可能是因为在犬粮中比在狼粮中存在更复杂的多糖。家犬和灰狼肠道微生物群元基因组之间编码糖基转移酶家族34(GT34),碳水化合物结合模块家族25(CBM25)和糖苷水解酶家族13(GH13)的基因丰度差异也很明显。此外,家犬的肠道菌群具有更高的缬氨酸,亮氨酸和异亮氨酸的生物合成和氮代谢。该结果表明,与狼相比,家犬的饮食中动物蛋白的含量较少,这与狼和犬的饮食组成是一致的。我们的结果表明,家犬的肠道菌群的功能和丰富度已经适应了驯养,这对于家犬适应食物成分变化的能力具有重要意义。

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