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Functional diversity within the simple gut microbiota of the honey bee

机译:蜜蜂简单肠道菌群内的功能多样性

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Animals living in social communities typically harbor a characteristic gut microbiota important for nutrition and pathogen defense. Accordingly, in the gut of the honey bee. Apis mellifera, a distinctive microbial community, composed of a taxonomically restricted set of species specific to social bees, has been identified. Despite the ecological and economical importance of honey bees and the increasing concern about population declines, the role of their gut symbionts for colony health and nutrition is unknown. Here, we sequenced the metagenome of the gut microbiota of honey bees. Unexpectedly, we found a remarkable degree of genetic diversity within the few bacterial species colonizing the bee gut. Comparative analysis of gene contents suggests that different species harbor distinct functional capabilities linked to host interaction, biofilm formation, and carbohydrate breakdown. Whereas the former two functions could be critical for pathogen defense and immunity, the latter one might assist nutrient utilization. In a y-proteobacterial species, we identified genes encoding pectin-degrading enzymes likely involved in the breakdown of pollen walls. Experimental investigation showed that this activity is restricted to a subset of strains of this species providing evidence for niche specialization. Long-standing association of these gut symbionts with their hosts, favored by the eusocial lifestyle of honey bees, might have promoted the genetic and functional diversification of these bee-specific bacteria. Besides revealing insights into mutualistic functions governed by the microbiota of this important pollinator, our findings indicate that the honey bee can serve as a model for understanding more complex gut-associated microbial communities.
机译:生活在社会社区中的动物通常会携带对营养和病原体防御至关重要的独特肠道菌群。因此,在蜜蜂的肠道中。蜜蜂蜜蜂是一种独特的微生物群落,由特定于社会蜜蜂的生物分类限制的一组物种组成。尽管蜜蜂在生态和经济上具有重要意义,并且人们日益关注人口减少的情况,但他们的肠道共生体对殖民地健康和营养的作用尚不清楚。在这里,我们对蜜蜂的肠道菌群的元基因组进行了测序。出乎意料的是,我们发现了在蜜蜂肠道内定居的少数细菌种类中遗传多样性的显着水平。基因含量的比较分析表明,不同物种具有与宿主相互作用,生物膜形成和碳水化合物分解相关的不同功能。前两种功能对于病原体的防御和免疫至关重要,而后一种功能可能有助于营养物质的利用。在一个y变形细菌物种中,我们确定了编码果胶降解酶的基因,这些酶可能与花粉壁的破裂有关。实验研究表明,这种活性仅限于该物种的一部分菌株,为利基专业化提供了证据。这些肠道共生体与其宿主的长期联系受到蜜蜂的共融生活方式的青睐,可能促进了这些蜜蜂特异性细菌的遗传和功能多样化。除了揭示对该重要传粉者微生物群所控制的相互关系功能的见解之外,我们的发现还表明,蜜蜂可以作为了解更复杂的肠道相关微生物群落的模型。

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