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Metagenomics reveals functional synergy and novel polysaccharide utilization loci in the Castor canadensis fecal microbiome

机译:元基因组学揭示了加拿大蓖麻粪便微生物组中的功能协同作用和新型多糖利用位点

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摘要

The North American beaver (Castor canadensis) has long been considered an engineering marvel, transforming landscapes and shaping biological diversity through its dam building behavior. While the beaver possesses conspicuous morphological features uniquely adapted for the use of woody plants as construction materials and dietary staples, relatively little is known about the specialized microorganisms inhabiting the beaver gastrointestinal tract and their functional roles in determining host nutrition. Here we use a combination of shotgun metagenomics, functional screening and carbohydrate biochemistry to chart the community structure and metabolic power of the beaver fecal microbiome. We relate this information to the metabolic capacity of other wood feeding and hindgut fermenting organisms and profile the functional repertoire of glycoside hydrolase (GH) families distributed among and between population genome bins. Metagenomic screening revealed novel mechanisms of xylan oligomer degradation involving GH43 enzymes from uncharacterized subfamilies and divergent polysaccharide utilization loci, indicating the potential for synergistic biomass deconstruction. Together, these results open a functional metagenomic window on less conspicuous adaptations enabling the beaver microbiome to efficiently convert woody plants into host nutrition and point toward rational design of enhanced enzyme mixtures for biorefining process streams.
机译:长期以来,北美海狸(Castor canadensis)被视为工程奇迹,通过其筑坝行为改变了景观并塑造了生物多样性。尽管海狸具有独特的明显形态特征,特别适合将木本植物用作建筑材料和饮食必需品,但对栖息在海狸胃肠道中的特殊微生物及其在决定宿主营养中的功能性作用知之甚少。在这里,我们结合使用shot弹枪宏基因组学,功能筛选和碳水化合物生物化学来绘制海狸粪便微生物组的群落结构和代谢能力。我们将此信息与其他木材进食和后肠发酵生物的代谢能力相关,并分析了分布在种群基因组区间之间的糖苷水解酶(GH)家族的功能组成。元基因组学筛选揭示了木聚糖低聚物降解的新机制,涉及未表征亚家族的GH43酶和不同的多糖利用位点,表明生物质协同解构的潜力。总之,这些结果为不太明显的适应打开了功能性宏基因组学窗口,使海狸微生物组能够有效地将木本植物转化为宿主营养,并为生物精炼工艺流程提供了合理的增强酶混合物设计。

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