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Unique metabolites protect earthworms against plant polyphenols

机译:独特的代谢产物可保护earth免受植物多酚的侵害

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All higher plants produce polyphenols, for defence against above-ground herbivory. These polyphenols also influence the soil micro-and macro-fauna that break down plant leaf litter. Polyphenols therefore indirectly affect the fluxes of soil nutrients and, ultimately, carbon turnover and ecosystem functioning in soils. It is unknown how earthworms, the major component of animal biomass in many soils, cope with high-polyphenol diets. Here, we show that earthworms possess a class of unique surface-active metabolites in their gut, which we term 'drilodefensins'. These compounds counteract the inhibitory effects of polyphenols on earthworm gut enzymes, and high-polyphenol diets increase drilodefensin concentrations in both laboratory and field populations. This shows that drilodefensins protect earthworms from the harmful effects of ingested polyphenols. We have identified the key mechanism for adaptation to a dietary challenge in an animal group that has a major role in organic matter recycling in soils worldwide.
机译:所有高等植物都会产生多酚,以防御地上的食草动物。这些多酚还影响分解植物叶片凋落物的土壤微动物和大型动物。因此,多酚间接影响土壤养分的通量,最终影响土壤中的碳转化和生态系统功能。 many是许多土壤中动物生物量的主要组成部分,如何应付高多酚日粮,这一点尚不清楚。在这里,我们表明earth在肠道中具有一类独特的表面活性代谢物,我们称之为“ drilodefensins”。这些化合物抵消了多酚对earth肠道酶的抑制作用,高多酚日粮会增加实验室和田间种群的德洛芬素浓度。这表明纤毛防御素可以保护worm免受摄入的多酚的有害影响。我们已经确定了适应动物饮食挑战的关键机制,该动物群在全球土壤中的有机物循环中具有重要作用。

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