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Proteomics reveals synergy between biomass degrading enzymes and inorganic Fenton chemistry in leaf-cutting ant colonies

机译:蛋白质组学揭示了生物质降解酶和叶片切割蚁群中的无机芬顿化学之间的协同作用

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摘要

The symbiotic partnership between leaf-cutting ants and fungal cultivars processes plant biomass via ant fecal fluid mixed with chewed plant substrate before fungal degradation. Here we present a full proteome of the fecal fluid of Acromyrmex leaf-cutting ants, showing that most proteins function as biomass degrading enzymes and that ca. 85% are produced by the fungus and ingested, but not digested, by the ants. Hydrogen peroxide producing oxidoreductases were remarkably common in the proteome, inspiring us to test a scenario in which hydrogen peroxide reacts with iron to form reactive oxygen radicals after which oxidized iron is reduced by other fecal-fluid enzymes. Our biochemical assays confirmed that these so-called Fenton reactions do indeed take place in special substrate pellets, presumably to degrade plant cell wall polymers. This implies that the symbiotic partnership manages a combination of oxidative and enzymatic biomass degradation, an achievement that surpasses current human bioconversion technology.
机译:叶片蚂蚁和真菌品种之间的共生伙伴关系通过蚁粪流体在真菌降解之前将植物生物质与酸粪液混合的植物生物质加工。在这里,我们呈现了acromyrmex叶片蚂蚁的粪便液的全部蛋白质组,显示大多数蛋白质用作生物质降解酶和CA。 85%由真菌产生并被蚂蚁摄入,但未消化。在蛋白质组中产生氧化氧化酶的过氧化氢在蛋白质组中显着常见,鼓励我们测试一种情况,其中过氧化氢与铁反应形成反应性氧自由基,之后通过其他粪便流体酶降低氧化铁。我们的生化测定证实,这些所谓的芬顿反应确实在特殊的底物粒料中进行,可能是降解植物细胞壁聚合物。这意味着共生伙伴关系管理氧化和酶生物质降解的组合,其成就超越了当前人的生物转化技术。

著录项

  • 期刊名称 eLife
  • 作者单位
  • 年(卷),期 2021(-1),-1
  • 年度 2021
  • 页码 -1
  • 总页数 21
  • 原文格式 PDF
  • 正文语种
  • 中图分类
  • 关键词

    Other;

    机译:其他;

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