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Virus-associated organosulfur metabolism in human and environmental systems

机译:病毒相关的人类和环境系统中的有机素代谢

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Viruses influence the fate of nutrients and human health by killing microorganisms and altering metabolic processes. Organosulfur metabolism and biologically derived hydrogen sulfide play dynamic roles in manifestation of diseases, infrastructure degradation, and essential biological processes. Although microbial organosulfur metabolism is well studied, the role of viruses in organosulfur metabolism is unknown. Here, we report the discovery of 39 gene families involved in organosulfur metabolism encoded by 3,749 viruses from diverse ecosystems, including human microbiomes. The viruses infect organisms from all three domains of life. Six gene families encode for enzymes that degrade organosulfur compounds into sulfide, whereas others manipulate organosulfur compounds and may influence sulfide production. We show that viral metabolic genes encode key enzymatic domains, are translated into protein, and are maintained after recombination, and sulfide provides a fitness advantage to viruses. Our results reveal viruses as drivers of organosulfur metabolism with important implications for human and environmental health.
机译:病毒通过杀死微生物和改变代谢过程来影响营养素和人类健康的命运。有机硫代代谢和生物学衍生的硫化氢在疾病,基础设施降解和基本生物过程的表现中起动力作用。虽然微生物有机素新代谢进行了很好的研究,但病毒在有机硫磺代谢中的作用是未知的。在这里,我们报告了39个基因家族,其中有机硫磺代谢的3,749个病毒来自不同的生态系统,包括人类微生物。病毒从所有三个生命域中感染生物。六个基因家族编码用于将有机硫化合物降解到硫化物中的酶,而其他基因族将有机硫化物化合物降解成硫化物,而且可以影响有机硫磺化合物,并且可能影响硫化物产生。我们表明,病毒代谢基因编码关键酶促结构域,被翻译成蛋白质,并在重组后保持,硫化物为病毒提供了健康优点。我们的结果揭示了病毒作为有机素质代谢的驱动因素,对人类和环境健康的重要意义。

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