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Assessment of viral community functional potential from viral metagenomes may be hampered by contamination with cellular sequences

机译:病毒基因组对病毒群落功能潜能的评估可能会受到细胞序列污染的阻碍

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摘要

Although the importance of viruses in natural ecosystems is widely acknowledged, the functional potential of viral communities is yet to be determined. Viral genomes are traditionally believed to carry only those genes that are directly pertinent to the viral life cycle, though this view was challenged by the discovery of metabolism genes in several phage genomes. Metagenomic approaches extended these analyses to a community scale, and several studies concluded that microbial and viral communities encompass similar functional potentials. However, these conclusions could originate from the presence of cellular DNA within viral metagenomes. We developed a computational method to estimate the proportion and origin of cellular sequences in a set of 67 published viromes. A quarter of the datasets were found to contain a substantial amount of sequences originating from cellular genomes. When considering only viromes with no cellular DNA detected, the functional potential of viral and microbial communities was found to be fundamentally different—a conclusion more consistent with the actual picture drawn from known viruses. Yet a significant number of cellular metabolism genes was still retrieved in these viromes, suggesting that the presence of auxiliary genes involved in various metabolic pathways within viral genomes is a general trend in the virosphere.
机译:尽管病毒在自然生态系统中的重要性已广为人知,但病毒群落的功能潜力尚待确定。传统上认为病毒基因组仅携带那些与病毒生命周期直接相关的基因,尽管这一观点受到了几个噬菌体基因组中新陈代谢基因的发现的挑战。元基因组学方法将这些分析扩展到了社区规模,并且一些研究得出结论,微生物和病毒社区具有相似的功能潜力。但是,这些结论可能源于病毒基因组中细胞DNA的存在。我们开发了一种计算方法来估计一组67种已发表病毒中细胞序列的比例和来源。发现四分之一的数据集包含大量源自细胞基因组的序列。仅考虑未检测到细胞DNA的病毒时,发现病毒和微生物群落的功能潜力有根本不同-这一结论与从已知病毒得出的实际情况更加一致。然而,仍在这些病毒体中检索到大量的细胞代谢基因,这表明病毒基因组内参与各种代谢途径的辅助基因的存在是病毒界的普遍趋势。

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