Mining genomes to illuminate the specialized chemistry of life.

Mining genomes to illuminate the specialized chemistry of life.
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挖掘基因组来阐明生命的特殊化学。

DOI:
10.1038/s41576-021-00363-7
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发表时间:
2021-09
期刊:
Nature reviews. Genetics
影响因子:
--
通讯作者:
Moore BS
Moore BS
中科院分区:
其他
文献类型:
--
作者:
Medema MH;de Rond T;Moore BS

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将所有生命联系在一起的共同语言是由小分子化学信号实现的。这些专门的代谢物已经进化为赋予不同的细胞和生态功能,并广泛应用于医学,农业和营养。基因组信息的快速积累表明,几乎所有生物体的代谢能力都被大大低估了。最初主要是在细菌和真菌中,基因组挖掘技术是为了加速代谢产物的发现而开创的。最近的努力正在扩大到所有生命形式,包括植物,动物和原生生物,新的综合组学技术允许越来越有效地挖掘这种多样性。
The common language that unites all life is carried out by small-molecule chemical signals. These specialized metabolites have evolved to impart diverse cellular and ecological functions, and are broadly applied in medicine, agriculture and nutrition. The rapid accumulation of genomic information has revealed that the metabolic capacity of virtually all organisms is vastly underappreciated. Initially mainly in bacteria and fungi, genome mining technologies were pioneered to accelerate metabolite discovery. Recent efforts are now being expanded to all life forms, including plants, animals and protists, and new integrative omics technologies allow increasingly effective mining of this diversity.
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