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Metabolic Gene Clusters in Eukaryotes
Annual Review of Genetics ( IF 8.7 ) Pub Date : 2018-11-26 00:00:00 , DOI: 10.1146/annurev-genet-120417-031237
Hans-Wilhelm Nützmann 1, 2 , Claudio Scazzocchio 3, 4 , Anne Osbourn 1
Affiliation  

In bacteria, more than half of the genes in the genome are organized in operons. In contrast, in eukaryotes, functionally related genes are usually dispersed across the genome. There are, however, numerous examples of functional clusters of nonhomologous genes for metabolic pathways in fungi and plants. Despite superficial similarities with operons (physical clustering, coordinate regulation), these clusters have not usually originated by horizontal gene transfer from bacteria, and (unlike operons) the genes are typically transcribed separately rather than as a single polycistronic message. This clustering phenomenon raises intriguing questions about the origins of clustered metabolic pathways in eukaryotes and the significance of clustering for pathway function. Here we review metabolic gene clusters from fungi and plants, highlight commonalities and differences, and consider how these clusters form and are regulated. We also identify opportunities for future research in the areas of large-scale genomics, synthetic biology, and experimental evolution.

中文翻译:


真核生物中的代谢基因簇

在细菌中,基因组中超过一半的基因组织在操纵子中。相反,在真核生物中,功能相关的基因通常分散在基因组中。然而,有许多关于真菌和植物代谢途径的非同源基因功能簇的例子。尽管与操纵子表面上相似(物理聚类、坐标调节),但这些簇通常不是由细菌的水平基因转移产生的,并且(与操纵子不同)基因通常是单独转录的,而不是作为单个多顺反子信息。这种聚集现象引发了关于真核生物中聚集代谢途径的起源以及聚集对途径功能的意义的有趣问题。在这里,我们回顾了来自真菌和植物的代谢基因簇,突出共性和差异,并考虑这些集群是如何形成和受到监管的。我们还确定了大规模基因组学、合成生物学和实验进化领域未来研究的机会。

更新日期:2018-11-26
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