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Fungal metabolic gene clusters—caravans traveling across genomes and environments

机译:真菌代谢基因簇-穿越基因组和环境的旅行车

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摘要

Metabolic gene clusters (MGCs), physically co-localized genes participating in the same metabolic pathway, are signature features of fungal genomes. MGCs are most often observed in specialized metabolism, having evolved in individual fungal lineages in response to specific ecological needs, such as the utilization of uncommon nutrients (e.g., galactose and allantoin) or the production of secondary metabolic antimicrobial compounds and virulence factors (e.g., aflatoxin and melanin). A flurry of recent studies has shown that several MGCs, whose functions are often associated with fungal virulence as well as with the evolutionary arms race between fungi and their competitors, have experienced horizontal gene transfer (HGT). In this review, after briefly introducing HGT as a source of gene innovation, we examine the evidence for HGT's involvement on the evolution of MGCs and, more generally of fungal metabolism, enumerate the molecular mechanisms that mediate such transfers and the ecological circumstances that favor them, as well as discuss the types of evidence required for inferring the presence of HGT in MGCs. The currently available examples indicate that transfers of entire MGCs have taken place between closely related fungal species as well as distant ones and that they sometimes involve large chromosomal segments. These results suggest that the HGT-mediated acquisition of novel metabolism is an ongoing and successful ecological strategy for many fungal species.
机译:代谢基因簇(MGC)是参与同一代谢途径的物理共定位基因,是真菌基因组的特征。 MGC最常在专门的代谢中观察到,已根据特定的生态需要在单个真菌谱系中进化,例如利用不常见的营养素(例如半乳糖和尿囊素)或产生次级代谢抗微生物化合物和毒力因子(例如,黄曲霉毒素和黑色素)。最近的一系列研究表明,几种MGC的功能通常与真菌毒力以及真菌与其竞争者之间的进化军备竞赛有关,它们已经经历了水平基因转移(HGT)。在这篇综述中,在简要介绍了HGT作为基因创新的来源之后,我们研究了HGT参与MGC进化以及更普遍的真菌代谢进化的证据,列举了介导这种转移的分子机制以及有利于它们的生态环境。 ,并讨论了推断MGC中HGT的存在所需的证据类型。当前可获得的例子表明,整个MGC的转移已经在密切相关的真菌种类和远距离的真菌种类之间发生,并且它们有时涉及大的染色体片段。这些结果表明,HGT介导的新陈代谢是许多真菌物种持续有效的生态策略。

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