Nuclear genome organization in fungi: from gene folding to Rabl chromosomes.

IF 10.1 2区 生物学 Q1 MICROBIOLOGY FEMS microbiology reviews Pub Date : 2023-05-19 DOI:10.1093/femsre/fuad021
David E Torres, Andrew T Reckard, Andrew D Klocko, Michael F Seidl
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引用次数: 5

Abstract

Comparative genomics has recently provided unprecedented insights into the biology and evolution of the fungal lineage. In the postgenomics era, a major research interest focuses now on detailing the functions of fungal genomes, i.e. how genomic information manifests into complex phenotypes. Emerging evidence across diverse eukaryotes has revealed that the organization of DNA within the nucleus is critically important. Here, we discuss the current knowledge on the fungal genome organization, from the association of chromosomes within the nucleus to topological structures at individual genes and the genetic factors required for this hierarchical organization. Chromosome conformation capture followed by high-throughput sequencing (Hi-C) has elucidated how fungal genomes are globally organized in Rabl configuration, in which centromere or telomere bundles are associated with opposite faces of the nuclear envelope. Further, fungal genomes are regionally organized into topologically associated domain-like (TAD-like) chromatin structures. We discuss how chromatin organization impacts the proper function of DNA-templated processes across the fungal genome. Nevertheless, this view is limited to a few fungal taxa given the paucity of fungal Hi-C experiments. We advocate for exploring genome organization across diverse fungal lineages to ensure the future understanding of the impact of nuclear organization on fungal genome function.

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真菌核基因组组织:从基因折叠到Rabl染色体。
比较基因组学最近为真菌谱系的生物学和进化提供了前所未有的见解。在后基因组学时代,一个主要的研究兴趣集中在真菌基因组的功能细节上,即基因组信息如何表现为复杂的表型。在各种真核生物中出现的证据表明,细胞核内DNA的组织是至关重要的。在这里,我们讨论了真菌基因组组织的当前知识,从细胞核内染色体的关联到单个基因的拓扑结构和这种分层组织所需的遗传因素。染色体构象捕获和高通量测序(Hi-C)已经阐明了真菌基因组是如何以Rabl结构全局组织的,在Rabl结构中,着丝粒或端粒束与核膜的相反面相关。此外,真菌基因组在区域上被组织成拓扑相关的结构域样(tad样)染色质结构。我们讨论了染色质组织如何影响整个真菌基因组中dna模板化过程的正常功能。然而,由于真菌Hi-C实验的缺乏,这种观点仅限于少数真菌分类群。我们提倡探索不同真菌谱系的基因组组织,以确保未来了解核组织对真菌基因组功能的影响。
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来源期刊
FEMS microbiology reviews
FEMS microbiology reviews 生物-微生物学
CiteScore
17.50
自引率
0.90%
发文量
45
审稿时长
6-12 weeks
期刊介绍: Title: FEMS Microbiology Reviews Journal Focus: Publishes reviews covering all aspects of microbiology not recently surveyed Reviews topics of current interest Provides comprehensive, critical, and authoritative coverage Offers new perspectives and critical, detailed discussions of significant trends May contain speculative and selective elements Aimed at both specialists and general readers Reviews should be framed within the context of general microbiology and biology Submission Criteria: Manuscripts should not be unevaluated compilations of literature Lectures delivered at symposia must review the related field to be acceptable
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