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配饰成就整体:植物病原真菌中的附属染色体和其他可丢弃的 DNA 区域。

Accessories Make the Outfit: Accessory Chromosomes and Other Dispensable DNA Regions in Plant-Pathogenic Fungi.

机构信息

1 Centre for Crop & Disease Management, Curtin University, Perth, Western Australia, Australia; and.

2 Curtin Institute for Computation, Curtin University, Perth, Western Australia, Australia.

出版信息

Mol Plant Microbe Interact. 2018 Aug;31(8):779-788. doi: 10.1094/MPMI-06-17-0135-FI. Epub 2018 Jun 28.

Abstract

Fungal pathogen genomes can often be divided into core and accessory regions. Accessory regions ARs) may be comprised of either ARs (within core chromosomes (CCs) or wholly dispensable (accessory) chromosomes (ACs). Fungal ACs and ARs typically accumulate mutations and structural rearrangements more rapidly over time than CCs and many harbor genes relevant to host-pathogen interactions. These regions are of particular interest in plant pathology and include host-specific virulence factors and secondary metabolite synthesis gene clusters. This review outlines known ACs and ARs in fungal genomes, methods used for their detection, their common properties that differentiate them from the core genome, and what is currently known of their various roles in pathogenicity. Reports on the evolutionary processes generating and shaping AC and AR compartments are discussed, including repeat induced point mutation and breakage fusion bridge cycles. Previously ACs have been studied extensively within key genera, including Fusarium, Zymoseptoria, and Alternaria, but are growing in frequency of observation and perceived importance across a wider range of fungal species. Recent advances in sequencing technologies permit affordable genome assembly and resequencing of populations that will facilitate further discovery and routine screening of ACs.

摘要

真菌病原体基因组通常可以分为核心区和非必需区。非必需区(ARs)可能由核心染色体(CCs)内的 ARs 或完全可丢弃的(辅助)染色体(ACs)组成。随着时间的推移,真菌 ACs 和 ARs 比 CCs 更容易积累突变和结构重排,并且许多 ARs 和 ACs 都携带有与宿主-病原体相互作用相关的基因。这些区域在植物病理学中特别有趣,包括宿主特异性毒力因子和次生代谢物合成基因簇。本综述概述了真菌基因组中的已知 ACs 和 ARs、用于检测它们的方法、它们与核心基因组区分开来的常见特性,以及目前已知的它们在致病性中的各种作用。讨论了产生和塑造 AC 和 AR 区室的进化过程的报告,包括重复诱导点突变和断裂融合桥循环。以前,ACs 在关键属中(包括镰孢菌属、拟茎点霉属和链格孢属)得到了广泛研究,但在更广泛的真菌物种中,其观察频率和感知重要性都在增加。测序技术的最新进展使得对种群进行负担得起的基因组组装和重测序成为可能,这将有助于进一步发现和常规筛选 ACs。

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