First fine mapping of a strain of Rhizoctonia Solani AG-3, causing tobacco target spot.

IF 1.9 Q3 GENETICS & HEREDITY
Pan Ma, Mengjuan Qiu, Rubing Xu, Zhao Wang, Tom Hsiang, Junbin Huang, Lu Zheng, Yanyan Li
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Abstract

Objectives: Rhizoctonia solani AG-3 is the casual pathogen of tobacco target spot, a serious fungal disease of tobacco that severely decreases yield and quality. To examine the pathogenic mechanisms of this fungus, it is crucial to understand its genetics. The objective of this work was to generate the first fine mapping of a R. solani AG-3 strain from tobacco and to explore potential virulence genes, which will lay the foundation for genetic characterization and its interaction with tobacco. The functional genes involved in this study can be used as the candidates for follow-up experimental analyses.

Data description: Rhizoctonia solani AG-3 strain XEMS25-1 was isolated from disease leaves of tobacco target spot in Enshi, Hubei Province, China. The DNA was sequenced using Pacific Biosciences Sequel II (PacBio) and Illumina NovaSeq PE150 (Nova). Data from both sequencing platforms were combined, and the de novo assembly yielded an estimated 39.4 Mb genome. Completeness of the genome examined using Benchmarking Universal SingleCopy Orthologs (BUSCO) showed that the assembly had 93.7% of the 758 genes in fungi_odb10. PHI (Pathogen Host Interactions) database analysis revealed 519 reduced virulence genes, 91 loss of pathogenicity genes, 28 hypervirulence genes and 18 effectors might be the pathogenicity-related genes in R. solani AG-3 strain XEMS25-1. These genes could be selected as the RNA-silencing targets for exploring the molecular mechanisms of R. solani AG-3 pathogenicity on tobacco.

首次精细定位了一株索拉尼根丝核菌AG-3,引起烟草靶斑。
目的:茄枯丝核菌AG-3是烟草靶斑的偶然病原菌,是严重影响烟草产量和品质的严重真菌病害。为了研究这种真菌的致病机制,了解其遗传学是至关重要的。本研究的目的是建立烟草源枯枯病菌AG-3的精细图谱,并探索其潜在的毒力基因,为其遗传鉴定及其与烟草的相互作用奠定基础。本研究涉及的功能基因可作为后续实验分析的候选基因。资料描述:从湖北恩施烟草靶点病叶中分离到枯丝核菌AG-3菌株XEMS25-1。使用Pacific Biosciences Sequel II (PacBio)和Illumina NovaSeq PE150 (Nova)对DNA进行测序。来自两个测序平台的数据被结合起来,重新组装产生了大约39.4 Mb的基因组。利用Benchmarking Universal SingleCopy Orthologs (BUSCO)对真菌odb10的758个基因进行了完整性检测,结果显示该序列占93.7%。PHI(病原菌宿主相互作用)数据库分析显示,菌株XEMS25-1有519个毒力基因降低,91个致病性基因缺失,28个高毒力基因和18个效应基因可能是与致病性相关的基因。这些基因可作为rna沉默靶点,用于探索茄枯病菌AG-3对烟草致病性的分子机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
4.90
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