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一种在气培设施中引起黑根腐病的新兴真菌病原体的混合基因组组装

Hybrid Genome Assembly of , an Emerging Fungal Pathogen Causing Black Root Rot in an Aeroponic Facility.

作者信息

Dumigan Christopher R, Maddock Savanna, Bray-Stone Delaney, Deyholos Michael K

机构信息

University of British Columbia Okanagan, Irving K. Barber Faculty of Science, Kelowna, British Columbia V1V 1V7, Canada.

Dycar Pharmaceuticals Ltd., Cranbrook, British Columbia V1C 4C7, Canada.

出版信息

Plant Dis. 2023 Sep;107(9):2679-2686. doi: 10.1094/PDIS-11-22-2690-RE. Epub 2023 Sep 18.

Abstract

The resurged interest in cultivation of has presented an array of new challenges. Among them are the difficult-to-control pests and pathogens that infect cannabis plants. The limited methods for disease control available to cannabis growers necessitates early detection of plant pathogens, something that molecular techniques such as DNA sequencing has greatly improved. This study reports for the first time the fungal plant pathogen causing black root rot in high THC-containing cannabis. Aeroponically grown cannabis plants at a licenced production facility in Cranbrook BC, Canada, rapidly displayed root discoloration and rot symptoms despite testing negative for all commercially available pathogen tests. Developing sequencing-based disease diagnostics requires genomic information, so this study presents the first whole genome sequence of the multihost, widespread black root rot pathogen . Hybrid genome assembly using Oxford Nanopore long-reads and Illumina short-reads yielded a genome size of 28.2 Mb represented over 404 contigs with an N50 of 267 kb. Genome annotation predicted 6,960 protein-coding genes with 59,477 functional annotations. The availability of this genome will assist in sequence-based diagnostic development, comparative genomics, and taxonomic resolution of this globally important plant pathogen.

摘要

对大麻种植重新燃起的兴趣带来了一系列新挑战。其中包括感染大麻植株的难以控制的害虫和病原体。大麻种植者可用的疾病控制方法有限,因此需要尽早检测植物病原体,而DNA测序等分子技术极大地改善了这一点。本研究首次报告了在高THC含量的大麻中引起黑根腐病的真菌植物病原体。在加拿大不列颠哥伦比亚省克兰布鲁克的一家持牌生产设施中,通过气培法种植的大麻植株尽管所有市售病原体检测均呈阴性,但仍迅速出现根部变色和腐烂症状。基于测序的疾病诊断需要基因组信息,因此本研究展示了多宿主、广泛传播的黑根腐病病原体的首个全基因组序列。使用牛津纳米孔长读长和Illumina短读长进行混合基因组组装,得到的基因组大小为28.2 Mb,由404个以上的重叠群组成,N50为267 kb。基因组注释预测有6960个蛋白质编码基因,带有59477个功能注释。该基因组的可用性将有助于基于序列的诊断开发、比较基因组学以及对这种全球重要植物病原体的分类解析。

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