黑松、杰克松及其杂交品种对真菌病原菌Dothistroma septosporum的遗传结构响应

IF 3.5 2区 生物学 Q1 EVOLUTIONARY BIOLOGY
Mengmeng Lu, Nicolas Feau, Brandon Lind, Dragana Obreht Vidakovic, Pooja Singh, Sally N. Aitken, Richard C. Hamelin, Sam Yeaman
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引用次数: 0

摘要

近几十年来,由真菌病原菌Dothistroma septosporum引起的针叶枯病(Dothistroma needle blight, DNB)严重危害了黑松(Pinus contorta Dougl)。加拿大不列颠哥伦比亚省(British Columbia, Canada .),并提出了对短叶松(Pinus banksiana Lamb.)的健康担忧。病原菌已经显示出寄主向东转移到黑松和短叶松(Pinus contorta × P. banksiana)杂交种群的迹象,并可能转移到纯短叶松。然而,我们对中隔孢子菌的抗性机制知之甚少,特别是对松树中隔孢子菌变异的遗传基础知之甚少。在这项研究中,我们通过对照接种诱导septosporum病原菌感染,并使用池测序(pool-seq)数据进行全基因组病例对照关联研究,以剖析黑松、短叶松及其杂交品种对病原菌反应的遗传结构。我们在黑松和杂交样本中鉴定了与间隔孢菌反应相关的候选基因。我们还评估了杂交群体的遗传结构,并推断了遗传渗入如何影响研究样本中与septosporum反应相关的遗传变异分布。这些结果可用于开发基因组工具来评估DNB风险,指导森林管理策略,并可能选择抗性基因型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Genetic Architecture Underlying Response to the Fungal Pathogen Dothistroma septosporum in Lodgepole Pine, Jack Pine, and Their Hybrids

Genetic Architecture Underlying Response to the Fungal Pathogen Dothistroma septosporum in Lodgepole Pine, Jack Pine, and Their Hybrids

In recent decades, Dothistroma needle blight (DNB), a pine tree disease caused by the fungal pathogen Dothistroma septosporum, has severely damaged lodgepole pine (Pinus contorta Dougl. ex. Loud.) in British Columbia, Canada, and raised health concerns for jack pine (Pinus banksiana Lamb.). The pathogen has already shown signs of host shift eastward to the hybrid populations between lodgepole pine and jack pine (Pinus contorta × P. banksiana), and possibly into pure jack pine. However, we have little knowledge about mechanisms of resistance to D. septosporum, especially the underlying genetic basis of variation in pines. In this study, we conducted controlled inoculations to induce infection by D. septosporum and performed a genome-wide case–control association study with pooled sequencing (pool-seq) data to dissect the genetic architecture underlying response in lodgepole pine, jack pine, and their hybrids. We identified candidate genes associated with D. septosporum response in lodgepole pine and in hybrid samples. We also assessed genetic structure in hybrid populations and inferred how introgression may affect the distribution of genetic variation involved in D. septosporum response in the studied samples. These results can be used to develop genomic tools to evaluate DNB risk, guide forest management strategies, and potentially select for resistant genotypes.

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来源期刊
Evolutionary Applications
Evolutionary Applications 生物-进化生物学
CiteScore
8.50
自引率
7.30%
发文量
175
审稿时长
6 months
期刊介绍: Evolutionary Applications is a fully peer reviewed open access journal. It publishes papers that utilize concepts from evolutionary biology to address biological questions of health, social and economic relevance. Papers are expected to employ evolutionary concepts or methods to make contributions to areas such as (but not limited to): medicine, agriculture, forestry, exploitation and management (fisheries and wildlife), aquaculture, conservation biology, environmental sciences (including climate change and invasion biology), microbiology, and toxicology. All taxonomic groups are covered from microbes, fungi, plants and animals. In order to better serve the community, we also now strongly encourage submissions of papers making use of modern molecular and genetic methods (population and functional genomics, transcriptomics, proteomics, epigenetics, quantitative genetics, association and linkage mapping) to address important questions in any of these disciplines and in an applied evolutionary framework. Theoretical, empirical, synthesis or perspective papers are welcome.
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