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Nanopore Sequencing as a Surveillance Tool for Plant Pathogens in Plant and Insect Tissues

机译:纳米孔测序作为植物和昆虫组织中植物病原体的监测工具

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Plant pathogens are constantly emerging and spreading into new areas and there are often limited postdiagnosis treatment options for infection, making surveillance key to their control. Here we present results from a study testing the efficacy of a portable nanopore-based massively parallel sequencing (MPS) technology for use in the detection of diverse plant pathogens in selected samples. The Oxford MinlON device was coupled with whole transcriptome amplification (WTA) to sequence the metatranscriptome of plant and insect tissues infected with either Candidatus Liberibacter asiaticus or plum pox virus. Results showed that this methodology is useful for detecting unsuspected viral and bacterial pathogens in plant and insect tissues. The percentage of generated reads assigned to plum pox virus was 95% from infected tissue and 3% from the viruliferous insect, Myzus persicae. Diaphorina citri sequencing led to 22% of the reads mapping as Ca. L. asiaticus. Plum pox virus and Ca. L. asiaticus were detected in both tissue and insect samples near the beginning of each sequencing run, demonstrating the capability of this methodology to obtain results rapidly. This approach also proved the capability of this system to determine the major components of the insect vector's microbiome and the specific strain of small-genome, high-titer pathogens.
机译:植物病原体不断出现并蔓延到新的地区,并且经常有限的迟交治疗方案进行感染,对其控制进行监测。在这里,我们从研究中呈现了试验便携式纳米孔的大规模平行测序(MPS)技术用于检测所选样品中不同植物病原体的疗效的结果。牛津Minlon装置与整个转录组扩增(WTA)偶联,序列植物的植物和昆虫组织的MetaTranscraphy组织,感染Candidatus Libibacter Asiaticus或Plum Pox病毒。结果表明,该方法可用于检测植物和昆虫组织中的未缺点的病毒和细菌病原体。分配给Plum Pox病毒的产生读数的百分比从受感染的组织的95%和3%来自毒昆虫,Myzus persicae。 Diaphorina Citri测序导致读数的22%作为CA映射。 L. Asiaticus。李子痘病毒和加利福尼亚州。 L.在每次测序开始的开始附近的两种组织和昆虫样品中检测到Asiaticus,证明了这种方法的能力迅速获得结果。这种方法还证明了该系统的能力,以确定昆虫载体的微生物组的主要成分和小基因组,高滴度病原体的特异性菌株。

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    《Plant Disease》 |2018年第8期|共5页
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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 植物保护;
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