通过病毒元转录组学分析揭示韩国萨摩蜜柑(Citrus unshiu)病毒感染的多样性。

Hae-Jun Kim, Se-Ryung Choi, In-Sook Cho, Rae-Dong Jeong
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引用次数: 0

摘要

柑橘种植起着举足轻重的作用,为全球水果生产和饮食消费做出了重大贡献。要有效管理柑橘作物中的植物病毒病,就必须准确识别病毒病原体。高通量测序是一种可供选择的方法,它可以在不需要预先存在的信息的情况下大规模地进行全面的病原体鉴定。在本研究中,我们采用高通量测序技术调查了韩国三个不同地区柑橘感染的病毒病原体:济州岛(Jejudo)、万户郡(Wando-gun)和唐津市(Dangjin-si)。研究结果揭示了表现出地区差异的多种病毒和病毒病。值得注意的是,本研究除了发现了众所周知的柑橘病毒(如萨摩矮小病毒、柑橘花叶病毒和柑橘叶斑病病毒 (CLBV))外,还发现了几种以前未在韩国柑橘中报道过的病毒和病毒病。系统进化分析表明,大多数已发现的病毒与中国或日本的分离物亲缘关系最近。但是,CLBV 和柑橘病毒-I-LSS 的系统发育位置各不相同,反映了它们的地区起源。这项研究通过 HTS 促进了我们对柑橘病毒组多样性和区域动态的了解,强调了其在揭示农业中错综复杂的病毒病原体方面的潜力。因此,它极大地促进了疾病管理策略,确保了柑橘产业的恢复能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Viral Metatranscriptomic Analysis to Reveal the Diversity of Viruses Infecting Satsuma Mandarin (Citrus unshiu) in Korea.
Citrus cultivation plays a pivotal role, making a significant contribution to global fruit production and dietary consumption. Accurate identification of viral pathogens is imperative for the effective management of plant viral disease in citrus crops. High-throughput sequencing serves as an alternative approach, enabling comprehensive pathogen identification on a large scale without requiring pre-existing information. In this study, we employed HTS to investigate viral pathogens infecting citrus in three different regions of South Korea: Jejudo (Jeju), Wando-gun (Wando), and Dangjin-si (Dangjin). The results unveiled diverse viruses and viroids that exhibited regional variations. Notably, alongside the identification of well-known citrus viruses such as satsuma dwarf virus, citrus tatter leaf virus, and citrus leaf blotch virus (CLBV), this study also uncovered several viruses and viroids previously unreported in Korean citrus. Phylogenetic analysis revealed that majority of identified viruses exhibited the closest affilations with isolates from China or Japan. However, CLBV and citrus viroid-I-LSS displayed diverse phylogenetic positions, reflecting their regional origins. This study advances our understanding of citrus virome diversity and regional dynamics through HTS, emphasizing its potential in unraveling intricate viral pathogens in agriculture. Consequently, it significantly contributes to disease management strategies, ensuring the resilience of the citrus industry.
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