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在堪萨斯州与其他常见小麦病毒共同感染的小麦中检测到雀麦花叶病毒。

Brome mosaic virus detected in Kansas wheat co-infected with other common wheat viruses.

作者信息

Ranabhat Nar B, Fellers John P, Bruce Myron A, Rupp Jessica L Shoup

机构信息

Department of Plant Pathology, Throckmorton Plant Science Center, Kansas State University, Manhattan, KS, United States.

USDA-ARS, Hard Winter Wheat Genetics Research Unit, Manhattan, KS, United States.

出版信息

Front Plant Sci. 2023 Mar 3;14:1096249. doi: 10.3389/fpls.2023.1096249. eCollection 2023.

Abstract

Wheat breeders are developing new virus-resistant varieties; however, it is assumed that only a few viruses or well-known viruses are present in the field. New sequencing technology is allowing for better determination of natural field virus populations. For three years, 2019-2021, Kansas wheat field surveys were conducted to determine the constituents of natural field virus populations using nanopore sequencing. During analysis, brome mosaic virus (BMV) was identified for the first time in Kansas but was in association with other wheat viruses. Brome mosaic virus was identified from 29 out of 47 different Kansas counties sampled and 44% of the total samples. BMV was found co-infected with wheat streak mosaic virus (WSMV) and Triticum mosaic virus (TriMV) in 27.8% of the samples, with WSMV only (13.9%) and co-infected with WSMV + TriMV + High Plains wheat mosaic emaravirus (HPWMoV) (13.9%). RNA genomes of Kansas BMV isolates had 99.4 to 100% nucleotide and amino acid sequence identity, respectively, to each other. RNA2a possessed relatively high divergence (π = 0.01) compared to RNA1a and RNA3a (π = 0.004). Coding regions of all BMV RNAs were considered negative for purifying selection pressure as nonsynonymous and synonymous nucleotide ratio was less than one (dNs/dS >1). The identification of BMV in Kansas virus populations adds another layer of complexity to plant breeding. This work provides information to improve tools to aid in monitoring, detecting, and determining the variation within BMV.

摘要

小麦育种者正在培育新的抗病毒品种;然而,人们认为田间仅存在少数几种病毒或已知病毒。新的测序技术有助于更好地确定田间天然病毒种群的构成。在2019年至2021年的三年间,堪萨斯州开展了小麦田间调查,以利用纳米孔测序确定田间天然病毒种群的组成成分。在分析过程中,首次在堪萨斯州发现了雀麦花叶病毒(BMV),但它与其他小麦病毒有关联。在47个不同的堪萨斯州采样县中的29个县以及44%的总样本中发现了雀麦花叶病毒。在27.8%的样本中发现BMV与小麦线条花叶病毒(WSMV)和小麦花叶病毒(TriMV)共同感染,仅与WSMV共同感染的情况占13.9%,与WSMV + TriMV + 高平原小麦花叶埃玛病毒(HPWMoV)共同感染的情况占13.9%。堪萨斯州BMV分离株的RNA基因组彼此之间的核苷酸和氨基酸序列同一性分别为99.4%至100%。与RNA1a和RNA3a(π = 0.004)相比,RNA2a具有相对较高的差异(π = 0.01)。由于非同义核苷酸与同义核苷酸的比率小于1(dNs/dS >1),所有BMV RNA的编码区被认为不存在纯化选择压力。在堪萨斯州病毒种群中发现BMV给植物育种增加了另一层复杂性。这项工作提供了信息,以改进有助于监测、检测和确定BMV变异的工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8570/10022736/849643ecddb5/fpls-14-1096249-g001.jpg

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