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首页> 外文期刊>Virology Journal >Viral metagenomics of aphids present in bean and maize plots on mixed-use farms in Kenya reveals the presence of three dicistroviruses including a novel Big Sioux River virus - like dicistrovirus
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Viral metagenomics of aphids present in bean and maize plots on mixed-use farms in Kenya reveals the presence of three dicistroviruses including a novel Big Sioux River virus - like dicistrovirus

机译:肯尼亚混合用途农场的豆类和玉米田中存在的蚜虫的病毒宏基因组学揭示了三种双顺反病毒的存在,其中包括一种新型的大苏河病毒(如Dicistrovirus)

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Background Aphids are major vectors of plant viruses. Common bean ( Phaseolus vulgaris L.) and maize ( Zea mays L.) are important crops that are vulnerable to aphid herbivory and aphid-transmitted viruses. In East and Central Africa, common bean is frequently intercropped by smallholder farmers to provide fixed nitrogen for cultivation of starch crops such as maize. We used a PCR-based technique to identify aphids prevalent in smallholder bean farms and next generation sequencing shotgun metagenomics to examine the diversity of viruses present in aphids and in maize leaf samples. Samples were collected from farms in Kenya in a range of agro-ecological zones. Results Cytochrome oxidase 1 ( CO1 ) gene sequencing showed that Aphis fabae was the sole aphid species present in bean plots in the farms visited. Sequencing of total RNA from aphids using the Illumina platform detected three dicistroviruses. Maize leaf RNA was also analysed. Identification of Aphid lethal paralysis virus (ALPV), Rhopalosiphum padi virus (RhPV), and a novel Big Sioux River virus (BSRV)-like dicistrovirus in aphid and maize samples was confirmed using reverse transcription-polymerase chain reactions and sequencing of amplified DNA products. Phylogenetic, nucleotide and protein sequence analyses of eight ALPV genomes revealed evidence of intra-species recombination, with the data suggesting there may be two ALPV lineages. Analysis of BSRV-like virus genomic RNA sequences revealed features that are consistent with other dicistroviruses and that it is phylogenetically closely related to dicistroviruses of the genus Cripavirus . Conclusions The discovery of ALPV and RhPV in aphids and maize further demonstrates the broad occurrence of these dicistroviruses. Dicistroviruses are remarkable in that they use plants as reservoirs that facilitate infection of their insect replicative hosts, such as aphids. This is the first report of these viruses being isolated from either organism. The BSRV-like sequences represent a potentially novel dicistrovirus infecting A. fabae .
机译:背景蚜虫是植物病毒的主要载体。普通豆(菜豆)和玉米(玉米)是易受蚜虫食草和蚜虫传播病毒侵害的重要农作物。在东非和中非,小农经常播种普通豆,以提供固定氮,用于种植玉米等淀粉作物。我们使用基于PCR的技术来鉴定小农户豆农中普遍存在的蚜虫,并使用下一代测序shot弹枪宏基因组学来研究蚜虫和玉米叶片样品中存在的病毒多样性。从肯尼亚一系列农业生态区的农场收集了样本。结果细胞色素氧化酶1(CO1)基因测序表明,Aphis fabae是所考察农场豆田中唯一的蚜虫。使用Illumina平台从蚜虫中提取总RNA可以检测到三种双顺反病毒。还分析了玉米叶RNA。使用逆转录-聚合酶链反应和扩增的DNA产物测序确认了在蚜虫和玉米样品中鉴定出蚜虫致死性麻痹病毒(ALPV),Rhopalosiphum padi病毒(RhPV)和新型大苏河病毒(BSRV)状双梭病毒。 。系统发育,核苷酸和蛋白质序列分析的八个ALPV基因组揭示了种内重组的证据,数据表明可能有两个ALPV谱系。对BSRV样病毒基因组RNA序列的分析揭示了与其他双顺反病毒一致的特征,并且在系统发育上与Cripavirus属的双顺反病毒密切相关。结论在蚜虫和玉米中发现ALPV和RhPV进一步证明了这些双顺反病毒的广泛存在。 Dicistroviruses引人注目之处在于,它们将植物用作贮藏库,以促进其昆虫复制宿主(如蚜虫)的感染。这是从任何一种生物体中分离出这些病毒的第一份报告。 BSRV样序列代表感染了Fab。的潜在的新型双顺反病毒。

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