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A bushel of viruses: Identification of seventeen novel putative viruses by RNA-seq in six apple trees

机译:蒲式耳的病毒:六苹果树中的RNA-SEQ鉴定了17个小型推定病毒

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Apple decline in Washington state has been increasing in incidence, particularly on Honeycrisp trees grown on G.935 rootstock. In this disease the trees exhibit dieback with necrosis at the graft union and in the rootstock. The cause of this disease remains unknown. To identify viral candidates, RNA-seq was performed on six trees: four trees exhibiting decline and two healthy trees. Across the samples, eight known viruses and Apple hammerhead viroid were detected, however none appear to be specifically associated with the disease. A BLASTx analysis of the RNA-seq data was performed to identify novel viruses that might be associated with apple decline. Seventeen novel putative viruses were detected, including an ilarvirus, two tombus-like viruses, a barna-like virus, a picorna-like virus, three ourmia-like viruses, three partiti-like viruses, and two narna-like viruses. Four additional viruses could not be classified. Three of the viruses appeared to be missing key genes, suggesting they may be dependent upon helper viruses for their function. Others showed a specific tropism, being detected only in the roots or only in the leaves. While, like the known apple viruses, none were consistently associated with diseased trees, it is possible these viruses may have a synergistic effect when co-infecting that could contribute to disease. Or the presence of these viruses may weaken the trees for some other factor that ultimately causes decline. Additional research will be needed to determine how these novel viruses contribute to apple decline.
机译:华盛顿州的Apple下降在发病率的增加,特别是在G.935砧木上种植的蜜虫树。在这种疾病中,树木在移植联合会和砧木中表现出沉淀物质。这种疾病的原因仍然未知。为了鉴定病毒候选物,RNA-SEQ是在六棵树上进行的:四棵树表现出下降和两棵健康的树木。在样品中,检测到八种已知的病毒和苹果锤头病毒域,但没有似乎与疾病有关。进行RNA-SEQ数据的BLASTX分析,以鉴定可能与Apple下降相关的新病毒。检测到17个新颖的推定病毒,包括Ilarvirus,两种墓碑类病毒,蜂巢状病毒,皮诺莎样病毒,三种犬种病毒,三种蛋白酶样病毒,以及两种肌瘤样病毒和两个鼻瘤样病毒。无法归类四种额外的病毒。其中三种病毒似乎是缺少关键基因,表明它们可能依赖于辅助病毒的功能。其他人展示了特定的热衷,只在根中或仅在树叶中检测到。虽然,与已知的苹果病毒一样,没有与患病树持续相关的,但是当有助于疾病的共同感染时,这些病毒可能具有协同效应。或者存在这些病毒的存在可能会使树木削弱最终导致下降的其他因素。需要额外的研究来确定这些新型病毒如何为Apple下降贡献。

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