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国内和外来马铃薯 Y 病毒 S 分离物的分子特征及基因组序列的全球分析。

Molecular characterization of domestic and exotic potato virus S isolates and a global analysis of genomic sequences.

机构信息

Department of Plant Pathology, Washington State University, PO Box 646430, Pullman, WA, 99164-6430, USA.

出版信息

Arch Virol. 2014 Aug;159(8):2115-22. doi: 10.1007/s00705-014-2022-6. Epub 2014 Mar 9.

Abstract

Five potato virus S (PVS) isolates from the USA and three isolates from Chile were characterized based on biological and molecular properties to delineate these PVS isolates into either ordinary (PVS(O)) or Andean (PVS(A)) strains. Five isolates - 41956, Cosimar, Galaxy, ND2492-2R, and Q1 - were considered ordinary strains, as they induced local lesions on the inoculated leaves of Chenopodium quinoa, whereas the remaining three (FL206-1D, Q3, and Q5) failed to induce symptoms. Considerable variability of symptom expression and severity was observed among these isolates when tested on additional indicator plants and potato cv. Defender. Additionally, all eight isolates were characterized by determining the nucleotide sequences of their coat protein (CP) genes. Based on their biological and genetic properties, the 41956, Cosimar, Galaxy, ND2492-2R, and Q1 isolates were identified as PVS(O). PVS-FL206-1D and the two Chilean isolates (PVS-Q3 and PVS-Q5) could not be identified based on phenotype alone; however, based on sequence comparisons, PVS-FL206-1D was identified as PVS(O), while Q3 and Q5 clustered with known PVS(A) strains. C. quinoa may not be a reliable indicator for distinguishing PVS strains. Sequences of the CP gene should be used as an additional criterion for delineating PVS strains. A global genetic analysis of known PVS sequences from GenBank was carried out to investigate nucleotide substitution, population selection, and genetic recombination and to assess the genetic diversity and evolution of PVS. A higher degree of nucleotide diversity (π value) of the CP gene compared to that of the 11K gene suggested greater variation in the CP gene. When comparing PVS(A) and PVS(O) strains, a higher π value was found for PVS(A). Statistical tests of the neutrality hypothesis indicated a negative selection pressure on both the CP and 11K proteins of PVS(O), whereas a balancing selection pressure was found on PVS(A).

摘要

从美国分离到的 5 个马铃薯 Y 病毒 S(PVS)分离物和从智利分离到的 3 个分离物,基于生物学和分子特性进行了特征描述,以将这些 PVS 分离物划分为普通(PVS(O))或安第斯(PVS(A))株系。5 个分离物 - 41956、Cosimar、Galaxy、ND2492-2R 和 Q1 - 被认为是普通株系,因为它们在接种的藜叶片上诱导了局部病变,而其余 3 个(FL206-1D、Q3 和 Q5)未能诱导症状。当在其他指示植物和马铃薯品种 Defender 上进行测试时,这些分离物之间观察到症状表达和严重程度的相当大的变异性。此外,还通过确定其外壳蛋白(CP)基因的核苷酸序列来表征所有 8 个分离物。基于其生物学和遗传特性,将 41956、Cosimar、Galaxy、ND2492-2R 和 Q1 分离物鉴定为 PVS(O)。PVS-FL206-1D 和两个智利分离物(PVS-Q3 和 PVS-Q5)不能仅基于表型进行鉴定;然而,基于序列比较,PVS-FL206-1D 被鉴定为 PVS(O),而 Q3 和 Q5 与已知的 PVS(A)株系聚类。藜可能不是区分 PVS 株系的可靠指示剂。CP 基因的序列应作为区分 PVS 株系的附加标准。对来自 GenBank 的已知 PVS 序列进行了全球遗传分析,以调查核苷酸取代、种群选择和遗传重组,并评估 PVS 的遗传多样性和进化。与 11K 基因相比,CP 基因的核苷酸多样性(π 值)更高,表明 CP 基因的变异更大。在比较 PVS(A)和 PVS(O)株系时,发现 PVS(A)的π 值更高。对 PVS(O)的 CP 和 11K 蛋白的中性假设的统计检验表明存在负选择压力,而对 PVS(A)则存在平衡选择压力。

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