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灰比诺葡萄病毒内蒙古分离物全基因组分析

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[目的]获取灰比诺葡萄病毒(grapevine pinot gris virus,GPGV)内蒙古分离物全基因组序列,并对该病毒群体进行序列一致性、系统发育、基因重组以及群体遗传多样性等分析.[方法]以GPGV阳性样品为试验材料,通过RT-PCR技术和cDNA末端快速扩增技术(rapid amplification ofcDNA ends,RACE)克隆GPGV内蒙古分离物的全基因组序列,并通过分子生物学分析软件对其进行基因组序列分析.[结果]成果克隆了 2条GPGV内蒙古分离物(20IM-Vi-Vi1和20IM-ViVi2)的全基因组序列,序列全长均为7250 nt,且均编码3个ORFs;序列一致性分析结果显示,20IM-Vi-Vi1与20IM-ViVi2基因组序列核苷酸一致率为96.4%,与其他分离物的全基因组序列一致率分别为79.7%~96.8%、79.5%~97.7%;系统进化分析表明,GPGV所有全基因组分离物可划为4个分支,其中本研究中所获得的2个分离物20IM-ViVi 1与20IM-ViVi2均聚集在第Ⅰ分支,并均与中国夏黑分离物SRR2845691-GPGV亲缘关系最近;遗传多样性分析结果表明,GPGV具有较高的遗传多样性,其中GPGV亚洲分离物遗传多样性最高.[结论]首次获得GPGV内蒙古分离物的全基因组序列,并阐述了 2个GPGV内蒙古分离物与已知病毒之间的进化关系,可为中国GPGV株系划分、遗传进化研究奠定理论基础.
Complete genome sequence analysis of grapevine pinot gris virus isolates from Inner Mongolia
[Objective]The objective of this study was to acquire the complete genomic sequence of grapevine pinot gris virus(GPGV)isolates from Inner Mongolia and to perform a comprehensive analy-sis of the GPGV population,encompassing sequence identity,phylogenetic relationships,gene recombi-nation,sequence similarity and genetic diversity.[Methods]Grape leaf samples that had previously test-ed positive for GPGV served as the experimental materials for total RNA extraction.A total of 100 mg of GPGV-infected grape samples were processed in accordance with the SpectrumTM Plant Total RNA Kit instructions.The quality and concentration of the extracted RNA were evaluated via 1%agarose gel electrophoresis and microspectrophotometry,respectively,and the RNA was preserved at-80 ℃ for fu-ture use.Vector NTI software was utilized to align all the full-length genomic sequences of GPGV re-ported in the NCBI GenBank database.Three primer pairs(GPGV-1F/GPGV-1R,GPGV-2F/GPGV-2R and GPGV-3F/GPGV-3R)were designed within the conserved regions to amplify the complete genom-ic sequence of GPGV,ensuring that overlapping fragments between adjacent amplification products ex-ceeded 200 bp.Subsequently,primers(GPGV3 and GPGV1)were designed for amplifying the termi-nal sequences of GPGV.Total RNA was employed as a template to synthesize cDNA using the Super-Script™ Ⅲ Reverse Transcriptase Kit under the conditions of 50 ℃ for 1 hour,followed by 70 ℃ for 15 minutes.The cDNA template was then used to amplify the nucleotide sequences of GPGV with Q5 High-Fidelity 2xMaster Mix,employing thermal cycling parameters of denaturation at 98 ℃ for 30 sec-onds,annealing at 56 ℃ for 30 seconds,and extension at 72 ℃ for 2 minutes over 35 cycles.The SMARTer® RACE 5'/3'Kit was used to amplify the 5'and 3'terminal sequences of GPGV.PCR prod-ucts were identified through 1%agarose gel electrophoresis,and the target fragments were purified us-ing a gel DNA purification kit.The amplified and RACE-obtained GPGV genomic sequences were as-sembled using Vector NTI software to reconstruct the complete genomic sequences of GPGV.ClustalW in MEGA 11 was employed to conduct multiple sequence alignments of all complete genomic sequenc-es of GPGV in the NCBI database(152 isolates),and a phylogenetic tree was constructed using the Maximum-Likelihood method with 1000 bootstrap replicates as determined by the MODLES program.Sequence identity analysis was performed on the complete genomic sequences and open reading frames(ORFs)using BioEdit 7.2 software.Recombination analysis was executed on the complete genomic se-quences of the isolates using seven recombination detection algorithms provided by RDP4 software.Population neutrality tests,selection pressure analysis,nucleotide polymorphism analysis,and haplo-type polymorphism analysis were conducted on GPGV isolates using DnaSP v.6.12.03.[Results]The complete genomes of two GPGV isolates from Inner Mongolia(20IM-ViVi1 and 20IM-ViVi2)were successfully cloned,each comprising 7250 nucleotides and encoding three open reading frames(ORFs).Sequence identity analysis demonstrated that the genome sequences of isolates 20IM-ViVil and 20IM-ViVi2 were 96.4%identical.Their identity with other isolates varied from 79.7%to 96.8%and 79.5%to 97.7%,respectively.Furthermore,the identity among the full genome sequences of GPGV isolates in China spanned from 82.0%to 99.9%.A phylogenetic tree based on the complete genome sequences of all GPGV isolates revealed that the existing 152 complete genomes were partitioned into four clades.Clade Ⅲ and Clade Ⅳ were further divided into two minor subclades(a and b).The two isolates 20IM-ViVi1 and 20IM-ViVi2 obtained in this study were both grouped in Clade Ⅰ and were most closely relat-ed to the Summer Black grape isolate SRR2845691-GPGV from China.A phylogenetic tree constructed from Chinese GPGV isolates indicated that these isolates were predominantly divided into four clades.The GPGV isolate Shihezi-1 from Xinjiang displayed a relatively high genetic distance from other iso-lates,with a distant phylogenetic relationship,and was therefore placed in Clade Ⅰ separately.The iso-lates 20IM-ViVi1 and 20IM-ViVi2 obtained in this study were both aggregated in Clade Ⅳ and were most closely related to the Summer Black grape isolate SRR2845691-GPGV.Recombination analysis revealed that no significant recombination events were detected in the GPGV isolates 20IM-ViVi1 and 20IM-ViVi2.Genetic diversity analysis suggested that GPGV possessed high genetic diversity,with the Asian isolates showing the highest genetic diversity.[Conclusion]This study marks the first to obtain the complete genome sequences of GPGV isolates from Inner Mongolia.Both GPGV isolates had a ge-nome length of 7250 nt,containing three ORFs,and exhibited high identity with existing GPGV iso-lates(excluding the Japanese isolate H-JP2),with identity ranges from 79.7%to 96.8%and 79.5%to 97.7%,respectively.Additionally,the phylogenetic tree constructed from all GPGV complete genome sequences was divisible into four clades,with the isolates obtained in this study clustering in Clade Ⅰ.Genetic diversity analysis revealed that Asian GPGV isolates exhibited high genetic diversity,potential-ly indicating an origin center,although population expansion occurred in Europe.This study represents the first comprehensive analysis of GPGV isolates from Inner Mongolia,providing critical insights into their genomic structure and evolutionary dynamics.

Grapevine pinot gris virusPhylogenetic analysisSequence identityGenetic diversity

郭孟泽、徐磊、闫雨婷、孙平平、张磊、李正男

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内蒙古农业大学园艺与植物保护学院,呼和浩特 010018

灰比诺葡萄病毒 系统进化分析 序列一致性 遗传多样性

2024

果树学报
中国农业科学院郑州果树研究所

果树学报

CSTPCD北大核心
影响因子:1.486
ISSN:1009-9980
年,卷(期):2024.41(12)