ZHANG Chunyu,LI Xiaoyu,WANG Chen,et al.Sequencing and Analysis of the Genome of Lily mottle virus (LMoV) Jingyu Isolate[J].Northern Horticulture,2023,(24):59-64.[doi:10.11937/bfyy.20232243]
百合斑驳病毒靖宇分离物全基因组序列测定与进化分析
- Title:
- Sequencing and Analysis of the Genome of Lily mottle virus (LMoV) Jingyu Isolate
- 文章编号:
- 1001-0009(2023)24-0059-06
- Keywords:
- Lily mottle virus(LMoV); genome
- 分类号:
- S 435.29
- 文献标志码:
- A
- 摘要:
- 以采自吉林省白山市靖宇县的野生百合感病叶片为试材,采用小RNA深度测序法检测到1株百合斑驳病毒(Lily mottle virus,LMoV),采用分段克隆方法,对LMoV靖宇分离物(LMoV-JY)的全基因组进行测定并分析,以期对吉林省百合病毒病的检测和防控提供参考依据。结果表明:LMoV-JY基因组大小为9 648个核苷酸(nt)序列(GenBank登录号MT795719),该核苷酸序列在第154~9 444位存在1个大的开放阅读框(ORF),编码1个多聚蛋白(分子量351.46 kD)。LMoV-JY与GenBank中登录的其他LMoV 分离物的全基因组核苷酸序列比较,其一致性为82.82%~97.85%,在氨基酸水平上的一致性为92.96%~98.64%,其中与百合斑驳病毒大连分离物LMoV-DL(HM222521)的一致性在该2种水平上均为最高。对比LMoV-JY外壳蛋白与其他54个分离物的氨基酸序列,发现可将LMoV分离物分为2个类群。
- Abstract:
- The infected leaves of wild lily were taken from Jingyu county,Baishan city,Jilin Province.Lily mottle virus (LMoV) was detected by small RNA deep sequencing and the whole genome of LMoV Baishan-Jingyu isolate (LMOV-JY) was determined and analyzed by segmentation cloning method,in order to provide reference for detection,prevention and control of lily virus disease in Jilin Province.The results showed that the genome of LMoV-JY consisted of 9 648 nucleotides (nt) (Genbank Accession No.MT795719).A large open reading frame (ORF) located at nt positions from 154 to 9 444 which encoding a polypeptide of 351.46 kD.By compairing with other isolates of LMoV,the nucleotide identity was from 82.82% to 97.85%,and the amino acid identity was from 92.96% to 98.64%,and it shared the highest identity with the Dalian isolate LMoV-DL (HM222521).Amino acid sequences comparison of the CP gene of LMoV-JY with other 54 isolates in GenBank showed that all of the isolates could be divided into two subgroups.
参考文献/References:
[1]KWON J Y,RYU K H,CHOI S H.Reverse transcription polymerase chain reaction-based system for simultaneous detection of multiple lily-infecting viruses[J].The Plant Pathology Journal,2013,29(3):338-343.[2]李月月,孙健,谭冠林,等.百合斑驳病毒云南分离物全基因组序列分析及CP结构预测[J].植物病理学报,2018,48(2):187-194.[3]ASJES C J,BLOM B G J,SCHADEWIJK A R.Effect of seasonal detection of Lily symptomless virus and Lily mottle virus on aphid-borne virus spread in Liliumin in the Netherlands[J].Acta Horticulturae,2002,568:201-207.[4]刘博,明军,刘春,等.喇叭水仙中百合斑驳病毒的RT-PCR检测及序列分析[J].园艺学报,2008,35(12):1843-1848.[5]杨丹,赵斌安,许燕,等.百合病毒检测技术研究进展[J].生物学通报,2021,56(7):1-3.[6]徐榕雪,明军,穆鼎,等.百合三种病毒的多重RT-PCR检测[J].园艺学报,2007,34(2):443-448.[7]袁志豪,李振锋,陆月霞,等.百合病毒的高通量测序鉴定和RT-PCR检测[J].华中农业大学学报(自然科学版),2022,41(3):157-163.[8]周繇.长白山百合属植物野生资源及其开发利用[J].中国野生植物资源,2002(3):22-23.[9]崔凯峰,刘丽杰,于长宝,等.长白山区野生百合引种驯化及园艺栽培技术[J].中国野生植物资源,2013,32(3):63-66.[10]李文琦,付崇毅,孙平平,等.四种主要草莓病毒研究进展[J].北方园艺,2022(9):122-129.
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备注/Memo
第一作者简介:张春雨(1988-),女,硕士,助理研究员,现主要从事农业微生物等研究工作。E-mail:wawanice@126.com.责任作者:王永志(1978-),男,博士,研究员,现主要从事植物病理等研究工作。E-mail:yzwang@126.com.基金项目:吉林省农业科技创新工程资助项目(CXGC2021ZY022)。收稿日期:2023-07-04