[1]王建辉,刘建军,陈克玲,等.葡萄病毒研究进展[J].北方园艺,2017,41(09):179-183.[doi:10.11937/bfyy.201709038]
 WANG Jianhui,LIU Jianjun,CHEN Keling,et al.Research Progress in Grapevine Viruses[J].Northern Horticulture,2017,41(09):179-183.[doi:10.11937/bfyy.201709038]
点击复制

葡萄病毒研究进展

参考文献/References:

 

[1]MARTELLI G P.Directory of virus and virus-like diseases of the grapevine and their agents[J].J Plant Pathol,2014,96(IS):1-4.

[2]MARTELLI G P.Grapevine virology highlights 20042005[C].Extended Abstracts 15th ICVG Conference,2006:13-18.

[3]MENG B,LI C,GOSZCYNSKI D E,et al.Genome sequences of two biologically distinct strains of grapevine leafroll-associated virus 2 and sequence analysis[J].Virus Genes,2005,31:31-41.

[4]TURTURO CSALDARELLI PDONG Yet al.Genetic variability and population structure of grapevine leafroll-associated virus 3 isolates[J].J Gen Virol2005,86:217-224.

[5]CHOOI K MCOHEN DPEARSON M N.Differential distribution and titre of selected grapevine leafroll-associated virus 3 genetic variants within grapevine rootstocks[J].Arch Virol,2016,161:1371-1375.

[6]ALKOWNI M HROWHANI ADAUBERT S,et al.Partial characterization of a new ampelovirus associated with grapevine leafroll disease[J].J Plant Pathol,2004,86:123-133.

[7]AGLAYAN KELCI EGAZEL M.Detection and partial characterization of grapevine leafroll-associated virus 1 in pomegranate trees in Turkey[J].Eur J Plant Pathol,2016,145:199-202.

[8]GALIAPAROV NTANNE ESELA Iet al.Infectious RNA transcripts from grapevine virus A cDNA clone[J].Virus Genes199919):235-242.

[9]GALIAPAROV NTANNE ESELA Iet al.Functional analysis of the grapevine virus A genome[J].Virology,2003,306:42-50.

[10]GALIAPAROV NTANNE EMAWASSI Met al.ORF5 of grapevine virus A encodes a nucleic acid-binding protein and affect pathogenesis[J].Virus Genes,200327):257-262.

[11]ZHOU Z SDELL’ORCO MSADARELLI Pet al.Identification of an RNA-silencing suppressor in the genome of grapevine virus A[J].J Gen Virol,2006,87:2387-2395.

[12]GALIAPAROV NGOSZCYNSKI D ECHE Xet al.Two classes of subgenomic RNA of grapevine virus A produced by internal controller elements[J].Virology2003,312:434-448.

[13]HAVIV SGALIAPAROV NGOSZCYNSK D Eet al.Engineering the genome of grapevine virus A into a vector for expression of proteins in herbaceous plants[J].J Virol Methods2006,132:227-231.

[14]WANG J HXI D HLIU J Jet al.Genetic variability in grapevine virus a from Vitis vinifera L.Vitis labrusca L.in SichuanChina[J].Turkish Journal of Biology,2012,36:542-551.

[15]SHI BHABILI NGAFNY Ret al.Extensive variation of sequence within isolates of grapevine virus B[J].Virus Genes,2004(29):279-285.

[16]GOSZCZYNSKI D E.Brief report of the construction of infectious DNA clones of South African genetic variants of grapevine virus A and grapevine virus B[J].Springer Plus2015(4):739.

[17]MENG BLI CWANG Wet al.Complete genome sequences of two new variants of grapevine rupestris stem pitting-associated virus and comparatrive analyses[J].J Gen Virol Virology2005861555-1560.

[18]BEUVE MMOURY BSPILMONT A Set al.Viral sanitary status of declining grapevine Syrah clones and genetic diversity of grapevine rupestris stem pitting-associated virus[J].Eur J Plant Pathol2013,135:439-452.

[19]HU G JDONG Y FZHU H Jet al.Molecular characterizations of two grapevine rupestris stem pitting-associated virus isolates from China[J].Arch Virol,2015,160:2641-2645.

[20]MENG BLI C.The capsid protein of grapevine rupestris stem pitting-associated virus contains a typical nuclear localization signal and targets to the nucleus[J].Virus Res,2010,153:212-217.

[21]WETZEL TMEUNIER LJAEGER Uet al.Complete nucleotide sequences of the RNAs2 of German isolates of grapevine fanleaf and Arabis mosaic nepoviruses[J].Virus Res,2001,75:139-145.

[22]PEJMAN N ADAUBERT SROWHANI A.Quasispecies nature of the genome of grapevine fanleaf virus[J].J Gen Virol2001,82:1791-1795.

[23]EBEL RSCHNABEL AREUSTLE G Met al.Complete nucleotide sequence of an isolate of the nepovirus raspberry ringspot virus from grapevine[J].Virus Res,2003,97:141-144.

[24]ELBEAINO TKIYI HBOUTARFA Ret al.Phylogenetic and recombination analysis of the homing protein domain of grapevine fanleaf virus (GFLV) isolates associated withyellow mosaic and infectious malformation syndromes in grapevine[J].Arch Virol2014,159:2757-2764.

[25]JONES T JRAYAPATI N A,NITA M.Occurrence of grapevine leafroll associated virus-23 and Grapevine fleck virus in VirginiaU.S.A.and factors affecting virus infected vines[J].Eur J Plant Pathol,2015,142:209-222.

[26]SABANADZOVIC SSABANADZOVIC NSADARELLI Pet al.Complete nucleotide sequence and genome organization of grapevine fleck virus[J].J Gen Virol2001822009-2015.

[27]GHANEM-SABANADZOVIC N ASABANADZOVIC SMARTELLI G Pet al.Sequence analysis of the 3’ end of three Grapevine fleck virus-like viruses from grapevine[J].Virus Genes2003(27)11-16.

[28]PATHIRANA RMCKENZIE M J.A modified green-grafting technique for large-scale virus indexing of grapevine(Vitis vinifera L.)[J].Scientia Horticultutae2005,107:97-102.

[29]DOVAS C IKATIS N I.A spot nested RT-PCR method for the simultaneous detection of members of the Vitivirus and Foveavirus genera in grapevine[J].J Virol Methods2003,170:99-106.

[30]DOVAS C IKATIS N I.A spot multiplex nested RT-PCR for the simultaneous and generic detection of viruses involved in the aetiology of grapevine leafroll and rugose wood of grapevine[J].J Virol Methods,2003,109:217-226.

[31]DIGIARO MELBEAINO TMARTELLI G P.Development of degenerate and species-specific primers for the differential and simultaneous RT-PCR detection of grapevine-infecting nepoviruses of subgroups AB and C[J].J Virol Methods2007,141(1):34-40.

[32]GAMBINO GGRIBAUDO I.Simultaneous detection of nine grapevine viruses by multiplex reverse transcription-polymerase chain reaction with coamplification of a plant RNA as internal control[J].Phytopathology200696:1223-1229.

[33]OSMAN FROWHANI A.Application of spotting sample preparation technique for the detection of pathogens in woody plants by RT-PCR and real-time PCR(TaqMan)[J].J Virol Methods2006133:130-136.

[34]RWAHNIH M A LDAUBERT SGOLINO Det al.Deep sequencing analysis of RNAs from a grapevine showing Syrah decline symptoms reveals a multiple virus infection that includes a novel virus[J].Virology,2009,387:395-401.

[35]RWAHNIH M ADAUBERT SURBEZ-TORRES J Ret al.Deep sequencing evidence from single grapevine plants reveals a virome dominated by mycoviruses[J].Arch Virol,2011,156:397-403.

[36]POOJARI SALABI O JFOFANOV V Yet al.A Leafhopper-transmissible DNA virus with novel evolutionary lineage in the family geminiviridae implicated in grapevine red leaf disease by next-generation sequencing[J/OL].PLoS ONE2013,8(6)e64194.

[37]GAMBINO GMATTEO DGRIBAUDO I.Elimination of grapevine fanleaf virus from three Vitis vinifera cultivars by somatic embryogenesis[J].Eur J Plant Pathol2009123:461-493.

[38]SKIADA F GMALIOGKA V IKATIS N Iet al.Elimination of grapevine rupestris stem pitting-associated virus (GRSPaV) from two Vitis vinifera cultivars by in vitro chemotherapy[J].Eur J Plant Pathol,2013,135:407-414.

[39]WANG QMAWASSI MLI Pet al.Elimination of grapevine virus A (GVA) by cryopreservation of invitro-grown shoot tips of Vitis vinifera L.[J].Plant Science,2003,165:321-327.

[40]MALIOGKA V ISKIADA F GELEFTHERIOU E Pet al.Elimination of a new ampelovirus (GLRaV-Pr) and grapevine rupestris stem pitting associated virus (GRSPaV) from two Vitis vinifera cultivars combining in vitro thermotherapy with shoot tip culture[J].Scientia Horticulturae2009,123280-282.

相似文献/References:

[1]张丽,石磊,甘晓燕,等.葡萄脱毒培养与病毒检测技术研究进展[J].北方园艺,2012,36(04):174.
 ZHANG Li .,SHI Lei .,GAN Xiao-yan.,et al.Advances on Techniques for Virus-free Culture and Virus Detection of Grape[J].Northern Horticulture,2012,36(09):174.
[2]何   军,李 晓 莺,曹 有 龙,等.分子生物学技术在枸杞研究上的应用[J].北方园艺,2007,31(07):0.[doi:10.11937/bfyy.200707023]
 HE Jun,LI Xiao - ying,et al.Applications in Studying Wolfberry by T echnique of Molecule Biology[J].Northern Horticulture,2007,31(09):0.[doi:10.11937/bfyy.200707023]
[3]王东,宋君,赵树海,等.银耳的分子生物学研究进展[J].北方园艺,2018,42(04):169.[doi:10.11937/bfyy.20172649]
 WANG Dong,SONG Jun,ZHAO Shuhai,et al.Research Progress on Molecular Biology of Tremella fuciformis[J].Northern Horticulture,2018,42(09):169.[doi:10.11937/bfyy.20172649]
[4]郭尚,徐莉娜,周林,等.Agaricus bisporus野生驯化新品种“沐野1号”的分子遗传鉴定与重金属富集规律研究[J].北方园艺,2019,43(08):137.[doi:10.11937/bfyy.20182456]
 GUO Shang,XU Lina,ZHOU Lin,et al.Molecular Genetic Identification and Heavy Metal Enrichment of a New Wild Domesticated Agaricus bisporus Variety ‘Muye No.1’[J].Northern Horticulture,2019,43(09):137.[doi:10.11937/bfyy.20182456]
[5]廖绪红,沙秀芬,廖雪梅,等.藁本属药用植物分子生物学研究进展[J].北方园艺,2021,(12):133.[doi:10.11937/bfyy.20203322]
 LIAO Xuhong,SHA Xiufen,LIAO Xuemei,et al.Research Progress on Molecular Biology of Ligusticum[J].Northern Horticulture,2021,(09):133.[doi:10.11937/bfyy.20203322]
[6]王帆帆,毛 婷,唐 涛,等.湖北贝母灰霉病病原菌鉴定及防治药剂筛选[J].北方园艺,2023,(17):102.[doi:10.11937/bfyy.20230276]
 WANG Fanfan,MAO Ting,TANG Tao,et al.Identification and Screening Fungicide of the Pathogen of Gray Mold on Fritillaria hupehensis Hsiao[J].Northern Horticulture,2023,(09):102.[doi:10.11937/bfyy.20230276]
[7]孙鹏波,王志军,格根图,等.紫花苜蓿耐盐碱胁迫与缓减措施的研究进展[J].北方园艺,2023,(21):131.[doi:10.11937/bfyy.20230885]
 SUN Pengbo,WANG Zhijun,GE Gentu,et al.Research Progress of Alfalfa Salt and Alkali Stress Tolerance and Mitigation Measures[J].Northern Horticulture,2023,(09):131.[doi:10.11937/bfyy.20230885]
[8]马银鹏,焦枥禾,包旭翔,等.一种黑木耳菌包中病原菌的分离鉴定及其生物学特性[J].北方园艺,2023,(24):126.[doi:10.11937/bfyy.20231361]
 MA Yinpeng,JIAO Lihe,BAO Xuxiang,et al.Isolation,Identification and Biological Characteristics of Pathogen in Auricularia heimuer Bag[J].Northern Horticulture,2023,(09):126.[doi:10.11937/bfyy.20231361]

备注/Memo

第一作者简介:王建辉(1978-),男,四川广汉人,博士,副研究员,现主要从事果树生物技术育种等研究工作。E-mail:kevin_wangjh@126.com.基金项目:四川省专利实施与促进专项资金资助项目(2016-SS-00011)。

更新日期/Last Update: 2017-05-17