烟草黄瓜花叶病,CMV
1)CMV烟草黄瓜花叶病
1.Application climatic factors on forecasting of tobacco CMV disease;气象因子在烟草黄瓜花叶病测报中的应用
英文短句/例句

1.Technology Research of the Application of Propineb and Imidacloprid Against CMV and TMV of Pepper and Tobacco;应用丙森锌、吡虫啉防治辣椒、烟草黄瓜花叶病、烟草花叶病技术研究
2.Genetic Analysis and Molecular Marking of Resistance of Tobacco Cucumber Mosaic Virus烟草黄瓜花叶病毒病抗性遗传分析及其分子标记
3.Study on Control Cucumber Mosaic Virus of Tobacco Through dsRNA;利用dsRNA诱导烟草抗黄瓜花叶病毒病的研究
4.Rapid Construction of RNA Silencing Virus Resistance Vector Containing TMV and CMV Virus-derived Genes烟草花叶病毒和黄瓜花叶病毒双价RNA沉默抗病载体的快速构建
5.Inductive effect of methyl jasmonate on tobacco resistance to cucumber mosaic virus茉莉酸甲酯对烟草抗黄瓜花叶病毒的诱导效应
6.Primary Studies on Symptom Recovery of Tobacco Plants Infected by Cucumber Mosaic Virus Strain M;黄瓜花叶病毒M株系引致烟草症状恢复的初步研究
7.The Effect of Temperature and Cucumber Mosaic Virus on Population System of Myzus Persicae (Sulzer);温度和黄瓜花叶病毒对烟蚜种群系统的影响
8.The inhibition effect of flavonoids extracted from Bidens pliosa L. on TMV三叶鬼针草中黄酮甙对烟草花叶病毒的抑制作用
9.Induced Resistance of Tobacco to Tobacco Mosaic Virus by Chito-Oligosaccharides;壳寡糖诱导烟草抗烟草花叶病毒研究
10.Preliminary Study on Seed-borne Transmission of Tobacco Mosaic Virus in Tobacco;烟草种传烟草花叶病毒(TMV)的初步研究
11.Tobacco Mosaic Virus (TMV) Coat Protein Induce Tobacco Against Plant Virus烟草花叶病毒外壳蛋白诱导烟草抗病毒作用
12.Study on Molecular Mechanisms of Interaction between Tomato and Cucumber Mosaic Virus;番茄—黄瓜花叶病毒互作分子机制研究
13.Quantification Analysis of Cucumber Mosaic Virus Genomic RNAs;黄瓜花叶病毒基因组RNA的定量分析
14.The Recent Research about the Satellite RNA of Cucumber Mosaic Virus;黄瓜花叶病毒卫星RNA的研究进展
15.The ISSR Markers Linked to CMV Resistant Gene in Hot Pepper辣椒抗黄瓜花叶病毒(CMV)基因的ISSR标记
16.Detection of CMV on Hot Pepper by RT-PCR应用RT-PCR检测辣椒上的黄瓜花叶病毒
17.Quarantine Pathogens--Cucumber Green Mottle Mosaic Virus检疫性有害生物——黄瓜绿斑驳花叶病毒
18.Study on Molecular Markers of Resistant Gene to WMV in Cucumber (Cucumis Sativus L.);黄瓜抗西瓜花叶病毒(WMV)基因的分子标记研究
相关短句/例句

cucumber mosaic黄瓜花叶病
3)tobacco mosaic disease烟草花叶病
1.In order to get several effective pesticides for controlling tobacco mosaic diseases,the field experiments on controlling tobacco mosaic diseases were done to validate the control efficacy of four pesticides,which were sold very well.为寻找能有效防治烟草花叶病的药剂,该试验选用了4种药剂,在烟草上进行田间小区实验,结果表明,2%宁南霉素和99植保对烟草花叶病的控制效果较好,防治效果达83。
2.80% respectively),but also great effects on control of tobacco mosaic diseases caused by TMV and CMV in greenhouse(74.为探寻防治烟草花叶病的理想药剂 ,经大量试验筛选 ,利用商陆、甘草、连翘等几种植物抽提物配制而成的复配剂 MH1 1 - 4,对由 Tobacco mosaic virus(TMV)和 Cucumber masaic virus(CMV)引起的烟草花叶病进行了室内和田间小区防治试验 。
4)TMV烟草花叶病
1.Investigation of TMV Integrated ManagementH;烟草花叶病综合防治研究
2.The induced resistance of chito-oligosaccharides (DP=3-10) to Tobacco mosaic virus (TMV) was studied.本文以聚合度(DP)为3-10的壳寡糖为材料,研究了对烟草花叶病毒(Tobacco mosaic virus,TMV)的诱导抗病性。
3.6% Chitosan Oligomers SL plays an effective role for the inducible inhibition and defense of TMV,500 times diluted solution is the optimal working solution.6%甲壳胺低聚糖对烟草花叶病毒有诱导抑制和治疗作用,其中500倍稀释液效果高于1000倍稀释液。
5)tobacco mosaic烟草花叶病
1.Effect of 24% "99Zhibao No.1" on controlling tobacco mosaic;24%99植宝1号防治烟草花叶病药效试验
2.Control experiment of zhizhuangsu on tobacco mosaic is conducted.用多功能植物杀菌防病促长剂植壮素进行防治烟草花叶病的试验,结果表明:植壮素对烟草花叶病有较好的防治效果,防效率为19。
3.Seven chemicals were used to control tobacco black shank and tobacco mosaic, and their effects were evaluated; the best one was selected and its effect to Phytophthora parasitica Var nicotianae was studied.本文研究和评价了水杨酸、二氢茉莉酸丙酯、脱落酸、乙烯利、稻瘟灵、苯丙噻二唑、噻菌灵7种药剂对烟草黑胫病和烟草花叶病的效果,从中选择出了对烟草黑胫病效果较好的药剂-二氢茉莉酸丙酯(PDJ),并测定了PDJ对黑胫病菌的直接作用;在上述试验的基础上,进行了系统抗性试验和不同诱导时间后的接种试验;研究了不同药剂联合作用对烟草黑胫病的控制效果,明确了不同药剂之间的联合作用性质;对筛选出的PDJ诱导烟草抗黑胫病的机理进行了初步探讨。
6)cucumber mosaic virus黄瓜花叶病毒
1.Complete Sequence Analysis of Cucumber mosaic virus CTL Isolate;侵染白菜的黄瓜花叶病毒分离物基因组的全序列分析
2.Cloning and sequencing on cp gene of Cucumber mosaic virus subgroupⅡ isolated from Lily(Lilium cv.Oriental hybrids);侵染百合的黄瓜花叶病毒亚组Ⅱ分离物cp基因克隆和序列分析
3.Identification of Cucumber mosaic virus isolated from Echinacea purpurea;侵染紫松果菊的黄瓜花叶病毒分离物鉴定
延伸阅读

烟草花叶病毒分子式:CAS号:性质:是人类首次提纯而得到病毒结晶,它是一种机械性传播的单链:RNA病毒,也是寄生范围广泛的植物病原病毒。呈管状病毒粒子(分子量400 000),约为15×300nm,沉降系数约200。由RNA(占总量5%)和蛋白质(占总量95%)组成,RNA由约6300个核苷酸组成螺旋状结构(直径4nm,螺距约2.5nm),大约2100个完全相同的蛋白质衣壳亚基与RNA内外连接形成螺旋结构。蛋白质亚基的装配从RNA的5端开始。每个蛋白亚基(分子量17 500)由一条多肽链组成,其中天门冬氨酸、谷氨酸、丝氨酸和苏氨酸残基比例较大。由TMV分离的组分(RNA和蛋白质)体外仍然可以重新构组。用硫酸铵沉淀感染TMV的植物组织,然后进行差速离心可制备纯化的TMV。在干叶组织中,TMV的感染力可维持1年以上。此病毒的热钝化温度约为95℃,超声波、pH值低于3或高于8和化学试剂(如甲醛、碘或尿素溶液)也可使其钝化。产生局部病斑的寄生有心叶烟和四季豆等。