菜豆荚斑驳病毒(Bean pod mottle virus,BPMV)是我国重要的检疫性有害生物,BPMV传入的风险随大豆进境数量增多而加大。本文针对菜豆荚斑驳病毒,以大豆种子提取液为材料,分别建立了TaqMan-MGB荧光定量IC-RTPCR和TaqMan-MGB荧光定量TC-RT-...菜豆荚斑驳病毒(Bean pod mottle virus,BPMV)是我国重要的检疫性有害生物,BPMV传入的风险随大豆进境数量增多而加大。本文针对菜豆荚斑驳病毒,以大豆种子提取液为材料,分别建立了TaqMan-MGB荧光定量IC-RTPCR和TaqMan-MGB荧光定量TC-RT-PCR快速检测方法。根据GenBank公布的BPMV外壳蛋白基因序列,选择其保守区域,设计1对特异性引物和1条TaqMan-MGB探针,测定了TaqMan-MGB荧光定量IC-RT-PCR和TaqMan-MGB荧光定量TC-RT-PCR方法的特异性和灵敏度,并将TaqMan-MGB荧光定量IC-RT-PCR、TaqMan-MGB荧光定量TC-RTPCR、IC-RT-PCR和TC-RT-PCR 4种检测方法的灵敏度进行比较。结果表明:所建立的两种检测方法特异性良好;TCRT-PCR的灵敏度为10-1倍病毒提取液原液;IC-RT-PCR和TaqMan-MGB荧光定量TC-RT-PCR灵敏度相当,为10-3倍病毒提取液原液;TaqMan-MGB荧光定量IC-RT-PCR灵敏度最高,为10-5倍病毒提取液原液,是IC-RT-PCR和TaqMan-MGB荧光定量TC-RT-PCR检测方法的102倍,是TC-RT-PCR检测方法的104倍;两种检测方法均能较好应用于实际大豆样品的检测。本文所建立的TaqMan-MGB荧光定量IC/TC-RT-PCR检测方法利用抗原特异性或试管非特异性捕捉病毒粒子,无需提取RNA,为进境大豆种子上BPMV的检测提供了稳定、快速、简便的技术依据,其较高的灵敏度和特异性具有较好的应用价值。展开更多
Two kinds of methods RT-PCR and IC-PCR were used to detect pathogen of virus disease of pumpkin and the sensitivity of the two methods was compared. The results showed that PRSV-W and CMV were detected in diseased sam...Two kinds of methods RT-PCR and IC-PCR were used to detect pathogen of virus disease of pumpkin and the sensitivity of the two methods was compared. The results showed that PRSV-W and CMV were detected in diseased samples gathered in Yunnan Province, while WMV and CMV were detected in diseased samples gathered in Heilongjiang Province. The sensitivity of RT-PCR is higher than that of IC-PCR, but the effect of IC-PCR in the specialization of bonding reaction and requisition for experiment material is better than that of RT-PCR.展开更多
Aphid-borne Zucchini yellow mosaic virus (ZYMV) is one of the most economically important viruses of cucurbitaceous plants. To survey and control this virus, it is necessary to develop an efficient detection techniq...Aphid-borne Zucchini yellow mosaic virus (ZYMV) is one of the most economically important viruses of cucurbitaceous plants. To survey and control this virus, it is necessary to develop an efficient detection technique. Using purified ZYMV virion and the conventional hybridoma technology, three hybridoma cell lines (16A11, 5A7 and 3B8) secreting monoclonal antibodies (MAbs) against ZYMV Zhejiang isolate were obtained. The working titers of the ascitic fluids secreted by the three hybridoma cell lines were up to 10^-7 by indirect enzyme-linked immunosorbent assay (ELISA). All MAbs were isotyped as IgG1, kappa light chain. Western blot analysis indicated that the MAb 3B8 could specifically react with the coat protein of ZYMV while MAbs 5A7 and 16A11 reacted strongly with a protein of approximately 51 kDa from the ZYMV-infected leaf tissues. According to this molecular weight, we consider this reactive protein As likely to be the HC-Pro protein. Using these three MAbs, we have now developed five detection assays, i.e., antigen-coated-plate ELISA (ACP-ELISA), dot-ELISA, tissue blot-ELISA, double-antibody sandwich ELISA (DAS-ELISA), and immunocapture-RT-PCR (IC-RT-PCR), for the sensitive, specific, and easy detection of ZYMV. The sensitivity test revealed that ZYMV could be readily detected respectively by ACP-ELISA, dot-ELISA, DAS-ELISA and IC-RT-PCR in 1:163840, 1:2560, 1:327680 and 1:1 310720 (w/v, g mL-1) diluted crude extracts from the ZYMV-infected plants. We demonstrated in this study that the dot-ELISA could also be used to detect ZYMV in individual viruliferous aphids. A total of 275 cucurbitaceous plant samples collected from the Zhejiang, Jiangsu, Shandong and Hainan provinces, China, were screened for the presence of ZYMV with the described assays. Our results showed that 163 of the 275 samples (59%) were infected with ZYMV. This finding indicates that ZYMV As now widely present in cucurbitaceous crops in China. RT-PCR followed by DNA sequencing and sequence analyses confirmed the accuracy of the five assays. We consider that these detection assays can significantly benefit the control of ZYMV in China.展开更多
【研究目的】黄瓜绿斑驳花叶病毒(Cucumber green mottle mosaic virus,CGMMV)的快速鉴定检测是控制该潜在危险性有害生物蔓延的有效途径。【方法】通过汁液摩擦接种、透射电镜观察、双抗夹心酶联免疫吸附测定法(DAS-ELISA)和RT-PCR方...【研究目的】黄瓜绿斑驳花叶病毒(Cucumber green mottle mosaic virus,CGMMV)的快速鉴定检测是控制该潜在危险性有害生物蔓延的有效途径。【方法】通过汁液摩擦接种、透射电镜观察、双抗夹心酶联免疫吸附测定法(DAS-ELISA)和RT-PCR方法对该病毒进行鉴定;同时对RT-PCR反应体系及扩增程序进行优化,建立CGMMV免疫捕获RT-PCR(IC-RT-PCR)检测方法。【结果】血清学、生物学、电镜观察和分子生物学方法证明供试样本为黄瓜绿斑驳花叶病毒引致。IC-RT-PCR方法可以简化RNA的提取,降低对试验材料要求。【结论】IC-RT-PCR的建立为CGMMV的检测提供了操作更为简便、特异性更强的快速、准确的检测方法。展开更多
文摘菜豆荚斑驳病毒(Bean pod mottle virus,BPMV)是我国重要的检疫性有害生物,BPMV传入的风险随大豆进境数量增多而加大。本文针对菜豆荚斑驳病毒,以大豆种子提取液为材料,分别建立了TaqMan-MGB荧光定量IC-RTPCR和TaqMan-MGB荧光定量TC-RT-PCR快速检测方法。根据GenBank公布的BPMV外壳蛋白基因序列,选择其保守区域,设计1对特异性引物和1条TaqMan-MGB探针,测定了TaqMan-MGB荧光定量IC-RT-PCR和TaqMan-MGB荧光定量TC-RT-PCR方法的特异性和灵敏度,并将TaqMan-MGB荧光定量IC-RT-PCR、TaqMan-MGB荧光定量TC-RTPCR、IC-RT-PCR和TC-RT-PCR 4种检测方法的灵敏度进行比较。结果表明:所建立的两种检测方法特异性良好;TCRT-PCR的灵敏度为10-1倍病毒提取液原液;IC-RT-PCR和TaqMan-MGB荧光定量TC-RT-PCR灵敏度相当,为10-3倍病毒提取液原液;TaqMan-MGB荧光定量IC-RT-PCR灵敏度最高,为10-5倍病毒提取液原液,是IC-RT-PCR和TaqMan-MGB荧光定量TC-RT-PCR检测方法的102倍,是TC-RT-PCR检测方法的104倍;两种检测方法均能较好应用于实际大豆样品的检测。本文所建立的TaqMan-MGB荧光定量IC/TC-RT-PCR检测方法利用抗原特异性或试管非特异性捕捉病毒粒子,无需提取RNA,为进境大豆种子上BPMV的检测提供了稳定、快速、简便的技术依据,其较高的灵敏度和特异性具有较好的应用价值。
基金The Open Fundation Item of Agricultural Biotechnological Key Laboratory of Yunnan Province (2001B- 3)
文摘Two kinds of methods RT-PCR and IC-PCR were used to detect pathogen of virus disease of pumpkin and the sensitivity of the two methods was compared. The results showed that PRSV-W and CMV were detected in diseased samples gathered in Yunnan Province, while WMV and CMV were detected in diseased samples gathered in Heilongjiang Province. The sensitivity of RT-PCR is higher than that of IC-PCR, but the effect of IC-PCR in the specialization of bonding reaction and requisition for experiment material is better than that of RT-PCR.
基金supported by the National Natural Science Foundation of China(31272015)the National Basic Research Program(973)of China(2014CB138400)the Special Fund for Agro-scientific Research in the Public Interest,China(201303021,201303028)
文摘Aphid-borne Zucchini yellow mosaic virus (ZYMV) is one of the most economically important viruses of cucurbitaceous plants. To survey and control this virus, it is necessary to develop an efficient detection technique. Using purified ZYMV virion and the conventional hybridoma technology, three hybridoma cell lines (16A11, 5A7 and 3B8) secreting monoclonal antibodies (MAbs) against ZYMV Zhejiang isolate were obtained. The working titers of the ascitic fluids secreted by the three hybridoma cell lines were up to 10^-7 by indirect enzyme-linked immunosorbent assay (ELISA). All MAbs were isotyped as IgG1, kappa light chain. Western blot analysis indicated that the MAb 3B8 could specifically react with the coat protein of ZYMV while MAbs 5A7 and 16A11 reacted strongly with a protein of approximately 51 kDa from the ZYMV-infected leaf tissues. According to this molecular weight, we consider this reactive protein As likely to be the HC-Pro protein. Using these three MAbs, we have now developed five detection assays, i.e., antigen-coated-plate ELISA (ACP-ELISA), dot-ELISA, tissue blot-ELISA, double-antibody sandwich ELISA (DAS-ELISA), and immunocapture-RT-PCR (IC-RT-PCR), for the sensitive, specific, and easy detection of ZYMV. The sensitivity test revealed that ZYMV could be readily detected respectively by ACP-ELISA, dot-ELISA, DAS-ELISA and IC-RT-PCR in 1:163840, 1:2560, 1:327680 and 1:1 310720 (w/v, g mL-1) diluted crude extracts from the ZYMV-infected plants. We demonstrated in this study that the dot-ELISA could also be used to detect ZYMV in individual viruliferous aphids. A total of 275 cucurbitaceous plant samples collected from the Zhejiang, Jiangsu, Shandong and Hainan provinces, China, were screened for the presence of ZYMV with the described assays. Our results showed that 163 of the 275 samples (59%) were infected with ZYMV. This finding indicates that ZYMV As now widely present in cucurbitaceous crops in China. RT-PCR followed by DNA sequencing and sequence analyses confirmed the accuracy of the five assays. We consider that these detection assays can significantly benefit the control of ZYMV in China.
文摘【研究目的】黄瓜绿斑驳花叶病毒(Cucumber green mottle mosaic virus,CGMMV)的快速鉴定检测是控制该潜在危险性有害生物蔓延的有效途径。【方法】通过汁液摩擦接种、透射电镜观察、双抗夹心酶联免疫吸附测定法(DAS-ELISA)和RT-PCR方法对该病毒进行鉴定;同时对RT-PCR反应体系及扩增程序进行优化,建立CGMMV免疫捕获RT-PCR(IC-RT-PCR)检测方法。【结果】血清学、生物学、电镜观察和分子生物学方法证明供试样本为黄瓜绿斑驳花叶病毒引致。IC-RT-PCR方法可以简化RNA的提取,降低对试验材料要求。【结论】IC-RT-PCR的建立为CGMMV的检测提供了操作更为简便、特异性更强的快速、准确的检测方法。