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通过真空渗透感染性粉虱传双生病毒对甘薯进行农杆菌介导的感染

Agroinfection of sweet potato by vacuum infiltration of an infectious sweepovirus.

作者信息

Bi Huiping, Zhang Peng

机构信息

National Key Laboratory of Plant Molecular Genetics, Institute of Plant Physiology and Ecology, Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences, Shanghai, 200032, China.

出版信息

Virol Sin. 2014 Jun;29(3):148-54. doi: 10.1007/s12250-014-3430-1. Epub 2014 May 14.

Abstract

Sweepovirus is an important monopartite begomovirus that infects plants of the genus Ipomoea worldwide. Development of artificial infection methods for sweepovirus using agroinoculation is a highly efficient means of studying infectivity in sweet potato. Unlike other begomoviruses, it has proven difficult to infect sweet potato plants with sweepoviruses using infectious clones. A novel sweepovirus, called Sweet potato leaf curl virus-Jiangsu (SPLCV-JS), was recently identified in China. In addition, the infectivity of the SPLCV-JS clone has been demonstrated in Nicotiana benthamiana. Here we describe the agroinfection of the sweet potato cultivar Xushu 22 with the SPLCV-JS infectious clone using vacuum infiltration. Yellowing symptoms were observed in newly emerged leaves. Molecular analysis confirmed successful inoculation by the detection of viral DNA. A synergistic effect of SPLCV-JS and the heterologous betasatellite DNA-β of Tomato yellow leaf curl China virus isolate Y10 (TYLCCNV-Y10) on enhanced symptom severity and viral DNA accumulation was confirmed. The development of a routine agroinoculation system in sweet potato with SPLCV-JS using vacuum infiltration should facilitate the molecular study of sweepovirus in this host and permit the evaluation of virus resistance of sweet potato plants in breeding programs.

摘要

甘薯病毒是一种重要的单分体双生病毒,可感染全球范围内的甘薯属植物。利用农杆菌接种法开发甘薯病毒的人工感染方法是研究甘薯感染性的高效手段。与其他双生病毒不同,使用感染性克隆来感染甘薯植株已证明具有难度。一种名为甘薯卷叶病毒 - 江苏株(SPLCV - JS)的新型甘薯病毒最近在中国被鉴定出来。此外,已在本氏烟草中证明了SPLCV - JS克隆的感染性。在此,我们描述了使用真空渗透法用SPLCV - JS感染性克隆对甘薯品种徐薯22进行农杆菌介导感染的过程。在新长出的叶片中观察到黄化症状。分子分析通过检测病毒DNA证实了接种成功。证实了SPLCV - JS与中国番茄黄化曲叶病毒分离株Y10(TYLCCNV - Y10)的异源β卫星DNA - β对症状严重程度增强和病毒DNA积累具有协同作用。利用真空渗透法建立用SPLCV - JS对甘薯进行常规农杆菌接种系统,应有助于对该寄主中甘薯病毒进行分子研究,并允许在育种计划中评估甘薯植株的病毒抗性。

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