Wang Jinbo, Turina Massimo, Stewart Lucy R, Lindbo John A, Falk Bryce W
Department of Plant Pathology, University of California, Davis, One Shields Avenue, Davis, CA 95616, USA.
Virology. 2009 Sep 15;392(1):131-6. doi: 10.1016/j.virol.2009.06.034. Epub 2009 Jul 25.
Lettuce infectious yellows virus (LIYV) is phloem-limited, non-mechanically transmissible, and is transmitted to plants only by Bemisia tabaci. Here, we developed agroinoculation to deliver LIYV to plants thereby obviating the need for B. tabaci. Agroinfiltration of RNA 1 containing a green fluorescent protein gene into Nicotiana benthamiana leaves resulted in subliminal infections, as judged by green fluorescence. Agroinfiltration of LIYV wild-type RNA 1 and 2 constructs resulted in systemic infections in N. benthamiana plants and typical LIYV symptoms. In addition, partially purified LIYV virions from agroinoculated N. benthamiana plants were successfully acquired via membrane-feeding and transmitted to lettuce plants by B. tabaci. Agroinoculation coupled with targeted mutagenesis technologies will greatly enhance LIYV reverse genetics studies to characterize LIYV gene functions in planta for processes such as virus replication, recombination, trafficking, symptom elicitation and virus-vector interactions.
莴苣传染性黄化病毒(LIYV)局限于韧皮部,不能通过机械传播,仅由烟粉虱传播给植物。在此,我们开发了农杆菌接种法将LIYV传递给植物,从而无需烟粉虱。将含有绿色荧光蛋白基因的RNA 1农杆菌渗入本氏烟草叶片,根据绿色荧光判断,导致了隐性感染。将LIYV野生型RNA 1和2构建体农杆菌渗入,导致本氏烟草植株发生系统感染并出现典型的LIYV症状。此外,通过膜饲法成功获取了来自农杆菌接种的本氏烟草植株的部分纯化的LIYV病毒粒子,并由烟粉虱传播给莴苣植株。农杆菌接种与靶向诱变技术相结合,将极大地加强LIYV反向遗传学研究,以在植物中表征LIYV基因在病毒复制、重组、运输、症状引发和病毒-载体相互作用等过程中的功能。