Iqbal Zafar, Shafiq Muhammad, Ali Irfan, Mansoor Shahid, Briddon Rob W
Agricultural Biotechnology Division, National Institute for Biotechnology and Genetic Engineering, Faisalabad, Pakistan.
Pakistan Institute of Engineering and Applied Sciences, Nilore, Pakistan.
Front Plant Sci. 2017 Dec 22;8:2208. doi: 10.3389/fpls.2017.02208. eCollection 2017.
Viruses of the genus (family ) are economically important phytopathogens that are transmitted plant-to-plant by the whitefly . Most Old World (OW) begomoviruses are monopartite and many of these interact with symptoms and host range determining betasatellites. (ToLCNDV) is one of only a few OW begomoviruses with a bipartite genome (components known as DNA A and DNA B). Four genes [AV2, coat protein (CP), transcriptional-activator protein (TrAP), and AC4] of ToLCNDV were mutated and the effects of the mutations on infectivity, symptoms and the ability to maintain Cotton leaf curl Multan betasatellite (CLCuMuB) were investigated. Infectivity and virus/betasatellite DNA titer were assessed by Southern blot hybridization, PCR, and quantitative PCR. The results showed TrAP of ToLCNDV to be essential for maintenance of CLCuMuB and AV2 to be important only in the presence of the DNA B. AC4 was found to be important for the maintenance of CLCuMuB in the presence of, but indispensable in the absence of, the DNA B. Rather than being required for maintenance, the CP was shown to possibly interfere with maintenance of the betasatellite. The findings show that the interaction between a bipartite begomovirus and a betasatellite is more complex than just trans-replication. Clearly, multiple levels of interactions are present and such associations can cause additional significant losses to crops although the interaction may not be stable.
(科)属病毒是重要的经济植物病原体,由烟粉虱在植物间传播。大多数旧世界(OW)双生病毒是单分体的,其中许多与决定症状和寄主范围的β卫星相互作用。番茄褪绿曲叶病毒(ToLCNDV)是少数具有双分体基因组(组分称为DNA A和DNA B)的旧世界双生病毒之一。对ToLCNDV的四个基因[AV2、外壳蛋白(CP)、转录激活蛋白(TrAP)和AC4]进行了突变,并研究了这些突变对感染性、症状以及维持棉花曲叶木尔坦β卫星(CLCuMuB)能力的影响。通过Southern杂交、PCR和定量PCR评估感染性以及病毒/卫星DNA滴度。结果表明,ToLCNDV的TrAP对CLCuMuB的维持至关重要,而AV2仅在存在DNA B时才重要。发现AC4在存在DNA B时对CLCuMuB的维持很重要,但在不存在DNA B时不可或缺。CP并非维持所必需,而是可能干扰β卫星的维持。这些发现表明,双分体双生病毒与β卫星之间的相互作用比单纯的反式复制更为复杂。显然,存在多个相互作用层面,尽管这种相互作用可能不稳定,但这种关联会给作物造成额外的重大损失。