Pooma W, Gillette W K, Jeffrey J L, Petty I T
Department of Microbiology, North Carolina State University, Raleigh, 27695-7615, USA.
Virology. 1996 Apr 1;218(1):264-8. doi: 10.1006/viro.1996.0189.
Geminiviruses have unique, twinned icosahedral particles which encapsidate circular single-stranded DNA. Their genomes are composed of either one or two DNA segments. Monopartite geminiviruses absolutely require a functional coat protein (CP) for infectivity, whereas bipartite geminivirus CP null mutants can infect plants systemically. However, we show here that a CP mutant of the bipartite tomato golden mosaic virus (TGMV), which can infect Nicotiana benthamiana systemically, is confined to the inoculated leaves of Nicotiana tabacum or Datura stramonium. We also show that a CP mutant of the related bean golden mosaic virus (BGMV), which can infect beans systemically, is confined to the inoculated leaves of N. benthamiana. In each case, the extent of viral DNA accumulation in inoculated leaves was unaffected by the absence of CP, which suggests that CP is required specifically for systemic movement. The dispensability of CP is correlated with the degree of virus-host adaptation. TGMV is well adapted to N. benthamiana and does not require CP to infect this host systemically, whereas BGMV is poorly adapted to N. benthamiana and requires CP. Analysis of TGMV-BGMV hybrid viruses revealed that the viral genetic background can also affect the dispensability of CP for systemic movement in N. benthamiana. Thus, bipartite geminivirus movement in planta can be resolved genetically into three components: (i) local, cell-to-cell movement, which does not require CP; (ii) CP-dependent systemic movement, which occurs in all hosts tested; and (iii) CP-independent systemic movement, which occurs in hosts to which a given virus is well adapted.
双生病毒具有独特的孪生二十面体颗粒,可包裹环状单链DNA。它们的基因组由一个或两个DNA片段组成。单分体双生病毒的感染性绝对需要功能性外壳蛋白(CP),而双分体双生病毒CP缺失突变体可以系统感染植物。然而,我们在此表明,双分体番茄金色花叶病毒(TGMV)的一个CP突变体,虽然能系统感染本氏烟草,但局限于烟草或曼陀罗的接种叶片。我们还表明,相关的菜豆金色花叶病毒(BGMV)的一个CP突变体,虽然能系统感染菜豆,但局限于本氏烟草的接种叶片。在每种情况下,接种叶片中病毒DNA的积累程度不受CP缺失的影响,这表明CP是系统移动所特需的。CP的可缺失性与病毒-宿主适应程度相关。TGMV很好地适应了本氏烟草,系统感染该宿主不需要CP,而BGMV对本氏烟草适应较差,需要CP。对TGMV-BGMV杂交病毒的分析表明,病毒遗传背景也会影响CP在本氏烟草中系统移动的可缺失性。因此,双分体双生病毒在植物中的移动在遗传上可分为三个部分:(i)局部的细胞间移动,不需要CP;(ii)依赖CP的系统移动(在所有测试宿主中均发生);(iii)不依赖CP的系统移动(在给定病毒适应良好的宿主中发生)。