Sinisterra Xiomara H, McKenzie C L, Hunter Wayne B, Powell Charles A, Shatters Robert G
United States Department of Agriculture, Agricultural Research Service, US Horticultural Research Laboratory, 2001 South Rock Road, Fort Pierce, FL 34945, USA.
Indian River Research and Education Center, IFAS, University of Florida, Fort Pierce, FL 34945, USA.
J Gen Virol. 2005 May;86(Pt 5):1525-1532. doi: 10.1099/vir.0.80665-0.
Plant-pathogenic begomoviruses have a complex association with their whitefly vector and aspects concerning virus genetic activity (genome replication and gene transcription) within the insect remain highly controversial. Virus transcript abundance was assessed by quantifying selected gene transcripts of Tomato mottle virus (ToMoV, a New World bipartite begomovirus) and Tomato yellow leaf curl virus (TYLCV, an Old World monopartite begomovirus) in whiteflies (Bemisia tabaci biotype B) after feeding on virus-infected tomato plants and after subsequent transfer to cotton, a plant that is immune to the selected begomoviruses. Real-time RT-PCR was performed using specific primers for three ToMoV genes (AV1, BC1 and BV1) and three TYLCV genes (V1, V2 and C3). The ToMoV gene transcripts rapidly became undetectable in whiteflies following transfer from tomato to cotton, probably because degradation was not accompanied by new synthesis. On the other hand, TYLCV transcripts increased after transfer of whiteflies to cotton, indicating active TYLCV transcription. Interestingly, the difference observed in ToMoV and TYLCV transcripts in the vector parallel observations on the different biological effects of these viruses on whiteflies, i.e. TYLCV, but not ToMoV, reduces whitefly fitness.
植物致病双生病毒与其粉虱传播介体之间存在复杂的关联,而关于病毒在昆虫体内的遗传活性(基因组复制和基因转录)方面仍存在很大争议。通过定量分析烟粉虱生物型B在取食感染病毒的番茄植株后以及随后转移至对所选双生病毒免疫的棉花植株上后,番茄斑驳病毒(ToMoV,一种新大陆二分体双生病毒)和番茄黄化曲叶病毒(TYLCV,一种旧大陆单分体双生病毒)的特定基因转录本,来评估病毒转录本丰度。使用针对三个ToMoV基因(AV1、BC1和BV1)和三个TYLCV基因(V1、V2和C3)的特异性引物进行实时RT-PCR。从番茄转移到棉花后,ToMoV基因转录本在粉虱中很快变得无法检测到,这可能是因为降解过程没有伴随新的合成。另一方面,粉虱转移到棉花后,TYLCV转录本增加,表明TYLCV存在活跃转录。有趣的是,在载体中观察到的ToMoV和TYLCV转录本差异与这些病毒对粉虱的不同生物学效应的观察结果一致,即TYLCV而非ToMoV会降低粉虱的适合度。