Vasudevan Ayyappan, Oh Tae-Kyun, Park Jae Sung, Lakshmi Sumitra Vijayachandran, Choi Bong Kum, Kim Sue Hoon, Lee Hyun Ju, Ji Jing, Kim Joo-Hwan, Ganapathi Andy, Kim Sei Chang, Choi Chang Won
Department of Biology and Medicinal Science, Pai Chai University, Daejeon, South Korea.
Plant Cell Rep. 2008 Nov;27(11):1731-40. doi: 10.1007/s00299-008-0595-9. Epub 2008 Aug 14.
Two transgenic lines, of Nicotiana benthamiana expressing Turnip crinkle virus (TCV)-coat protein (CP) gene with contrasting phenotype, the highest (#3) and the lowest (#18) CP expressers, were selected and challenged with the homologous TCV. The former, the highest expresser, showed nearly five times more CP expression than the latter. Progenies of #3 and #18 lines showed 30 and 100% infection rates, respectively. The infected progenies of #3 line showed mild and delayed symptom with TCV. This is a coat protein-mediated resistance (CP-MR), and its resistance level is directly proportional to CP transgene expression. However, CP-MR of the transgenic plants was specific only for TCV but not for heterologous viruses. Newly growing leaves of those infected progenies of #3 line did not show any visible symptoms at 4-week post-inoculation (wpi) with TCV, suggesting a reversal from infection. This was confirmed by RT-PCR analysis with the disappearance of the target at 4 wpi. This is a case of RNA-mediated resistance, and a threshold level of transgene expression may be needed to achieve the silent state. To confirm the RNA silencing, we infiltrated Agrobacterium carrying TCV-CP into leaves of progenies of #3 and performed RT-PCR analysis. The results indicate that TCV-CP's suppressor activity against RNA silencing itself can be silenced by the homologous expression of TCV-CP in the transgenic plants. The transgenic plants containing TCV-CP seem to be a model system to study viral protection mediated by a combination of protein and RNA silencing.
挑选出两个表达芜菁皱缩病毒(TCV)外壳蛋白(CP)基因且表型不同的本氏烟草转基因株系,即CP表达量最高的(#3)和最低的(#18),并用同源TCV对其进行挑战。前者,即最高表达量株系,其CP表达量几乎是后者的五倍。#3和#18株系的子代感染率分别为30%和100%。#3株系受感染的子代表现出温和且延迟的TCV症状。这是一种外壳蛋白介导的抗性(CP-MR),其抗性水平与CP转基因表达量成正比。然而,转基因植物的CP-MR仅对TCV具有特异性,对异源病毒则无特异性。#3株系受感染子代新长出的叶片在接种TCV后4周(wpi)未表现出任何可见症状,表明出现了从感染状态的逆转。通过RT-PCR分析在4 wpi时靶标消失证实了这一点。这是一个RNA介导的抗性案例,可能需要转基因表达达到阈值水平才能实现沉默状态。为了证实RNA沉默,我们将携带TCV-CP的农杆菌渗入#3子代的叶片中并进行RT-PCR分析。结果表明,TCV-CP对RNA沉默本身的抑制活性可被转基因植物中TCV-CP的同源表达所沉默。含有TCV-CP的转基因植物似乎是一个研究由蛋白质和RNA沉默组合介导的病毒保护作用的模型系统。