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PVY-resistant transgenic potato plants expressing an anti-NIa protein scFv antibody

机译:表达抗NIa蛋白scFv抗体的抗PVY的转基因马铃薯植株

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A synthetic gene encoding a single chain Fv fragment of an antibody directed against the nuclear inclusion a (NIa) protein of potato virus Y (PVY) was used to transform two commerical potato cultivars (Claustar and BF15). The NIa protease forms the nuclear inclusion body A and acts as the major protease in the cleavage of the viral polyprotein into functional proteins. Immunoblot analysis showed that most of the resulting transgenic plants accumulate high levels of the transgenic protein. Furthermore, a majority of the selected transgenic lines showed an efficient and complete protection against the challenge virus after mechanical inoculation with PVYo strain. Two transgenic lines showed an incomplete resistance with delayed appearance of symptoms accompanied by low virus titers, whereas one line developed symptoms during the first days after inoculation but recovered rapidly, leading to a low virus accumulation rate. These results confirm that expression of scFv antibody is able to inhibit a crucial step in the virus multiplication, such as polyprotein cleavage is a powerful strategy for engineered virus resistance. It can lead to a complete resistance that was not obtained previously by expression of scFv directed against the viral coat protein.
机译:编码针对马铃薯病毒Y(PVY)的核内含a(NIa)蛋白的抗体的单链Fv片段的合成基因用于转化两个商品化的马铃薯栽培品种(Claustar和BF15)。 NIa蛋白酶形成核包涵体A,并在将病毒多蛋白切割成功能蛋白中起主要蛋白酶的作用。免疫印迹分析表明,大多数产生的转基因植物积累了高水平的转基因蛋白。此外,大多数选择的转基因品系在机械接种PVYo 菌株后显示出对挑战病毒的有效和完全保护。两个转基因品系显示出不完全的抗药性,伴随着病毒滴度低而出现症状延迟,而一个品系在接种后的头几天出现症状,但很快恢复,导致病毒积累率低。这些结果证实,scFv抗体的表达能够抑制病毒繁殖中的关键步骤,例如多蛋白切割是工程病毒抗性的有力策略。它可以导致完全抗性,这是以前针对病毒外壳蛋白的scFv表达无法获得的。

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