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Engineered resistance in potato against potato leafroll virus, potato virus A and potato virus y

机译:马铃薯对马铃薯卷叶病毒,马铃薯病毒A和马铃薯y病毒的工程抗性

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Transgenic potato plants of Solanum tuberosum cultivar Vales Sovereign were generated that expressed fused, tandem, 200 bp segments derived from the capsid protein coding sequences of potato virus Y (PVY strain O) and potato leafroll virus (PLRV), as well as the cylindrical inclusion body coding sequences of potato virus A (PVA), as inverted repeat double-stranded RNAs, separated by an intron. The orientation of the expressed double-stranded RNAs was either sense-intron-antisense or antisense-intron-sense RNAs, and the double-stranded RNAs were processed into small RNAs. Four lines of such transgenic potato plants were assessed for resistance to infection by PVY-O, PLRV, or PVA, all transmitted by a natural vector, the green-peach aphid, Myzus persicae. Resistance was assessed by the absence of detectable virus accumulation in the foliage. All four transgenic potato lines tested showed 100 % resistance to infection by either PVY-O or PVA, but variable resistance to infection by PLRV, ranging from 72 to 96 % in different lines. This was regardless of the orientation of the viral inserts in the construct used to generate the transgenic plants and the gene copy number of the transgene. This demonstrates the potential for using tandem, fused viral segments and the inverted-repeat expression system to achieve multiple virus resistance to viruses transmitted by aphids in potato.
机译:产生了马铃薯Vales Sovereign的转基因马铃薯植株,该植株表达了融合的,串联的200 bp片段,这些片段来自马铃薯病毒Y(PVY株O)和马铃薯卷叶病毒(PLRV)的衣壳蛋白编码序列,并呈圆柱形马铃薯病毒A(PVA)的身体编码序列,如反向重复双链RNA,由内含子分隔。表达的双链RNA的方向是有义-内含子-反义RNA或反义-内含子-正义RNA,并且将双链RNA加工成小RNA。评估了四株这样的转基因马铃薯植物对PVY-O,PLRV或PVA的感染的抗性,这些都通过天然载体绿桃蚜Myzus persicae传播。通过在叶子中没有可检测到的病毒积累来评估抗药性。测试的所有四个转基因马铃薯品系均显示出100%对PVY-O或PVA感染的抗性,但对PLRV感染的抗性却不同,不同品系的抗性为72%至96%。这与用于产生转基因植物的构建体中病毒插入物的方向和转基因的基因拷贝数无关。这证明了使用串联,融合的病毒片段和反向重复表达系统来实现对马铃薯中由蚜虫传播的病毒的多种病毒抗性的潜力。

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