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A Single Copy of Virus-Derived, Transgene-Encoding Hairpin RNA Confers BYDV Immunity

机译:一封病毒衍生的转基因编码发夹RNA赋予BydV免疫力

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The PAV serotype o/Barley yellow dwarf virus (BYDV-PAV) is the most damaging virus of cereals worldwide. Natural resistance genes against the virus give inadequate control, and previous attempts to introduce synthetic resistance genes have been disappointing. The transformation of cereals with BYDV coat protein or polymerase genes has produced a few virus-resistant plants, but the resistance has been weak, unstable, or has failed to segregate as expected. In an attempt to generate barley with protection against BYDV, Golden Promise barley was transformed with a transgene that was designed to produce hairpin (hp)RNAfrom BYDV-PAV sequences. The majority of the resulting lines contained a single copy transgene insert and were rated as immune because the virus could not be detected in the challenged plants by ELISA nor recovered by aphid feeding experiments. In the field, BYDV-PAV is sometimes associated with the related luteovirus Cereal yellow dwarf virus (CYDV-RPV). When the transgenic plants were challenged with BYDV-PAV and CYDV together, the plants were susceptible to CYDV but immune to BYDV-PAV This shows that the immunity is sequence-specific and not broken down by the presence of CYDV. It also suggests that the immunity will be robust in thefield and very useful in minimizing losses in barley production due to BYDV-PAV.
机译:Pav Serotype O / Barley Yellow Dwarf病毒(Bydv-Pav)是全球谷物最具破坏性的病毒。对病毒的自然抗性基因具有对照的不足,并试图引入合成抗性基因的尝试令人失望。用ByDV外壳蛋白质或聚合酶基因的谷物的转化产生了少量病毒植物,但抗性已经弱,不稳定,或者未被预期隔离。在尝试通过防止BARDV产生大麦,Golden Promise Barley用旨在产生发夹(HP)RNAFROM Bydv-Pav序列的转基因转换。大多数所得线含有单一的拷贝转基因插入物,并且被评定为免疫,因为在ELISA中不能在攻击的植物中检测到病毒,并通过蚜虫饲养实验回收。在本领域中,Bydv-Pav有时与相关的曲氏曲霉谷物黄矮病病毒(Cydv-RPV)相关。当转基因植物用Bydv-Pav和Cydv攻击在一起时,植物易于Cydvv,但免疫为Bydv-Pav这表明免疫是序列特异性的并且通过Cydv的存在而未分解。它还表明,免疫力将在菲尔德稳健,并且在最大限度地减少由于Bydv-Pav导致的大麦产量的损失非常有用。

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