Arazi T, Slutsky S G, Shiboleth Y M, Wang Y, Rubinstein M, Barak S, Yang J, Gal-On A
ViroGene Limited, Har-Hotzvim, P.O. Box 45010, 91045, Jerusalem, Israel.
J Biotechnol. 2001 Apr 27;87(1):67-82. doi: 10.1016/s0168-1656(01)00229-2.
Plant virus vectors provide an attractive biotechnological tool for the transient expression of foreign genes in whole plants. As yet there has been no use of recombinant viruses for the improvement of commercial crops. This is mainly because the viruses used to create vectors usually cause significant yield loss and can be transmitted in the field. A novel attenuated zucchini yellow mosaic potyvirus (AG) was used for the development of an environmentally safe non-pathogenic virus vector. The suitability of AG as an expression vector in plants was tested by analysis of two infectious viral constructs, each containing a distinct gene insertion site. Introduction of a foreign viral coat protein gene into AG genome between the P1 and HC-Pro genes, resulted in no expression in planta. In contrast, the same gene was stably expressed when inserted between NIb and CP genes, suggesting that this site is more suitable for a gene vector. Virus-mediated expression of reporter genes was observed in squash and cucumber leaves, stems, roots and edible fruit. Furthermore, AG stably expressed human interferon-alpha 2, an important human anti-viral drug, without affecting plant development and yield. Interferon biological activity was measured in cucumber and squash fruit. Together, these data corroborate a biotechnological utility of AG as a non-pathogenic vector for the expression of a foreign gene, as a benefit trait, in cucurbits and their edible fruit.
植物病毒载体为外源基因在整株植物中的瞬时表达提供了一种有吸引力的生物技术工具。迄今为止,尚未有重组病毒用于商业作物改良的情况。这主要是因为用于构建载体的病毒通常会导致显著的产量损失,并且能够在田间传播。一种新型减毒西葫芦黄花叶马铃薯Y病毒(AG)被用于开发一种环境安全的非致病性病毒载体。通过分析两种感染性病毒构建体(每种构建体含有一个不同的基因插入位点)来测试AG作为植物表达载体的适用性。将一个外源病毒外壳蛋白基因引入AG基因组中P1和HC-Pro基因之间,结果在植物中没有表达。相反,当该基因插入NIb和CP基因之间时能稳定表达,这表明该位点更适合作为基因载体。在南瓜和黄瓜的叶片、茎、根以及可食用果实中均观察到了报告基因的病毒介导表达。此外,AG能稳定表达人α-2干扰素(一种重要的人类抗病毒药物),且不影响植物的发育和产量。在黄瓜和南瓜果实中检测了干扰素的生物活性。总之,这些数据证实了AG作为一种非致病性载体在葫芦科植物及其可食用果实中表达外源基因(作为一种有益性状)的生物技术实用性。