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An efficient Foxtail mosaic virus vector system with reduced environmental risk

机译:降低环境风险的高效狐尾花叶病毒载体系统

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Background Plant viral vectors offer high-yield expression of pharmaceutical and commercially important proteins with a minimum of cost and preparation time. The use of Agrobacterium tumefaciens has been introduced to deliver the viral vector as a transgene to each plant cell via a simple, nonsterile infiltration technique called "agroinoculation". With agroinoculation, a full length, systemically moving virus is no longer necessary for excellent protein yield, since the viral transgene is transcribed and replicates in every infiltrated cell. Viral genes may therefore be deleted to decrease the potential for accidental spread and persistence of the viral vector in the environment. Results In this study, both the coat protein (CP) and triple gene block (TGB) genetic segments were eliminated from Foxtail mosaic virus to create the "FECT" vector series, comprising a deletion of 29% of the genome. This viral vector is highly crippled and expresses little or no marker gene within the inoculated leaf. However, when co-agroinoculated with a silencing suppressor (p19 or HcPro), FECT expressed GFP at 40% total soluble protein in the tobacco host, Nicotiana benthamiana . The modified FoMV vector retained the full-length replicase ORF, the TGB1 subgenomic RNA leader sequence and either 0, 22 or 40 bases of TGB1 ORF (in vectors FECT0, FECT22 and FECT40, respectively). As well as N. benthamiana , infection of legumes was demonstrated. Despite many attempts, expression of GFP via syringe agroinoculation of various grass species was very low, reflecting the low Agrobacterium -mediated transformation rate of monocots. Conclusions The FECT/40 vector expresses foreign genes at a very high level, and yet has a greatly reduced biohazard potential. It can form no virions and can effectively replicate only in a plant with suppressed silencing.
机译:背景技术植物病毒载体以最小的成本和制备时间提供了药物和商业上重要蛋白质的高产量表达。已经引入使用根癌土壤杆菌,以通过称为“农杆菌接种”的简单,非无菌渗透技术将病毒载体作为转基因递送至每个植物细胞。通过农杆菌接种,不再需要全长的,全身性移动的病毒来获得出色的蛋白质产量,因为病毒转基因可以在每个浸润的细胞中转录并复制。因此,可以删除病毒基因,以减少环境中病毒载体意外传播和持久性的可能性。结果在这项研究中,从Foxtail花叶病毒中去除了外壳蛋白(CP)和三重基因区块(TGB)遗传片段,从而创建了“ FECT”载体系列,其中包括29%的基因组缺失。该病毒载体高度残缺,并且在接种的叶片中几乎不表达或不表达任何标记基因。但是,当与沉默抑制因子(p19或HcPro)共同农杆菌接种时,FECT在烟草宿主Nicotiana benthamiana中表达的GFP占总可溶性蛋白的40%。修饰的FoMV载体保留了全长复制酶ORF,TGB1亚基因组RNA前导序列和TGB1 ORF的0、22或40个碱基(分别在载体FECT0,FECT22和FECT40中)。与本氏猪笼草一样,豆科植物也受到感染。尽管进行了许多尝试,但通过注射器农杆菌接种各种草种表达的GFP非常低,反映了农杆菌介导的单子叶植物转化率低。结论FECT / 40载体可高水平表达外源基因,但其潜在的生物危害性大大降低。它不能形成病毒体,并且只能在沉默抑制的植物中有效复制。

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