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磷酸甘露糖异构酶基因作为农杆菌介导的亚麻(Linum usitatissimum)转化的替代选择标记的应用。

The use of the phosphomannose isomerase gene as alternative selectable marker for Agrobacterium-mediated transformation of flax (Linum usitatissimum).

作者信息

Lamblin Frédéric, Aimé Aurélie, Hano Christophe, Roussy Isabelle, Domon Jean-Marc, Van Droogenbroeck Bart, Lainé Eric

机构信息

Laboratoire de Biologie des Ligneux et des Grandes Cultures, UPRES EA 1207, Antenne Scientifique Universitaire de Chartres, Chartres, France.

出版信息

Plant Cell Rep. 2007 Jun;26(6):765-72. doi: 10.1007/s00299-006-0280-9. Epub 2007 Jan 5.

Abstract

In order to meet the future requirement of using non-antibiotic resistance genes for the production of transgenic plants, we have adapted the selectable marker system PMI/mannose to be used in Agrobacterium-mediated transformation of flax (Linum usitatissimum L.) cv. Barbara. The Escherichia coli pmi gene encodes a phosphomannose isomerase (E.C. 5.1.3.8) that converts mannose-6-phosphate, an inhibitor of glycolysis, into fructose-6-phosphate (glycolysis intermediate). Its expression in transformed cells allows them to grow on mannose-selective medium. The Agrobacterium tumefaciens strain GV3101 (pGV2260) harbouring the binary vector pNOV2819 that carries the pmi gene under the control of the Cestrum yellow leaf curling virus constitutive promoter was used for transformation experiments. Transgenic flax plants able to root on mannose-containing medium were obtained from hypocotyl-derived calli that had been selected on a combination of 20 g L(-1) sucrose and 10 g L(-1) mannose. Their transgenic state was confirmed by PCR and Southern blotting. Transgene expression was detected by RT-PCR in leaves, stems and roots of in vitro grown primary transformants. The mean transformation efficiency of 3.6%, that reached 6.4% in one experiment was comparable to that obtained when using the nptII selectable marker on the same cultivar. The ability of T1 seeds to germinate on mannose-containing medium confirmed the Mendelian inheritance of the pmi gene in the progeny of primary transformants. These results indicate that the PMI/mannose selection system can be successfully used for the recovery of flax transgenic plants under safe conditions for human health and the environment.

摘要

为满足未来利用非抗生素抗性基因生产转基因植物的需求,我们对选择标记系统PMI/甘露糖进行了改造,使其可用于农杆菌介导的亚麻(Linum usitatissimum L.)品种Barbara的转化。大肠杆菌pmi基因编码一种磷酸甘露糖异构酶(E.C. 5.1.3.8),该酶可将糖酵解抑制剂6-磷酸甘露糖转化为6-磷酸果糖(糖酵解中间产物)。其在转化细胞中的表达使细胞能够在甘露糖选择培养基上生长。携带二元载体pNOV2819的根癌农杆菌菌株GV3101(pGV2260)用于转化实验,pNOV2819在Cestrum黄叶卷曲病毒组成型启动子的控制下携带pmi基因。能够在含甘露糖培养基上生根的转基因亚麻植株从下胚轴来源的愈伤组织中获得,这些愈伤组织在20 g L(-1)蔗糖和10 g L(-1)甘露糖的组合培养基上进行了筛选。通过PCR和Southern杂交证实了它们的转基因状态。通过RT-PCR在体外培养的初级转化体的叶、茎和根中检测到了转基因表达。平均转化效率为3.6%,在一次实验中达到了6.4%,与在同一品种上使用nptII选择标记时获得的效率相当。T1种子在含甘露糖培养基上发芽的能力证实了pmi基因在初级转化体后代中的孟德尔遗传。这些结果表明,PMI/甘露糖选择系统可在对人类健康和环境安全的条件下成功用于恢复亚麻转基因植株。

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