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首页> 外文期刊>International Journal of Medicinal Mushrooms >Agrobacterium tumefaciens-Mediated Transformation of the King Tuber Medicinal Mushroom Lentinus tuber-regium (Agaricomycetes)
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Agrobacterium tumefaciens-Mediated Transformation of the King Tuber Medicinal Mushroom Lentinus tuber-regium (Agaricomycetes)

机译:农杆菌肿瘤癌介导的植物委员会介导的转化,瓜根植物植物Lentinus菌革植物(伞菌)(姬松茸)

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摘要

Lentinus tuber-regium is a sclerotium-fonning basidiomycetous mushroom. It has increasingly aroused people's attention for its medicinal effects. In this study, we investigated the applicability of the Agrobacterium tumefaciens-mediated transformation (ATMT) method in L. tuber-regium. A. tumefaciens strain GV 3101 harboring the vector pPEH was used to transform the mycelium of L. tuber-regium strain ACCC50657. The genes for hygromycin B phosphotransferase (hph) and enhanced green fluorescent protein (egfp) under the control of the glyceraldehyde3-phosphate dehydrogenase (gpd) gene promoter of Pleurotus ostreatus were employed as the selection marker and reporter gene, respectively. The optimal cocultivation temperature and time for transformation were 3 days and 4 days at 25 degrees C and 20 degrees C, respectively. Southern blot analysis showed the variation in the copy number and position of hph, which indicated random integration of hph. Polymerase chain reaction and fluorescence microscopy indicated that the P. ostreatus gpd promoter can drive the fused hph-egfp gene expression in L. tuber-regium. This is the first report that the ATMT method was successfully applied to L. tuber-tegium. This reliable and efficient transformation method could be a powerful tool for strain genetic improvement and gene function study in L. tuber-regium.
机译:Lentinus Tuber-Regium是一个巩膜型底漆蘑菇。它越来越引起了人们对其药物影响的关注。在这项研究中,我们研究了Tumefaciens介导的转化(ATMT)方法在L. Tuber-Regium中的适用性。 A. TumeFaciens菌株GV 3101携带载体PPEH,用于转化L.菌丝体菌株ACC50657的菌丝体。在甘油红醛3-磷酸脱氢酶(GPD)基因启动子的控制下,术后旋霉素B磷酸转移酶(HPH)和增强的绿色荧光蛋白(EGFP)的基因分别用作选择标志物和报告基因。变化的最佳共激节温度和时间为3天,4天,分别为25℃和20℃。 Southern印迹分析显示了HPH的拷贝数和位置的变化,表明HPH随机整合。聚合酶链反应和荧光显微镜表明,P. Ostreatus GPD启动子可以在L.Tuber-Regium中驱动融合HPH-EGFP基因表达。这是第一个报告,即ATMT方法已成功应用于L. Tuber-tegium。这种可靠且有效的转化方法可以是L. Tuber-Regium的应变遗传改善和基因功能研究的强大工具。

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