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首页> 外文期刊>African Journal of Biotechnology >Effects of basal media, salt concentrations, antioxidant supplements and co-effects on the Agrobacterium-mediated transformation efficiency in maize
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Effects of basal media, salt concentrations, antioxidant supplements and co-effects on the Agrobacterium-mediated transformation efficiency in maize

机译:基底介质,盐浓度,抗氧化剂补充剂和共同影响对玉米农杆菌介导的转化效率的影响

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Transformation efficiency enhancement in maize?Agrobacterium-mediated transformation was tested using four different basal media, five levels of N6 salts, two antioxidants and copper sulfate. In the absence of the antioxidants L-cysteine and dithiothreitol (DTT), the frequencies of transient GUS expression was higher using Linsmaier and Skoog (LS) and Murashige and Skoog (MS) media as an alternative to Chu (N6) and Ducan (D). N6 basal medium exhibited better performance in the presence of antioxidants than MS, LS and D basal media. Five different levels of N6 medium salts (10, 30, 50, 70 and 100%) were tested, and the highest transformation efficiency was 15.9% under a 50% salt concentration, followed by 6.4% transformation efficiency with 70 and 3.2% under 100% salt conditions. More than 95% of infected immature embryos exhibited GUS staining under 10 and 30% salt concentrations, however none of the embryos developed into embryogenic callus, indicating that low salt levels favored T-DNA delivery, but not stable transformation. Additions of DTT or L-cysteine, or a combination of L-cysteine and DTT, showed a significant improvement in the frequency of transient GUS expression, however increases were not observed with independent CuSO4treatments. Polymerase chain reaction (PCR) and Southern-blot analysis confirmed T-DNA integration into the maize genome.
机译:使用四种不同的基础培养基,5水平的N6盐,两个抗氧化剂和硫酸铜测试转化效率介导的转化效率介导的转化。在没有抗氧化剂L-半胱氨酸和二硫醇(DTHIOTHREINOL(DTT)的情况下,使用LINSMAIER和SKOOG(LS)和MURASHIGE和SKOOG(MS)培养基作为CHU(N6)和杜坎(D.)的替代品)。 N6基础培养基在抗氧化剂存在比MS,LS和D基础介质存在下表现出更好的性能。测试五种不同水平的N6中盐(10,30,50,70和100%),在50%的盐浓度下,最高的转化效率为15.9%,然后在100下的70%和3.2%的转化效率下进行6.4% %盐条件。超过95%的受感染的未成熟胚胎显示出10%和30%的盐浓度下的GUS染色,但胚胎没有形成为胚菌愈伤组织,表明低盐水平赞成T-DNA递送,但不稳定的转化。添加DTT或L-半胱氨酸的添加或L-半胱氨酸和DTT的组合显示出瞬时GUS表达的频率显着改善,但是没有观察到与独立的CUSO 4术后增加的增加。聚合酶链反应(PCR)和Southern-Blot分析证实T-DNA整合到玉米基因组中。

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