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Genetic Transformation and Green Fluorescent Protein Labeling in Ceratocystis paradoxa from Coconut

机译:椰子色斑病菌的遗传转化和绿色荧光蛋白标记

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摘要

Ceratocystis paradoxa, the causal agent of stem-bleeding disease of the coconut palm, causes great losses to the global coconut industry. As the mechanism of pathogenicity of C. paradoxa has not been determined, an exogenous gene marker was introduced into the fungus. In this study, pCT74-sGFP, which contains the green fluorescent protein (GFP) gene, and the hygromycin B resistance gene as a selective marker, was used as an expression vector. Several protoplast release buffers were compared to optimize protoplast preparation. The plasmid pCT74-sGFP was successfully transformed into the genome of C. paradoxa, which was verified using polymerase chain reaction and green fluorescence detection. The transformants did not exhibit any obvious differences from the wild-type isolates in terms of growth and morphological characteristics. Pathogenicity tests showed that the transformation process did not alter the virulence of the X-3314 C. paradoxa strain. This is the first report on the polyethylene glycol-mediated transformation of C. paradoxa carrying a ‘reporter’ gene GFP that was stably and efficiently expressed in the transformants. These findings provide a basis for future functional genomics studies of C. paradoxa and offer a novel opportunity to track the infection process of C. paradoxa.
机译:Ceratocystis paradoxa,椰子棕榈茎干出血病的病因,对全球椰子产业造成了巨大损失。由于尚未确定矛盾梭菌的致病性机制,因此将外源基因标记引入了真菌。在这项研究中,将包含绿色荧光蛋白(GFP)基因和潮霉素B抗性基因作为选择标记的pCT74-sGFP用作表达载体。比较了几种原生质体释放缓冲液以优化原生质体的制备。质粒pCT74-sGFP成功地转化到C. paradoxa的基因组中,使用聚合酶链反应和绿色荧光检测对其进行了验证。就生长和形态特征而言,转化子与野生型分离株没有任何明显的区别。致病性测试表明,转化过程并未改变X-3314悖论假单胞菌菌株的毒力。这是第一份关于聚乙二醇介导的对C. paradoxa转化的报道,该转化带有稳定且有效地在转化子中表达的“报道基因” GFP。这些发现为未来的C. paradoxa功能基因组学研究提供了基础,并为跟踪C. paradoxa的感染过程提供了新的机会。

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