首页> 外文会议>IFIP TC 12 conference on computer and computing technologies in agriculture;CCTA 2010 >Chlorimuronethyl Resistance Selectable Marker Unsuited for the Transformation of Rice Blast Fungus (Magnaporthe Grisea)
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Chlorimuronethyl Resistance Selectable Marker Unsuited for the Transformation of Rice Blast Fungus (Magnaporthe Grisea)

机译:不适合稻瘟病菌(Magnaporthe Grisea)转化的耐氯嘧磺隆选择标记

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Chlorimuronethyl resistance gene is increasingly used as a selectable marker for transformation, especially fungal transformation. Magnaporthe grisea is an important model organism for investigating fungal pathogenicity, and Agro-bacterium twnefaciens-mediated transformation (ATMT) is used for functional mutagenesis of the fungus. However, our results showed that rice blast strains collected from infectious rice fields have highly conserved resistance to chlorimuronethyl, even comparable to transformants which carrying chlorimuronethyl resistance genes as selectable marker in laboratory conditions. PCR results showed that all tested field strains presented the amplified products of the same size as the selectable marker amplified from plasmid carrying chlorimuronethyl gene. Sequence analysis of PCR products amplified from field strains confirmed that field strains harbored the highly identity homolog of chlorimuronethyl resistance gene. Blast search in GenBank suggested that the fragment is presenting in reference genome sequence of 70-15, but it is not a wide-spread gene in other organisms, excepted for Herpetosiphon aurantiacus. Although the origin and reason of the conserved chlorimuronethyl resistance gene in field isolates of blast fungus is unclear, the ecological function of the gene is noteworthy.
机译:氯嘧磺隆抗性基因被越来越多地用作转化特别是真菌转化的选择标记。稻瘟病菌是研究真菌致病性的重要模型生物,农杆菌介导的转化(ATMT)用于真菌的功能诱变。但是,我们的结果表明,从传染性稻田中收集的稻瘟病菌株对氯嘧磺隆具有高度保守的抗性,甚至与在实验室条件下带有氯嘧磺隆抗性基因作为选择标记的转化株相当。 PCR结果显示,所有测试的野外菌株均具有与从带有嘧啶磺隆基因的质粒中扩增出的选择标记相同大小的扩增产物。从田间菌株扩增的PCR产物的序列分析证实,田间菌株具有对氯嘧磺隆抗性基因的高度同一性同源物。 GenBank中的Blast搜索表明该片段出现在参考基因组序列70-15中,但除其他成分以外,它不是广为传播的基因,除了橙色疱疹性疱疹。尽管尚不清楚在稻瘟病菌的田间分离株中保守的氯嘧磺隆抗药性基因的起源和原因,但该基因的生态功能是值得注意的。

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