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Virus-Induced Gene Silencing (VIGS) as a Reverse Genetic Tool to Study Development of Symbiotic Root Nodules

机译:病毒诱导的基因沉默(VIGS)作为研究共生根瘤发展的反向遗传工具

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Virus-induced gene silencing (VIGS) can provide a shortcut to plants with altered expression of specific genes. Here, we report that VIGS of the Nodule inception gene (Nin) can alter the nodulation phenotype and Mb gene expression in Pisum sativum. PsNin was chosen as target because of the distinct non-nodulating phenotype of nin mutants in P. sativum, Lotus japonicus, and Medicago truncatula. The vector based on Pea early browning virus (PEBV) was engineered to carry one of three nonoverlapping fragments (PsNinA, PsNinB, and PsNinC) derived from the PsNin cDNA. Vector inoculation was mediated by agroinfiltration and, 2 weeks later, a Rhizobium leguminosarum bv. viceae culture was added in order to induce root nodulation. At this time point, it was estimated that systemic silencing was established because leaves of reference plants inoculated with PEBV carrying a fragment of Phytoene desaturase displayed photo bleaching. Three weeks after Rhizobium spp. application, plants inoculated with a control vector nodulated normally, whereas nodulation was almost eliminated in plants inoculated with a vector carrying PsNinA and PsNinC. For plants inoculated with a vector carrying PsNinB, nodulation was reduced by at least 45%. Down-regulation of PsNin transcripts in plants inoculated with vectors carrying PsNin cDNA fragments was confirmed and these plants displayed a relative increase in the root/shoot ratio, as expected if nitrogen fixation had been impaired.
机译:病毒诱导的基因沉默(VIGS)可以为特定基因表达改变的植物提供捷径。在这里,我们报告的结节起始基因(Nin)的VIGS可以改变豌豆的结节表型和Mb基因表达。之所以选择PsNin作为靶标,是因为P.sativum,Lotus japonicus和Medicago truncatula中nin突变体具有明显的非结瘤表型。对基于豌豆早褐变病毒(PEBV)的载体进行了工程改造,使其携带源自PsNin cDNA的三个非重叠片段(PsNinA,PsNinB和PsNinC)之一。载体接种通过农杆菌浸润和2周后的豆科根瘤菌bv介导。添加虎钳培养物以诱导根瘤。在这个时间点,据估计建立了系统沉默,因为接种了携带番茄红素去饱和酶片段的PEBV的参照植物叶片显示出光致漂白。根瘤菌后三周。在应用中,用对照载体接种的植物正常结瘤,而在接种带有PsNinA和PsNinC的载体的植物中根瘤几乎被消除。对于接种有携带PsNinB的载体的植物,结瘤减少了至少45%。证实了在接种带有PsNin cDNA片段的载体的植物中PsNin转录产物的下调,并且如果氮固定受到损害,这些植物的根/茎比将相对增加。

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