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A Medicago truncatula rdr6 allele impairs transgene silencing and endogenous phased siRNA production but not development

机译:Medicago truncatula RDR6等位基因损害转基因沉默和内源性相位的siRNA生产但没有发展

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摘要

RNA-dependent RNA polymerase 6 (RDR6) and suppressor of gene silencing 3 (SGS3) act together in post-transcriptional transgene silencing mediated by small interfering RNAs (siRNAs) and in biogenesis of various endogenous siRNAs including the tasiARFs, known regulators of auxin responses and plant development. Legumes, the third major crop family worldwide, has been widely improved through transgenic approaches. Here, we isolated rdr6 and sgs3 mutants in the model legume Medicago truncatula. Two sgs3 and one rdr6 alleles led to strong developmental defects and impaired biogenesis of tasiARFs. In contrast, the rdr6.1 homozygous plants produced sufficient amounts of tasiARFs to ensure proper development. High throughput sequencing of small RNAs from this specific mutant identified 354 potential MtRDR6 substrates, for which siRNA production was significantly reduced in the mutant. Among them, we found a large variety of novel phased loci corresponding to protein-encoding genes or transposable elements. Interestingly, measurement of GFP expression revealed that post-transcriptional transgene silencing was reduced in rdr6.1 roots. Hence, this novel mis-sense mutation, affecting a highly conserved amino acid residue in plant RDR6s, may be an interesting tool both to analyse endogenous pha-siRNA functions and to improve transgene expression, at least in legume species.
机译:基因依赖性RNA聚合酶6(RDR6)和基因沉默3(SGS3)的抑制剂在由小干扰RNA(siRNA)介导的后转基因转基因沉默中和各种内源性siRNA的生物发生,包括TASIARF,疾病响应的已知调节剂和植物开发。全球第三个主要作物家庭豆类通过转基因方法得到了广泛的改善。在这里,我们在模型Medicago Truncatula中孤立RDR6和SGS3突变体。两个SGS3和一个RDR6等位基因导致了强烈的发育缺陷和TASARF的生物发生受损。相比之下,RDR6.1纯合植物产生了足量的TASARF,以确保适当的发展。来自该特定突变体的小RNA的高通量测序确定了354个电位MTRDR6底物,其突变体中的siRNA产生显着降低。其中,我们发现了对应于蛋白质编码基因或转换元件的各种新型相位的基因座。有趣的是,GFP表达的测量显示,RDR6.1根中转录后转基因沉默降低。因此,这种影响植物RDR6s中高度保守的氨基酸残基的新型错误感测突变可以是分析内源性PHA-siRNA的功能并至少改善转基因表达,至少在豆科物质中进行有趣的工具。

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