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MSH1-induced heritable enhanced growth vigor through grafting is associated with the RdDM pathway in plants

机译:通过接枝诱导的遗传增强活力与植物中的RDDM途径有关

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Plants transmit signals long distances, as evidenced in grafting experiments that create distinct rootstock-scion junctions. Noncoding small RNA is a signaling molecule that is graft transmissible, participating in RNA-directed DNA methylation; but the meiotic transmissibility of graft-mediated epigenetic changes remains unclear. Here, we exploit the MSH1 system in Arabidopsis and tomato to introduce rootstock epigenetic variation to grafting experiments. Introducing mutations dcl2, dcl3 and dcl4 to the msh1 rootstock disrupts siRNA production and reveals RdDM targets of methylation repatterning. Progeny from grafting experiments show enhanced growth vigor relative to controls. This heritable enhancement-through-grafting phenotype is RdDM-dependent, involving 1380 differentially methylated genes, many within auxin-related gene pathways. Growth vigor is associated with robust root growth of msh1 graft progeny, a phenotype associated with auxin transport based on inhibitor assays. Large-scale field experiments show msh1 grafting effects on tomato plant performance, heritable over five generations, demonstrating the agricultural potential of epigenetic variation. The meiotic transmissibility and progeny phenotypic influence of graft-mediated epigenetic changes remain unclear. Here, the authors use the msh1 mutant in the rootstock to trigger heritable enhanced growth vigor in Arabidopsis and tomato, and show it is associated with the RNA-directed DNA methylation pathway.
机译:植物在长距离发射信号,如嫁接实验所证明,造成明显的砧木连接点。非致小RNA是一种带有移植物的信号分子,参与RNA定向的DNA甲基化;但接枝介导的表观遗传变化的减数分裂性仍然尚不清楚。在这里,我们利用拟南芥和番茄中的MSH1系统将砧木表观遗传变异引入嫁接实验。将突变DCL2,DCL3和DCL4引入MSH1砧木中断siRNA生产并揭示了甲基化述评的RDDM靶标。从嫁接实验中的后代表现出相对于对照的增强的生长活力。这种可遗传的增强辅助形成表型是RDDM依赖性的,涉及1380个差异甲基化基因,许多在生长素相关的基因途径中。生长活力与MSH1移植物后代的鲁棒根生长有关,基于抑制剂测定的植物蛋白传输相关的表型。大型现场实验表明了对番茄植物性能的MSH1嫁接效果,五代遗传症,展示了表观遗传变异的农业潜力。接枝介导的表观遗传变化的减数分裂性和后代表型影响仍然尚不清楚。在这里,作者使用砧木中的MSH1突变体在拟南芥和番茄中引发遗传增强的生长活力,并且表明它与RNA定向的DNA甲基化途径有关。

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