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Transposon-induced gene activation as a mechanism generating cluster shape somatic variation in grapevine

机译:转座子诱导的基因激活是在葡萄中产生簇状体细胞变异的机制

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摘要

We have characterized the genetic and molecular origin of the reiterated reproductive meristem (RRM) somatic variant phenotype of grapevine cultivar Carignan. Here, we show that the extreme cluster proliferation and delayed anthesis observed in this somatic variant is caused by a single dominant mutation. Transcriptional profiling of Carignan and RRM plants during early stages of inflorescence development demonstrated the overexpression of a few regulatory genes, including VvTFL1A, a close TFL1 Arabidopsis homolog, in RRM inflorescences. Genetic and molecular analyses correlated the insertion of a class-II transposable element, Hatvine1-rrm, in the VvTFL1A promoter, with upregulation of the corresponding VvTFL1A allele in reproductive and vegetative organs of the shoot apex. These results suggest a role for this TFL1 grapevine homolog in the determination of inflorescence structure, with a critical effect on the size and branching pattern of grapevine fruit clusters. Our results demonstrate the existence of spontaneous cis-activation processes caused by class-II transposable elements in grapevine plants, and point to their possible role as a mechanism to generate somatic cell variation in perennial plants. This mechanism is expected to generate dominant phenotypes in chimeric sectors that can be readily exposed to natural selection.
机译:我们表征了葡萄品种Carignan的再生生殖分生组织(RRM)体细胞变异表型的遗传和分子起源。在这里,我们表明,在这种体细胞变异中观察到的极端簇增殖和花期延迟是由单个显性突变引起的。在花序发育的早期,Carignan和RRM植物的转录谱分析表明,一些调控基因在RRM花序中过表达,其中包括VvTFL1A(TFL1拟南芥的近亲同系物)。遗传和分子分析表明,在VvTFL1A启动子中插入了II类转座因子Hatvine1-rrm,并在芽顶生殖和营养器官中上调了相应的VvTFL1A等位基因。这些结果表明该TFL1葡萄系同源物在确定花序结构中的作用,对葡萄果实簇的大小和分支模式具有关键影响。我们的结果证明了由II类转座因子在葡萄植物中引起的自发顺式激活过程的存在,并指出了它们可能作为多年生植物中体细胞变异的机制。预期该机制会在易于暴露于自然选择的嵌合区段中产生显性表型。

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