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Reversible male sterility in eggplant (Solanum melongena L.) by artificial microRNA-mediated silencing of general transcription factor genes

机译:通过人工微润罗纳介导的一般转录因子基因沉默的茄子(Solanum Melongena L.)的可逆雄性不育

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摘要

Since decades, plant male sterility is considered a powerful tool for biological containment to minimize unwanted self-pollination for hybrid seed production. Furthermore, prevention of pollen dispersal also answers to concerns regarding transgene flow via pollen from Genetically Modified (GM) crops to traditional crop fields or wild relatives. We induced male sterility by suppressing endogenous general transcription factor genes, TAFs, using anther-specific promoters combined with artificial microRNA (amiRNA) technology (Schwab et al., 2006). The system was made reversible by the ethanol inducible expression of an amiRNA-insensitive form of the target gene. We provide proof of concept in eggplant, a cultivated crop belonging to the Solanaceae family that includes many important food crops. The transgenic eggplants that we generated are completely male sterile and fertility can be fully restored by short treatments with ethanol, confirming the efficiency but also the reliability of the system in view of open field cultivation. By combining this system with induced parthenocarpy (Rotino et al., 1997), we provide a novel example of complete transgene containment in eggplant, which enables biological mitigation measures for the benefit of coexistence or biosafety purposes for GM crop cultivation.
机译:几十年来,植物雄性不育被认为是一种强大的生物遏制工具,以最大限度地减少杂种种子生产的不必要的自授粉。此外,预防花粉分散也通过从转基因(GM)作物到传统的作物田或野生亲属的花粉对转基因流动的担忧答案。通过抑制与人造microRNA(AmiRNA)技术(Schwab等,2006)组合的特异性促进剂,通过抑制内源性一般转录因子基因,TAFS来诱导雄性不育。通过靶基因的嗜氨基不敏感形式的乙醇诱导表达来逆转该系统。我们提供茄子的概念证明,属于Solanaceae家族的培养作物,包括许多重要的食物作物。我们产生的转基因茄子是完全雄性不育的,可以通过乙醇的短处理来完全恢复生育,确认效率,也是系统的可靠性,鉴于开放的野外培养。通过将该系统与诱导的疗法(Rotino等,1997)组合,我们提供了茄子中完全转基因壳的新实例,这使得生物缓解措施能够有益于转基因作物培养的共存或生物安全目的。

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