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首页> 外文期刊>Plant Cell Reports >The PsEND1 promoter: a novel tool to produce genetically engineered male-sterile plants by early anther ablation
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The PsEND1 promoter: a novel tool to produce genetically engineered male-sterile plants by early anther ablation

机译:PsEND1启动子:一种通过早期花药消融生产基因工程雄性不育植物的新工具

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摘要

PsEND1 is a pea anther-specific gene that displays very early expression in the anther primordium cells. Later on, PsEND1 expression becomes restricted to the epidermis, connective, endothecium and middle layer, but it is never observed in tapetal cells or microsporocytes. We fused the PsEND1 promoter region to the cytotoxic barnase gene to induce specific ablation of the cell layers where the PsEND1 is expressed and consequently to produce male-sterile plants. Expression of the chimaeric PsEND1::barnase gene in two Solanaceae (Nicotiana tabacum and Solanum lycopersicon) and two Brassicaceae (Arabidopsis thaliana and Brassica napus) species, impairs anther development from very early stages and produces complete male-sterile plants. The PsEND1::barnase gene is quite different to other chimaeric genes previously used in similar approaches to obtain male-sterile plants. The novelty resides in the use of the PsEND1 promoter, instead of a tapetum-specific promoter, to produce the ablation of specific cell lines during the first steps of the anther development. This chimaeric construct arrests the microsporogenesis before differentiation of the microspore mother cells and no viable pollen grains are produced. This strategy represents an excellent alternative to generate genetically engineered male-sterile plants, which have proved useful in breeding programmes for the production of hybrid seeds. The PsEND1 promoter also has high potential to prevent undesirable horizontal gene flow in many plant species.
机译:PsEND1是豌豆花药特异性基因,在花药原基细胞中显示非常早的表达。后来,PsEND1表达变得局限于表皮,结缔组织,内皮和中间层,但从未在绒毛细胞或微孢子细胞中观察到。我们将PsEND1启动子区域融合到细胞毒性barnase基因上,以诱导表达PsEND1的细胞层的特异性切除,从而产生雄性不育植物。 Chimaeric PsEND1 :: barnase基因在两个茄科(Nicotiana tabacum和Solanum lycopersicon)和两个芸苔科(Arabidopsis thaliana和Brassica napus)物种中的表达会损害花药从很早阶段开始的发育,并产生完整的雄性不育植物。 PsEND1 :: barnase基因与以前在类似方法中获得雄性不育植物的其他嵌合基因完全不同。新奇之处在于使用PsEND1启动子而不是绒毡层特异性启动子在花药发育的第一步中产生特定细胞系的消融。这种嵌合结构在微孢子母细胞分化之前阻止了微孢子发生,并且没有产生可行的花粉粒。该策略是产生转基因雄性不育植物的极佳替代方法,事实证明,该植物已在育种程序中用于生产杂交种子。 PsEND1启动子还具有很高的潜力,可以防止许多植物物种中不良的水平基因流动。

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