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Molecular mechanism of the S-RNase-based gametophytic self-incompatibility in fruit trees of Rosaceae

机译:蔷薇科果树中基于S-RNase的配子体自交不亲和的分子机制

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摘要

Self-incompatibility (SI) is a major obstacle for stable fruit production in fruit trees of Rosaceae. SI of Rosaceae is controlled by the S locus on which at least two genes, pistil S and pollen S, are located. The product of the pistil S gene is a polymorphic and extracellular ribonuclease, called S-RNase, while that of the pollen S gene is a protein containing the F-box motif, SFB (S haplotype-specific F-box protein)/SFBB (S locus F-box brothers). Recent studies suggested that SI of Rosaceae includes two different systems, i.e., Prunus of tribe Amygdaleae exhibits a self-recognition system in which its SFB recognizes self-S-RNase, while tribe Pyreae (Pyrus and Malus) shows a non-self-recognition system in which many SFBB proteins are involved in SI, each recognizing subset of non-self-S-RNases. Further biochemical and biological characterization of the S locus genes, as well as other genes required for SI not located at the S locus, will help our understanding of the molecular mechanisms, origin, and evolution of SI of Rosaceae, and may provide the basis for breeding of self-compatible fruit tree cultivars.
机译:自交不亲和性(SI)是酒渣鼻果树稳定果实生产的主要障碍。蔷薇科的S1由S基因座控制,S基因座上有至少两个基因,雌蕊S和花粉S。雌蕊S基因的产物是一种多态性的胞外核糖核酸酶,称为S-RNase,而花粉S基因的产物则是一种含有F框基序SFB(单倍型特异性F框蛋白)/ SFBB的蛋白质(轨迹F-box兄弟)。最近的研究表明,蔷薇科植物的SI包括两个不同的系统,即扁桃族的李属具有自我识别系统,其中SFB可以识别自我S-RNase,而梨状的Pyreae(Pyrus和Malus)则具有非自我识别功能。 SI中涉及许多SFBB蛋白的系统,每个都识别非自身S-RNase的子集。 S座位基因以及SI不在S座位上所需的其他基因的进一步生化和生物学表征,将有助于我们了解蔷薇科SI的分子机制,起源和进化,并可能为自配果树品种的育种。

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