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首页> 外文期刊>Plant physiology >A Putative Protein O-Fucosyltransferase Facilitates Pollen Tube Penetration through the Stigma-Style Interface
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A Putative Protein O-Fucosyltransferase Facilitates Pollen Tube Penetration through the Stigma-Style Interface

机译:推定的蛋白质O-岩氧基转移酶通过耻辱式界面促进花粉管渗透

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摘要

During pollen-pistil interactions in angiosperms, the male gametophyte (pollen) germinates to produce a pollen tube. To fertilize ovules located within the female pistil, the pollen tube must physically penetrate specialized tissues. Whereas the process of pollen tube penetration through the pistil has been anatomically well described, the genetic regulation remains poorly understood. In this study, we identify a novel Arabidopsis (Arabidopsis thaliana) gene, O-FUCOSYLTRANSFERASE1 (AtOFT1), which plays a key role in pollen tube penetration through the stigma-style interface. Semi-in vivo growth assays demonstrate that oft1 mutant pollen tubes have a reduced ability to penetrate the stigma-style interface, leading to a nearly 2,000-fold decrease in oft1 pollen transmission efficiency and a 5-to 10-fold decreased seed set. We also demonstrate that AtOFT1 is localized to the Golgi apparatus, indicating its potential role in cellular glycosylation events. Finally, we demonstrate that AtOFT1 and other similar Arabidopsis genes represent a novel clade of sequences related to metazoan protein O-fucosyltransferases and that mutation of residues that are important for O-fucosyltransferase activity compromises AtOFT1 function in vivo. The results of this study elucidate a physiological function for AtOFT1 in pollen tube penetration through the stigma-style interface and highlight the potential importance of protein O-glycosylation events in pollen-pistil interactions.
机译:在被子植物花粉雌蕊相互作用,所述雄配子体(花粉)发芽以产生花粉管。施肥位于女性雌蕊内胚珠,花粉管必须亲自深入的专门组织。而花粉管渗透通过雌蕊的进程已被很好的解剖学描述的,遗传调控仍然知之甚少。在这项研究中,我们确定了新的拟南芥(拟南芥)基因,O型FUCOSYLTRANSFERASE1(AtOFT1),它通过柱头风格界面起着花粉管渗透了关键作用。半体内生长分析表明,突变体OFT1花粉管具有穿透柱头式的界面降低的能力,导致在OFT1花粉传输效率的近2000倍的降低和一个5到10倍的降低种子集。我们还表明,AtOFT1定位于高尔基体,表明其在细胞的糖基化事件的潜在作用。最后,我们证明AtOFT1和其他类似的拟南芥代表与后生动物蛋白O型fucosyltransferases序列的新分支,并且是O型糖基转移酶的活性重要的残基的那突变损害体内AtOFT1功能。这项研究的结果阐明花粉管渗透率AtOFT1生理功能通过柱头风格的界面和突出的蛋白质O-糖基化事件的潜在重要性花粉雌蕊的相互作用。

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