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Pollen tube entry into the synergid cell of Arabidopsis is observed at a site distinct from the filiform apparatus

机译:在不同于丝状体的部位观察到花粉管进入拟南芥的协同细胞

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摘要

In higher plants, the double-fertilization process begins with the successful delivery of two sperm cells to the female gametophyte. The sperms cells are carried by a pollen tube that upon arrival at the micropylar end of the female gametophyte, bursts, and discharges its content into one of two specialized cells called the synergid cells. At their micropylar ends, both synergid cells form a thickened cell wall with a unique structure called the filiform apparatus. The filiform apparatus is believed to play a major role in pollen tube guidance and reception. It has also been assumed that the pollen tube enters the receptive synergid cell through the filiform apparatus. Here, we show that in Arabidopsis ovules, the arriving pollen tube appears to grow beyond the filiform apparatus to enter the synergid cell at a more distant site, where the tube bursts to release its contents. Thus, fertilization in Arabidopsis might involve two spatially and temporally separable stages, recognition and entry, with the latter apparently not requiring the filiform apparatus.
机译:在高等植物中,双受精过程始于将两个精子细胞成功递送至雌配子体。精子细胞由花粉管携带,花粉管到达雌配子体的毛孔末端时破裂,并将其内容物排入称为协同细胞的两个专门细胞之一。在它们的毛孔末端,两个协同细胞形成具有称为丝状装置的独特结构的增厚的细胞壁。丝状设备被认为在花粉管的引导和接收中起主要作用。还已经假定花粉管通过丝状装置进入感受性协同细胞。在这里,我们显示出在拟南芥的胚珠中,到达的花粉管似乎生长在丝状体之外,并在更远的位置进入协同细胞,在那里该管破裂而释放出其内含物。因此,拟南芥中的受精可能涉及两个在空间和时间上可分离的阶段,即识别和进入,而后者显然不需要丝状设备。

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