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首页> 外文期刊>Physiologia plantarum >Mitochondrial dysfunction mediated by cytoplasmic acidification results in pollen tube growth cessation in Pyrus pyrifolia
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Mitochondrial dysfunction mediated by cytoplasmic acidification results in pollen tube growth cessation in Pyrus pyrifolia

机译:胞质酸化介导的线粒体功能障碍导致梨梨花粉管生长停止

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The length of pollen tubes grown in synthetic media is normally shorter than those grown in vivo. However, the mechanism(s) underlying the cessation of pollen tube growth under culture conditions remain(s) largely unknown. Here, we report a previously unknown correlation between vacuolar function and the cell's ability to sustain mitochondrial functions in pear pollen tubes. The pear pollen tubes in vitro grew slowly after 15hours post-cultured (HPC) and nearly ceased growth at 18 HPC. There was increased malondialdehyde content and membrane ion leakage at 15 HPC compared with 12 HPC. Furthermore, cytoplasmic acidification mainly mediated by decreased vacuolar H+-ATPase [V-ATPase, Enzyme Commission (EC) 3.6.1.3] activity was observed in pollen tubes after 15 HPC, and this further resulted in mitochondrial dysfunction, including mitochondrial structure disruption, mitochondrial membrane potential collapse and decreases in both oxygen consumption and ATP production. Our findings suggest that vacuoles and mitochondria intimately linked in regulating pollen tube elongation.
机译:在合成培养基中生长的花粉管的长度通常比体内生长的花粉管的长度短。然而,在培养条件下停止花粉管生长的基本机制仍然未知。在这里,我们报道了液泡功能与梨花粉管中细胞维持线粒体功能的能力之间的未知关系。培养后(HPC)15小时后,体外梨花粉管生长缓慢,在18 HPC时几乎停止生长。与12 HPC相比,在15 HPC下丙二醛含量和膜离子泄漏增加。此外,在15 HPC后,在花粉管中观察到主要由液泡H + -ATPase [V-ATPase,酶委员会(EC)3.6.1.3]活性介导的细胞质酸化,这进一步导致线粒体功能障碍,包括线粒体结构破坏,线粒体膜电位崩溃,氧气消耗和ATP产量均下降。我们的发现表明,液泡和线粒体在调节花粉管伸长方面密切相关。

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