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Osmoregulation in Lilium pollen grains occurs via modulation of the plasma membrane H~+ atpase activity by 14-3-3 proteins

机译:百合花粉中的渗透调节作用是通过14-3-3蛋白调节质膜H〜+ atpase活性而发生的

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摘要

To allow successful germination and growth of a pollen tube, mature and dehydrated pollen grains (PGs) take up water and have to adjust their turgor pressure according to the water potential of the surrounding stigma surface. The turgor pressure of PGs of lily (Lilium longiflorum) was measured with a modified pressure probe for simultaneous recordings of turgor pressure and membrane potential to investigate the relation between water and electrogenic ion transport in osmoregulation. Upon hyperosmolar shock, the turgor pressure decreased, and the plasma membrane (PM) hyperpolarizes in parallel, whereas depolarization of the PM was observed with hypoosmolar treatment. An acidification and alkalinization of the external medium was monitored after hyper- and hypoosmotic treatments, respectively, and pH changes were blocked by vanadate, indicating a putative role of the PM H~+ ATPase. Indeed, an increase in PM-associated 14-3-3 proteins and an increase in PM H~+ ATPase activity were detected in PGs challenged by hyperosmolar medium. We therefore suggest that in PGs the PM H~+ ATPase via modulation of its activity by 14-3-3 proteins is involved in the regulation of turgor pressure.
机译:为使花粉管成功发芽和生长,成熟且脱水的花粉颗粒(PG)会吸收水,并且必须根据周围柱头表面的水势来调节其膨胀压力。用改良的压力探头测量百合(PG)的PG的膨胀压力,以同时记录膨胀压力和膜电位,以研究渗透压下水与电离子迁移之间的关系。高渗性休克后,腹膜压力降低,质膜(PM)平行超极化,而低渗性处理则观察到PM的去极化。分别在高渗和低渗处理后监测外部介质的酸化和碱化,并通过钒酸盐阻止pH的变化,表明PM H〜+ ATPase的假定作用。实际上,在高渗介质攻击的PG中,检测到PM相关的14-3-3蛋白增加,PM H〜+ ATPase活性增加。因此,我们认为在PG中,PM H〜+ ATP酶通过调节其活性而被14-3-3蛋白质参与了膨胀压力的调节。

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