Breygina Maria, Klimenko Ekaterina, Podolyan Alexandra, Voronkov Alexander
Department of Plant Physiology, Biological Faculty, Lomonosov Moscow State University, Leninskiye Gory 1-12, 119991 Moscow, Russia.
Timiryazev Institute of Plant Physiology, Russian Academy of Sciences, Botanicheskaya St. 35, 127276 Moscow, Russia.
Plants (Basel). 2020 Dec 11;9(12):1760. doi: 10.3390/plants9121760.
Pollen is a highly specialized structure for sexual plant reproduction. Early stages of pollen germination require the transition from dormant state to active metabolism. In particular, an important role during this early phase of angiosperm pollen germination is played by H-ATPase. Very little is known about pollen activation in gymnosperm species, and information on the involvement of H-ATPase is lacking. We tracked four indicators characterizing the physiological state of pollen: membrane potential, intracellular pH, anion efflux and oxygen uptake, in order to monitor the dynamics of activation in . Based on pH dynamics during activation, we assumed the important role of H-ATPase in spruce pollen germination. Indeed, germination was severely suppressed by P-type ATPase inhibitor orthovanadate. In spruce pollen tubes, a pronounced pH gradient with a maximum in the apical zone was found, which was different from the pollen tubes of flowering plants. Using orthovanadate and fusicoccin, we found that the proton pump is largely responsible for maintaining the gradient. Immunolocalization of the enzyme in pollen tubes showed that the distribution of H-ATPase generally coincides with the shape of the pH gradient: its maximum accumulation is observed in the apical zone.
花粉是植物有性繁殖的一种高度特化的结构。花粉萌发的早期阶段需要从休眠状态转变为活跃的新陈代谢。特别是,H - ATP酶在被子植物花粉萌发的这一早期阶段发挥着重要作用。关于裸子植物花粉的激活知之甚少,且缺乏有关H - ATP酶参与情况的信息。我们追踪了表征花粉生理状态的四个指标:膜电位、细胞内pH值、阴离子外流和氧气摄取,以监测花粉激活的动态过程。基于激活过程中的pH动态变化,我们推测H - ATP酶在云杉花粉萌发中起重要作用。事实上,P型ATP酶抑制剂原钒酸盐严重抑制了花粉萌发。在云杉花粉管中,发现了一个明显的pH梯度,其最大值出现在顶端区域,这与开花植物的花粉管不同。使用原钒酸盐和壳梭孢菌素,我们发现质子泵在很大程度上负责维持该梯度。该酶在花粉管中的免疫定位表明,H - ATP酶的分布通常与pH梯度的形状一致:在顶端区域观察到其积累量最大。