Lomonosov Moscow State University, Leninskiye Gory 1-12, Moscow, Russia, 119991.
Pirogov Russian National Research Medical University, Ostrovitjanova Street 1, Moscow, Russia, 117997.
Plant Reprod. 2018 Dec;31(4):357-365. doi: 10.1007/s00497-018-0335-4. Epub 2018 Apr 4.
Endogenous ROS, including those produced by NADPH oxidase, are required for spruce pollen germination and regulate membrane potential in pollen tubes; [Formula: see text] and H O are unevenly distributed along the tube. Recently, the key role of reactive oxygen species (ROS) in plant reproduction has been decisively demonstrated for angiosperms. This paper is dedicated to the involvement of ROS in pollen germination of gymnosperms, which remained largely unknown. We found that ROS are secreted from pollen grains of blue spruce during the early stage of activation. The localization of different ROS in pollen tube initials and pollen tubes demonstrated the accumulation of HO in pollen tube apex. Colocalization with mitochondria-derived [Formula: see text] showed that HO is produced in mitochondria and amyloplasts in addition to its apical gradient in the cytosol. The necessity of intracellular ROS and, particularly, [Formula: see text] for pollen germination was demonstrated using different antioxidants. ·OH and extracellular ROS, on the contrary, were found to be not necessary for germination. Exogenous hydrogen peroxide did not affect the germination efficiency but accelerated pollen tube growth in a concentration-dependent manner. The optical measurements of membrane potential showed that in spruce pollen tubes there is a gradient which is controlled by H-ATPase, potassium- and calcium-permeable channels, anion channels and ROS, as demonstrated by inhibitory analysis. An important role of NADPH oxidase in the regulation of ROS balance in particular, and in germination in general, has been demonstrated by inhibiting the enzyme, which leads to the reduction in ROS release, depolarization of pollen tube plasma membrane, and blocking of pollen germination.
内源性 ROS,包括 NADPH 氧化酶产生的 ROS,是云杉花粉萌发所必需的,并且调节花粉管中的膜电位;[公式:见正文]并且 H 2 O 2 在花粉管中不均匀分布。最近,活性氧(ROS)在被子植物生殖中的关键作用已得到明确证明。本文致力于探讨 ROS 在裸子植物花粉萌发中的作用,这在很大程度上仍不清楚。我们发现,在蓝云杉花粉激活的早期阶段,ROS 从花粉粒中分泌出来。花粉管起始段和花粉管中不同 ROS 的定位表明 HO 在花粉管顶端的积累。与线粒体衍生的[公式:见正文]共定位表明,HO 除了在细胞质中存在顶端梯度外,还在线粒体和淀粉体中产生。使用不同的抗氧化剂证明了细胞内 ROS,特别是[公式:见正文]对花粉萌发的必要性。·OH 和细胞外 ROS 则被发现对萌发不是必需的。外源性过氧化氢不影响萌发效率,但以浓度依赖的方式加速花粉管生长。膜电位的光学测量表明,在云杉花粉管中存在一个梯度,该梯度由 H-ATP 酶、钾和钙渗透性通道、阴离子通道和 ROS 控制,如抑制分析所示。通过抑制酶,证明 NADPH 氧化酶在 ROS 平衡的调节中特别是在萌发中起着重要作用,这会导致 ROS 释放减少、花粉管质膜去极化以及花粉萌发受阻。