College of Horticulture, State Key Laboratory of Crop Genetics and Germplasm Enhancement, Nanjing Agricultural University, Nanjing 210095, China.
Graduate School of Agricultural Science, Tohoku University, 1-1, Tsutsumidori-Amamiya, Aoba-ku, Sendai 981-8555, Japan.
Plant Physiol Biochem. 2014 Jan;74:255-62. doi: 10.1016/j.plaphy.2013.11.018. Epub 2013 Nov 25.
Low temperature (LT) negatively affects fertilization processes of flowering plants. Pollen tube growth is generally inhibited under LT stress; however, the mechanism(s) underlying this inhibition remain(s) largely unknown. Pollen tubes are tip-growing and the presence of tip-localized reactive oxygen species (ROS) is necessary for cellular functioning. Disruption of tip-localized ROS was observed in pear pollen tubes in vitro under low temperature of 4 °C (LT4). Diphenylene iodonium chloride, an NADPH oxidase (NOX) inhibitor, suppressed hydrogen peroxide formation in the cell walls of the subapical region in pear pollen tubes. Under LT4 stress, ROS disruption in pear pollen tubes mainly resulted from decreased NOX activity in the plasma membrane, indicating that NOX was the main source of ROS in this process. Moreover, LT4 remarkably decreased mitochondrial oxygen consumption and intracellular ATP production. The endocytosis, an energy-dependent process, disruption in pear pollen tubes under LT4 may be mediated by mitochondrial metabolic dysfunctions. Our data showed ROS and endocytosis events in pear pollen tubes responding to LT4 stress.
低温(LT)会对开花植物的受精过程产生负面影响。在 LT 胁迫下,花粉管的生长通常会受到抑制;然而,这种抑制的机制在很大程度上仍不清楚。花粉管是尖端生长的,而位于尖端的活性氧(ROS)的存在对于细胞功能是必需的。在 4°C(LT4)的低温下,体外观察到梨花粉管中存在尖端定位的 ROS 破坏。二苯基碘氯化物(DPI)是一种 NADPH 氧化酶(NOX)抑制剂,可抑制梨花粉管亚顶端区域细胞壁中过氧化氢的形成。在 LT4 胁迫下,梨花粉管中 ROS 的破坏主要是由于质膜中 NOX 活性的降低所致,表明 NOX 是该过程中 ROS 的主要来源。此外,LT4 还显著降低了线粒体的耗氧量和细胞内 ATP 的产生。内吞作用是一种依赖能量的过程,在 LT4 下梨花粉管中的内吞作用的破坏可能是由线粒体代谢功能障碍介导的。我们的数据显示了 ROS 和内吞作用事件在梨花粉管中对 LT4 胁迫的响应。