a Department of Plant Physiology ; University of Osnabrueck ; Osnabrueck , Germany.
Plant Signal Behav. 2014;9(12):e977200. doi: 10.4161/15592324.2014.977200.
This review focuses on the energy metabolism during pollen maturation and tube growth and updates current knowledge. Pollen tube growth is essential for male reproductive success and extremely fast. Therefore, pollen development and tube growth are high energy-demanding processes. During the last years, various publications (including research papers and reviews) emphasize the importance of mitochondrial respiration and fermentation during male gametogenesis and pollen tube elongation. These pathways obviously contribute to satisfy the high energy demand, and there are many studies which suggest that respiration and fermentation are the only pathways to generate the needed energy. Here, we review data which show for the first time that in addition plastidial glycolysis and the balancing of the ATP/NAD(P)H ratio (by malate valves and NAD(+) biosynthesis) contribute to satisfy the energy demand during pollen development. Although the importance of energy generation by plastids was discounted during the last years (possibly due to the controversial opinion about their existence in pollen grains and pollen tubes), the available data underline their prime role during pollen maturation and tube growth.
本文重点关注花粉成熟和花粉管生长过程中的能量代谢,并更新了当前的知识。花粉管的生长对于雄性生殖的成功至关重要,而且速度极快。因此,花粉的发育和花粉管的生长是高能量需求的过程。在过去的几年中,各种出版物(包括研究论文和综述)强调了在线粒体呼吸和发酵在雄性配子发生和花粉管伸长过程中的重要性。这些途径显然有助于满足高能量需求,而且有许多研究表明,呼吸和发酵是产生所需能量的唯一途径。在这里,我们回顾了首次表明质体糖酵解和 ATP/NAD(P)H 比值的平衡(通过苹果酸阀和 NAD(+)生物合成)有助于满足花粉发育过程中能量需求的数据。尽管近年来人们对质体产生能量的重要性持怀疑态度(可能是由于对花粉粒和花粉管中质体存在的有争议的观点),但现有数据强调了它们在花粉成熟和花粉管生长过程中的主要作用。