Department of Plant Physiology, Agricultural University, Arboretumlaan 4, Wageningen, The Netherlands.
Planta. 1979 Jan;145(1):25-36. doi: 10.1007/BF00379924.
Bi-and trinucleate pollen generally differ in the extent of their mitochondrial development at anther dehiscence and in the rate of their attainment of maximum-phosphorylative capacity during germination in vitro, as judged from experiments with representatives of both groups.The typically trinucleate pollen of Aster tripolium L. immediately respired at a high rate, maintaining a high energy charge. Mitochondria attained maximum electron-transducing capacity within 2 min of incubation, while tube growth started within 3 min. In contrast, the binucleate pollen of Typha latifolia L. only gradually reached a relatively low rate of respiration, concomitant with a temporary decrease in energy charge, upon immersion in the germination medium. Development of the mitochondrial, electrontransducing system occurred in about 75 min, after which the first pollen tubes emerged. Starting from a poor differentiation, mitochondria became increasingly normal in appearance as germination proceeded.The binucleate pollen of Nicotiana alata Link et Otto and Tradescantia paludosa Anders. et Woods. showed intermediate characteristics: Nicotiana resembled Typha but mitochondria developed at a higher rate; Tradescantia germinated more rapidly and resembled the trinucleate pollen of Aster.Inhibitors of mitochondrial or cytoplasmic protein synthesis failed to affect the development of the mitochondrial, respiratory capacities during pollen germination. It is concluded that the duration of the lag period is determined by the level and rate of mitochondrial development and not by the division of the generative cell.
双和三核花粉在花粉开裂时线粒体发育的程度和在体外萌发时达到最大磷酸化能力的速度上存在差异,这可以从两组代表的实验中判断出来。典型的三核花粉 Aster tripolium L. 立即以高速度呼吸,保持高能量电荷。线粒体在孵育 2 分钟内达到最大电子传递能力,而管生长在 3 分钟内开始。相比之下,Typha latifolia L. 的双核花粉在浸入萌发培养基时,只有逐渐达到相对较低的呼吸速率,同时能量电荷暂时下降。线粒体、电子传递系统的发育大约在 75 分钟后发生,之后第一批花粉管出现。从分化不良开始,随着萌发的进行,线粒体的外观变得越来越正常。Nicotiana alata Link et Otto 和 Tradescantia paludosa Anders. et Woods. 的双核花粉表现出中间特征:Nicotiana 类似于 Typha,但线粒体发育速度更快;Tradescantia 萌发更快,类似于 Aster 的三核花粉。线粒体或细胞质蛋白质合成抑制剂未能影响花粉萌发过程中线粒体呼吸能力的发育。结论是,滞后期的持续时间取决于线粒体发育的水平和速度,而不是生殖细胞的分裂。