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Oscillatory Growth in Lily Pollen Tubes Does Not Require Aerobic Energy Metabolism

机译:百合花粉管中的振荡生长不需要有氧能量代谢。

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摘要

Oscillatory tip growth in pollen tubes depends on prodigious amounts of energy. We have tested the hypothesis that oscillations in the electron transport chain lead to growth oscillations in lily (Lilium formosanum). Using three respiratory inhibitors, oligomycin, antimycin A, and cyanide, we find that pollen tube growth is much less sensitive to respiratory inhibition than respiration is. All three block respiration at concentrations severalfold lower than necessary to inhibit growth. Mitochondrial NAD(P)H and potentiometric JC-1 fluorescence, employed as markers for electron transport chain activity, rise rapidly in response to oligomycin, as expected. Pollen tube growth stops for several minutes before resuming. Subsequent growth has a lower mean rate, but continues to oscillate, albeit with a longer period. NAD(P)H fluorescence no longer exhibits coherent oscillations, and mitochondria no longer congregate directly behind the apex: they distribute evenly throughout the cell. Postinhibition growth relies on aerobic fermentation for energy production as revealed by an increase in ethanol in the media. These data suggest that oscillatory growth depends not on a single oscillatory pacemaker but rather is an emergent property arising from a number of stable limit cycles.
机译:花粉管中的振荡尖端生长取决于大量的能量。我们已经检验了以下假设,即电子传输链中的振荡导致百合(Liosa formosanum)的生长振荡。使用三种呼吸抑制剂,寡霉素,抗霉素A和氰化物,我们发现花粉管生长对呼吸抑制的敏感性远低于呼吸。所有这三个呼吸抑制物的浓度都比抑制生长所需的浓度低几倍。线粒体NAD(P)H和电位JC-1荧光用作电子传输链活性的标记,如预期的那样,对寡霉素的反应迅速上升。花粉管在恢复前会停止生长几分钟。随后的增长具有较低的平均速度,但是尽管持续时间较长,但仍继续振荡。 NAD(P)H荧光不再显示相干振荡,线粒体不再直接聚集在顶点后面:它们在整个细胞中均匀分布。抑制后的生长依赖有氧发酵来产生能量,正如培养基中乙醇的增加所揭示的。这些数据表明,振荡的增长不取决于单个的振荡起搏器,而是取决于多个稳定极限周期的新兴特性。

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