首页> 外文期刊>Planta: An International Journal of Plant Biology >Nuclear fragmentation and DNA degradation during programmed cell death in petals of morning glory (Ipomoea nil).
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Nuclear fragmentation and DNA degradation during programmed cell death in petals of morning glory (Ipomoea nil).

机译:牵牛花花瓣中的程序性细胞死亡过程中的核碎裂和DNA降解(番薯)。

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We studied DNA degradation and nuclear fragmentation during programmed cell death (PCD) in petals of Ipomoea nil (L.) Roth flowers. The DNA degradation, as observed on agarose gels, showed a large increase. Using DAPI, which stains DNA, and flow cytometry for DAPI fluorescence, we found that the number of DNA masses per petal at least doubled. This indicated chromatin fragmentation, either inside or outside the nucleus. Staining with the cationic lipophilic fluoroprobe DiOC6 indicated that each DNA mass had an external membrane. Fluorescence microscopy of the nuclei and DNA masses revealed an initial decrease in diameter together with chromatin condensation. The diameters of these condensed nuclei were about 70% of original. Two populations of nuclear diameter, one with an average diameter about half of the other, were observed at initial stages of nuclear fragmentation. The diameter of the DNA masses then gradually decreased further. The smallest observed DNA masses had a diameter less than 10% of that of the original nucleus. Cycloheximide treatment arrested the cytometrically determined changes in DNA fluorescence, indicating protein synthesis requirement. Ethylene inhibitors (AVG and 1-MCP) had no effect on the cytometrically determined DNA changes, suggesting that these processes are not controlled by endogenous ethylene..
机译:我们研究了番薯(L.)罗斯花朵花瓣中的程序性细胞死亡(PCD)期间的DNA降解和核片段化。如在琼脂糖凝胶上观察到的,DNA降解显示出很大的增加。使用对DNA染色的DAPI和DAPI荧光的流式细胞仪,我们发现每片花瓣的DNA质量至少增加了一倍。这表明核内或核外染色质碎片。用阳离子亲脂性氟探针DiOC6染色表明,每个DNA块都有一个外膜。核和DNA团块的荧光显微镜检查显示,直径开始减小,染色质浓缩。这些凝聚核的直径约为原始核的70%。在核分裂的初始阶段,观察到两个核直径种群,一个种群的平均直径约为另一个种群的一半。然后DNA块的直径进一步逐渐减小。观察到的最小的DNA团块直径小于原始细胞核直径的10%。 Cycloheximide处理阻止了细胞学测定的DNA荧光变化,表明需要蛋白质合成。乙烯抑制剂(AVG和1-MCP)对通过细胞计数确定的DNA变化没有影响,表明这些过程不受内源乙烯的控制。

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