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首页> 外文期刊>Protoplasma: An International Journal of Cell Biology >Histone H4 acetylation and DNA methylation dynamics during pollen development
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Histone H4 acetylation and DNA methylation dynamics during pollen development

机译:花粉发育过程中组蛋白H4乙酰化和DNA甲基化动力学

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The first pollen mitosis results in generative and vegetative cells which are characterised by a striking difference in their chromatin structure. In this study, histone H4 acetylation and DNA methylation have been analysed during pollen development in Lilium longiflorum. Indirect immunofluorescence procedures followed by epifluorescence and laser scanning microscopy enabled a relative quantification of H4 acetylation and DNA methylation in microspores, immature binucleate pollen, mature pollen, and pollen tubes. The results show that histone H4 of the vegetative nucleus, in spite of its decondensed chromatin structure, is strongly hypoacetylated at lysine positions 5 and 8 in comparison with both the original microspore nucleus and the generative-cell nucleus. These H4 terminal lysines in the vegetative nucleus are, however, progressively acetylated during the following pollen tube growth,The DNA methylation analysis inversely correlates with the histone acetylation data. The vegetative nucleus in mature pollen grains is heavily methylated, but a dramatic nonreplicative demethylation occurs during the pollen tube development. Changes neither in H4 acetylation nor in DNA methylation have been found during development of the generative nucleus. The results obtained indicate chat: the vegetative nucleus enters the quiescent state (accompanied by DNA hypermethylation and H4 underacetylation) during the maturation of pollen grain which enables pollen grains a long-term survival without external source of nutrients until they reach the stigma. [References: 28]
机译:最初的花粉有丝分裂导致生殖细胞和营养细胞的染色质结构出现显着差异。在这项研究中,已对长花百合花粉发育过程中的组蛋白H4乙酰化和DNA甲基化进行了分析。间接免疫荧光程序,然后进行落射荧光和激光扫描显微镜检查,可以相对定量检测小孢子,未成熟的双核花粉,成熟的花粉和花粉管中的H4乙酰化和DNA甲基化。结果表明,与原始小孢子核和生殖细胞核相比,尽管营养核的组蛋白H4尽管染色质结构已脱缩,但在赖氨酸5和8位上仍被强烈地乙酰化。营养核中的这些H4末端赖氨酸在随后的花粉管生长过程中逐渐被乙酰化。DNA甲基化分析与组蛋白乙酰化数据成反比。成熟的花粉粒中的营养核被高度甲基化,但是在花粉管发育过程中会发生剧烈的非复制性去甲基化。在生成核的发育过程中,未发现H4乙酰化或DNA甲基化的变化。获得的结果表明聊天:花粉粒成熟期间,营养核进入静止状态(伴随DNA超甲基化和H4乙酰化不足),这使花粉粒能够长期生存,而无需外部养分,直到到达柱头。 [参考:28]

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