首页> 外文期刊>Proceedings of the Royal Society. Biological sciences >Morphological aspects of self-repair of lesions caused by internal growth stresses in stems of Aristolochia macrophylla and Aristolochia ringens
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Morphological aspects of self-repair of lesions caused by internal growth stresses in stems of Aristolochia macrophylla and Aristolochia ringens

机译:内部生长压力引起的马兜铃和马兜铃茎内部损伤的自我修复的形态学方面

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摘要

This study reveals in detail the mechanism of self-repair during secondary growth in the vines Aristolochia macrophylla and Aristolochia ringens based on morphological data. For a comprehensive understanding of the underlying mechanisms during the self-repair of lesions in the sclerenchymatous cylinder of the stem, which are caused by internal growth stresses, a classification of morphological changes in the cells involved in the repair process is required. In an early stage of self-repair, we observed morphological changes as a mere extension of the turgescent cortex cells surrounding the lesion, whereby the cell wall extends locally through visco-elastic/plastic deformation without observable cell wall synthesis. Later stages involve typical cell growth and cell division. Several successive phases of self-repair were investigated by light microscopy of stained samples and confocal laser-scanning microscopy in fluorescence mode. The results indicate that A. macrophylla and A. ringens respond to lesions caused by internal growth stresses with a sophisticated self-repair mechanism comprising several phases of different repair modes.
机译:这项研究基于形态学数据,详细揭示了大叶马兜铃和马兜铃藤次​​生生长过程中自我修复的机制。为了全面了解茎的硬皮增生病灶自我修复过程中由内部生长压力引起的潜在机制,需要对修复过程中涉及的细胞形态变化进行分类。在自我修复的早期阶段,我们观察到形态学变化仅是病变周围肿胀皮层细胞的延伸,从而使细胞壁通过粘弹/塑性变形局部延伸,而没有可观察到的细胞壁合成。后期涉及典型的细胞生长和细胞分裂。通过染色样品的光学显微镜检查和荧光模式的共聚焦激光扫描显微镜研究了几个连续的自我修复阶段。结果表明,大叶农杆菌和林果环孢菌通过复杂的自我修复机制对内部生长压力引起的损伤做出反应,该机制包括不同阶段的不同修复模式。

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