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Patterned secondary cell‐wall assembly in tracheary elements occurs in a self‐perpetuating cascade

机译:气管元件中的图案化次级细胞壁组装以自我延续的级联反应发生

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SUMMARYThe behaviours are presented of newly‐synthesized xylan and putative glycine‐rich protein during patterned secondary cell‐wall biogenesis in drug‐treated tracheary elements (TEs) differentiating in culture from isolated mesophyll cells ofZinnia elegans. The normal secondary wall thickenings contain cellulose, xylan, and lignin, and the results reported here suggest that they also contain glycine‐rich protein (GRP). However, qualifications to this definitive interpretation are discussed. The specific cellulose synthesis inhibitors, 2,6‐dichlorobenzonitrile (DCB) and isoxaben, were applied near the onset of differentiation. When they were fully effective in inhibiting deposition of detectable cellulose in the thickenings, no labelling of the thickenings was observed with probes for xylan (xylanase and an antibody to xylose) or GRP (an antibody). When the drugs were partially effective, a small amount of detectable cellulose was still deposited in the thickenings. In such TEs, patches of xylan and GRP were observed between thickenings, suggesting that these components were exocytosed but not able to localize at the altered thickenings. A model for cell‐wall assembly is presented in which some molecules themselves are able to mediate the patterning of others, so that patterned secondary cell‐wall assembly partly occurs by a self‐per
机译:摘要介绍了新合成的木聚糖和推定的富含甘氨酸的蛋白质在药物处理的气管元件 (TE) 中模式化的次级细胞壁生物发生过程中的行为,这些元素在培养物中从百日草的叶肉细胞中分化出来。正常的次级壁增厚含有纤维素、木聚糖和木质素,这里报告的结果表明它们还含有富含甘氨酸的蛋白质 (GRP)。然而,讨论了这种确定性解释的限定条件。在分化开始附近施用特异性纤维素合成抑制剂 2,6-二氯苯腈 (DCB) 和异沙苯。当它们完全有效地抑制可检测纤维素在增稠剂中的沉积时,用木聚糖(木聚糖酶和木糖抗体)或GRP(抗体)探针未观察到增稠物的标记。当药物部分有效时,少量可检测的纤维素仍沉积在增稠剂中。在这样的TE中,在增稠之间观察到木聚糖和GRP的斑块,表明这些组分是胞吐的,但不能在改变的增稠处定位。提出了一种细胞壁组装模型,其中某些分子本身能够介导其他分子的图案化,因此图案化的次级细胞壁组装部分由自体发生

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