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灰盖鬼伞菌柄伸长的特征描述

Characterization of stipe elongation of the mushroom Coprinopsis cinerea.

作者信息

Zhang Wenming, Wu Xiuxiu, Zhou Yajun, Liu Zhonghua, Zhang Wen, Niu Xin, Zhao Yan, Pei Siyu, Zhao Yang, Yuan Sheng

机构信息

Jiangsu Key Laboratory for Microbes and Microbial Functional Genomics, Jiangsu Engineering and Technology Research Center for Industrialization of Microbial Resources, College of Life Science, Nanjing Normal University, Nanjing 210023, PR China.

出版信息

Microbiology (Reading). 2014 Sep;160(Pt 9):1893-1902. doi: 10.1099/mic.0.079418-0. Epub 2014 Jul 4.

Abstract

Previously, we observed an acid-induced short-term wall extension in Flammulina velutipes apical stipes during a 15 min period after a change from a neutral to an acidic pH. This acid-induced stipe wall extension was eliminated by heating and reconstituted by a snail expansin-like protein, although we failed to isolate any endogenous expansin-like protein from F. velutipes because of its limited 1 mm fast elongation region. In this study, we report that Coprinopsis cinerea stipes possess a 9 mm fast elongation apical region, which is suitable as a model material for wall extension studies. The elongating apical stipe showed two phases of acid-induced wall extension, an initial quick short-term wall extension during the first 15 min and a slower, gradually decaying long-term wall extension over the subsequent 2 h. After heating or protein inactivation pretreatment, apical stipes lost the long-term wall extension, retaining a slower short-term wall extension, which was reconstituted by an expansin-like snail protein. In contrast, the non-elongating basal stipes showed only a weaker short-term wall extension. We propose that the long-term wall extension is a protein-mediated process involved in stipe elongation, whereas the short-term wall extension is a non-protein mediated process not involved in stipe elongation.

摘要

此前,我们观察到金针菇顶端菌柄在从中性pH值转变为酸性pH值后的15分钟内会出现酸诱导的短期细胞壁延伸。这种酸诱导的菌柄细胞壁延伸通过加热被消除,并由一种蜗牛膨胀素样蛋白重构,尽管由于金针菇仅有1毫米的快速伸长区域有限,我们未能从金针菇中分离出任何内源性膨胀素样蛋白。在本研究中,我们报告灰盖鬼伞菌柄具有一个9毫米的快速伸长顶端区域,这适合作为细胞壁延伸研究的模型材料。伸长的顶端菌柄表现出两个酸诱导的细胞壁延伸阶段,第一个阶段是在最初的15分钟内快速的短期细胞壁延伸,第二个阶段是在随后的2小时内较慢的、逐渐衰减的长期细胞壁延伸。经过加热或蛋白质失活预处理后,顶端菌柄失去了长期细胞壁延伸,仅保留了较慢的短期细胞壁延伸,而这种短期延伸可由一种膨胀素样蜗牛蛋白重构。相比之下,不伸长的基部菌柄仅表现出较弱的短期细胞壁延伸。我们提出,长期细胞壁延伸是一个参与菌柄伸长的蛋白质介导过程,而短期细胞壁延伸是一个不参与菌柄伸长的非蛋白质介导过程。

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