Moser M, Schäfer E, Ehmann B
Institut für Biologie II der Universität Freiburg, Schänzlestrasse, 1 D-79104 Freiburg, Germany.
Plant Physiol. 2000 Sep;124(1):313-20. doi: 10.1104/pp.124.1.313.
In grass seedlings the network of cortical microtubules is reorganized during light-dependent growth of coleoptiles and mesocotyls. We investigated the effects of light-dependent growth on the relative steady-state levels of the mRNAs and protein levels of alpha-tubulin and the epsilon-subunit of the chaperonin containing tailless complex protein-1 in oat (Avena sativa) coleoptiles, which were grown in different light conditions to establish different growth responses. The soluble pools of the epsilon-subunit of the chaperonin containing tailless complex protein-1 and alpha-tubulin decreased in nonelongating coleoptiles, suggesting that the dynamics of the light-regulated soluble pool reflect the processes occurring during reorganization of cortical microtubules. The shifts in pool sizes are discussed in relation to the machinery that controls the dynamic structure of cortical microtubules in plant cells.
在禾本科植物幼苗中,胚芽鞘和中胚轴在依赖光照的生长过程中,皮层微管网络会发生重组。我们研究了依赖光照的生长对燕麦( Avena sativa)胚芽鞘中α-微管蛋白的mRNA相对稳态水平以及含无尾复合蛋白-1伴侣蛋白ε亚基的蛋白质水平的影响,将胚芽鞘置于不同光照条件下培养以建立不同的生长反应。在不伸长的胚芽鞘中,含无尾复合蛋白-1伴侣蛋白ε亚基和α-微管蛋白的可溶性库减少,这表明光调节可溶性库的动态变化反映了皮层微管重组过程中发生的进程。结合控制植物细胞皮层微管动态结构的机制,对库大小的变化进行了讨论。